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Robinson Meyer: Hello, it's Wednesday, May 6th, and the Strait of Hormuz is still closed. In fact, both the United States and Iran claim to control the strait, and energy traders around the world, not to mention policymakers and the general public, are trying to understand the situation.
So today, I want to welcome someone who's made billions of dollars understanding and monitoring situations a lot like this one. John Arnold has a good claim to be the best energy trader of all time. He began his career when he was 21 years old and working in natural gas trading at Enron. He later established Centaurus Advisors, LLC, a hedge fund specializing in energy in Houston.
But since 2008, he and his wife, Laura, have led Arnold Ventures, which is one of the most interesting and I would say one of the most effective philanthropic organizations out there. They work on criminal justice reform, lowering drug prices, reining in sports betting, and for our purposes, how to build more housing, transportation, and infrastructure in the United States, including how to build more electricity infrastructure. For that reason, they've been at the forefront of the permitting reform conversation. In fact, I'd say they helped to drive it, in part because John is also a clean energy investor. He's a co-founder and chairman of Grid United, which is building some of the most ambitious transmission projects in the United States. And he's an investor in the advanced geothermal company Fervo, which we talked about on a recent episode.
So many of the topics, in fact, that we work on or talk about at Shift Key come down to topics that John Arnold thinks about every day.
One goal of Shift Key, in fact, I think is to step back from the news cycle from time to time and have bigger conversations with guests like John. And so today for the first episode in our new occasional “big interview” series, I'm talking to John Arnold about how he reads the current moment in energy, about what he learned during his recent trip to China, where he went to EV factories — it was the first time he'd ever been to that country — and about what clean energy companies can and should learn from fossil fuels. I'm Robinson Meyer, the founding executive editor of Heatmap News, and it's all coming up on ShiftKey, Heatmap's podcast about decarbonization and the shift away from fossil fuels. John Arnold, welcome to Shift Key.
John Arnold: Great to be here.
Robinson Meyer: So my colleague is reading Lloyd Blankfein's memoir and found out in the memoir, he confesses he still trades every day, that he can't get away from it. You're one of the great energy traders. Are you still trading on a day-to-day basis?
John Arnold: I do not trade on a day-to-day basis. I still follow the markets on a day-to-day basis. I think I've become every year a little bit more separated from what's actually going on. And what I don't even know, I don't know increases. I will trade a few times a year.
Robinson Meyer: Do you feel in moments like this one, or in I don't know, March 2020, did you feel the pull to get more involved? Were you like, Oh, my gosh, there's stuff happening. I have to be there. Or was it like, Oh, no, there's too much. I can't possibly trade in this moment.
John Arnold: Oh, for sure. I think, you know, in moments of panic, I think is when the best opportunity exists, particularly for somebody who's not in the day-to-day of it. And so you really have to choose your spots about when that chaos comes in and the market might get mispriced. And that's the opportunity for someone like me at this point.
Robinson Meyer: Speaking of which, let's talk about the current moment. So how do you read this current moment in global energy? I would say in oil specifically, then we can get to natural gas and maybe crucially, is the way the oil market is behaving in response to the Strait of Hormuz's closure and this kind of prolonged ceasefire that may be breaking down literally as we record this, should oil be higher? And is the movement of oil confusing you or do you think kind of makes sense?
John Arnold: Yeah, there was this market chaos whenever I think there was the understanding that the Strait was going to be closed for some period of time. And that's when you saw Brent shoot up to $120 plus, at least intraday, and really had the whole panic because this is what the oil market has been fearing for decades. And obviously, in retrospect, that move had gone too far. I think a few things happened. One was it's three weeks to get cargos from the Middle East to either East Asia or to Europe. It took three weeks for the end user to really stop receiving new cargoes. The market was already soft at the time, so there was some kind of looseness in the market. The commercial inventories were healthy, and the steeply backward-aided curve created a tremendous incentive for anybody with those inventories to try to sell them onto the market.
Strategic reserves started getting sent out. There was a little bit of demand destruction. You had the administration was making all sorts of rhetorical claims that this would end soon or that there was a way to open up the strait. So I think that the whole combination of things has been weighing on the market.
The Saudis and others found ways to reroute a number of the barrels. But now, you know, you're a little bit more than two months in to the strait being closed. And you still have this kind of 10 to 12 million barrels a day that's off market. And that's really starting to add up. And the commercial inventories are being worn down. The three weeks is up, so people are not receiving their cargoes that they were expecting. And so I've made this comment before, but each day that goes by that there's not a settlement, that the straight is not open, the fair value of oil goes up. And it's not going to be a straight line up. It's going to bounce around. It bounced up today, bounced down on last Friday. But you are on this upward trend and i think the problem gets harder with each passing day and that's that's you know not a controversial opinion but i do think it is it just starts getting to be the real dilemma especially with both sides thinking that they can play the waiting game and neither side really has a good card to play as to what to do next what's.
Robinson Meyer: What do you think is the most plausible endgame? You just observed that basically neither side, I think, feels like it's winning or losing — it's a real stalemate — but meanwhile the physical market is deteriorating what maybe what are the scenarios you're thinking through in your head
John Arnold: It has to end with a negotiated settlement. I think it's easy to say, but it's very, very difficult to imagine how that happens, especially how emboldened I think both sides are. This notion of Iran's access to nuclear material that can be used to make a bomb has been a stickler for the West for now decades. And you've had many, many administrations saying that Iran cannot be allowed to get the nuclear weapon. And so the question is, how does this end in a better spot with respect to access to nuclear material than when it started, especially with how emboldened that Iran feels today? And I think that is kind of difficult to imagine. And if I had the answer to this, I would maybe be on National Security Council. But we're kind of in this spot where I think had one war gamed this out beforehand, and there was some probability you get to this point, and you would probably say, like, let's just hope that we don't end up there, because there's no easy way out.
Robinson Meyer: I was talking to a few foreign policy people who worked in the past administration over the weekend. And one of them said something like, you have to say the president has somewhat succeeded here in managing the market so far. Because when Russia invaded Ukraine, Brent went to 140 on fears of a supply disruption. But then a supply disruption never really materialized to the same extent that it has today. Well, today, obviously, we're losing 10 million barrels a day. There is a real supply disruption. And, you know, prices are like flirting with Brent, in this case, is flirting with 110. It kind of goes up to 120, comes back down. But do you think that the administration, the president kind of deserves credit for managing prices or is this all going to backfire as this continues and we don't see a supply response from, say, the U.S. because prices have remained depressed?
John Arnold: Yes and yes. So I think he has done a good job of talking down the market to date. And you hear the open the straight or we're going to blow you to smithereens, open the straight or we're going to blockade, open the straight or we're going to escort friendly ships through. There's the we're very close to a deal that gets talked about oftentimes these statements get released on sunday before markets open and so in that sense you know i think those who are along the market live in fear of one bad headline and you lose ten dollars and there's just an air gap in the market and so i think that provides a level of fear and maybe the risk averse are less comfortable in trying to bid up supplies. That being said, the purpose of prices is to allocate scarce resources. And to the extent that we need higher prices in order to create more demand destruction, we're not getting it today. And again, each day that goes on, the market gets even tighter and tighter physically.
And those who had commercial inventories that they drew down, or they bought them back a month or two deferred in the financial markets because you could make a $7 or $10, $15 by just playing the curve. But then you get to the point where, okay, now you want your barrels. And so to some extent that gets met by the release of strategic reserves. I think countries get more hesitant over time to put out those barrels, but you do end up with, I think keeping prices lower in the short term means higher in the medium term if we get there.
Robinson Meyer: We're getting into kind of full-on oil analysis territory, but like, when would higher prices begin to fetch more supply? Because I was at Sierra Week a few weeks ago, and it seemed like part of the issue the administration faces is that even if we were to bring more supply onto the market, it wouldn't arrive till late, till after the midterms. It's a salient political touchpoint, but in the back half of this year, the very end of this year and the beginning of next year.
John Arnold: Exactly. And I think that's what makes energy markets fascinating is that they're relatively inelastic, both supply and demand in the short term. You have to raise gasoline prices to very high levels to get people to change their driving habits. You have to raise jet fuel prices to high levels to get that to start changing, you know, am I going to go on that plane trip or not? And so demand destruction is limited and very inelastic, as well as the ability to bring new supplies on. Plus, the forward curve now is starting to give that real price signal to producers. But for, you know, the first four or six weeks of this, the curve was in steep backwardation. And so a producer would be looking at it and say, you know, it's still WTI $70 or below for when I'm actually going to get that oil that I'm investing a new CapEx in today. And so that wasn't that appealing, even though the short end of the curve was at the 90, 100 plus level.
Robinson Meyer: Stepping back, looking beyond oil, how are you thinking about the energy fallout from this conflict so far, and especially in its long-term implications? I think folks like Fatih Birol have talked about this as an inflection point in energy, as a moment when a number of countries, I think especially in Southeast Asia, are going to look at the energy security implications of relying on seaborne oil. There's a story about Chinese EV sales surging. Do you buy that story, or do you think there's more inertia in the system than we realize and things will snap back basically once the street reopens? And there might be some change in stocks, but this is not the 1970s all over again.
John Arnold: Right. And I think the challenge here is that energy system is enormous. It is long-lived assets that take a long time to build anything new. And things happen at the margin. And so if you just think about what would it take to increase EV market share of cars on the road globally, it's an enormous amount of effort that would be required an enormous amount of time until that starts to become material. The whole stock versus flow issue, even if you're selling 50% market share of EVs, you're still competing with all the autos on the road today. And I think that metaphor is broadly true across much of the energy industry. You can think about the U.S. generation fleet. And while the vast majority of new generation that came on last year was solar and batteries, you know, solar is still a relatively small percentage of the total U.S. System, right? And so that stock versus flow thing, you're not getting away from. And that being said, I think every country is going to value energy security.
John Arnold: In an increasing manner going forward. Now, what that actually means in practice is a little bit harder. And as you said, this is long-term ramifications. This is not how's the energy system going to change in six months or even in a few years. We're talking about how the decisions that get made today that start showing up in any material ways kind of in the five to 10-year window.
Robinson Meyer:So you recently went to China for the first time. Lots of people, when they go to China for the first time, they have a kind of eye-opening experience. Were you expecting an eye-opening experience? What did you expect and what did you encounter?
John Arnold: Yeah, I mean, the reason I went, and I had been kind of embarrassed that I hadn't been previously. I travel a lot, I go international a lot, and just never had the strong desire or the need to go to China, and so I hadn't. But I was growing interested in China as it was starting to be at the technological edge on many things. And so if you think about just kind of the industrialization of China, you know, it's kind of went up from low value to medium value. It was producing lower quality goods even 10 years ago. If you mentioned any type of good from China or most goods from China in the West were deemed to be of inferior quality. And over the past 10 years, particularly over the past five years, I think that's started to flip. And you see a number of industries like EVs, like batteries and solar panels, telecom equipment, et cetera, where China is now on the leading edge, bleeding edge of technology. And they're enormously cost competitive. And so you're starting to see both the world open their eyes to the quality of many Chinese made goods today, as well as the fact that they are often cheaper than one can produce domestically.
And I think this industrial policy challenge that many countries, including the U.S., face are very real. How do you compete with China on EVs given the technological advancement they have today, their relatively inexpensive labor costs, the automation in the factories, these very robust supply chains that they have, cheap cost of capital, willingness to subsidize or run at zero profits, the industry for a long time. And I think that's true not only of the EV industry, but of many other industries going forward. And what's the right response from the West to China that now looks like that?
I thought that was an interesting question that I couldn't answer. I'm not sure I can answer that today either.
Robinson Meyer: So those are all the questions in your head when you went. Then what did you see? Were you surprised? I mean, were they even more advanced? Were things even more advanced there than you expected? Or did you feel like you were kind of adequately prepared by the discourse, but still, you know, it was striking to see it in person?
John Arnold: One of the things that I was expecting was less automation. You should see more automation in places and industries where you have high labor costs. And China seems to be on the forefront of automation and the robotics revolution. So that was kind of a head scratcher, especially if one of the goals, strategic goals of the country is employment — that they've either been long-term planning there to understand that if you're just going to labor your way through this, you're going to be disrupted at some point. But that China is willing to both invest in the robotics and automation, as well as try to create jobs for its citizens, I think is very forward-looking by the country.
I was also trying to just understand where capital comes from. Where's the risk-taking capital come from? And what are the incentives both kind of within the province level as well as from any private capital sources? Who is funding this EV industry that has massive overcapacity and it doesn't seem to be making any money or clearly is not making any money with the exception of maybe BYD. And I think that's true of other industries as well.
So just trying to understand, where's the capital coming from? Are there investment opportunities? Are there sourcing opportunities for the West, particularly on the electrostack that China is so strong in and that the West, particularly in the United States, now has real shortages of any type of power equipment, the transformers and switch gears and all of that. And China has extra capacity there. And in some sense, we are in this race with China on AI. You need a lot of power in order to do that. The supply chain of the power industry is very constrained in the United States right now. There is spare capacity in China should we be utilizing that as a country in order to try to beat them on the AI side I've.
Robinson Meyer: I’ve heard where we kind of are at this point is, whether we like it or not, as the data centers expand, the kind of quotient of where maybe the government or like companies are willing to allow Chinese technology is creeping closer and closer to the chips themselves.
John Arnold: Yes. Yeah. The best I could tell was that American policymakers were okay with Chinese equipment at the edge of the grid. They did not want it kind of on the backbone of the grid such that if it ever got turned off, that the downside was fairly limited.
Robinson Meyer: Where did you see automation in China? What's an example?
John Arnold: So it went to the Nio auto factory. Nio produces one of the higher end EVs, generally in the kind of $50,000 to $100,000 range. They've also been at the forefront of the replaceable battery. I think there's a different phrase from that, but one that you can pull into a charging station if the machine removes the battery from the bottom of the vehicle and puts in an already charged battery. So it's a three-minute in-out process to get a fully charged battery. They had finished a new plant a couple years ago. I think it took them 17 months from breaking ground to having the first car coming off the line, which is just remarkable.
Robinson Meyer: That's crazy.
John Arnold: And was also just surprised that, you know, going through there and touring it, how much automation there was, how few employees there were in the plant.
Robinson Meyer: Okay, so I'm also in the never been to China, but find myself talking about China all the time, kind of embarrassed camp. And it's going away. But this idea that China is competitive because of low cost labor is one that I feel like we're gradually realizing is not true. I mean, it's part of the picture, but it's a much there's a much wider set of capabilities in Chinese manufacturing. Now than there were even 10 years ago, as you were saying.
Did you wind up thinking that that the consumers are different, too, or that maybe the Chinese EV industry has been able to thrive because it addresses a very different need than the American EV industry? I think one thing I've been trying to figure out in my thinking about China is how much the U.S. Still has in dollar terms, the world's largest market or it's up. It's close. But there's more consumers. There's far more people in China and they all buy a version of the thing. Many of them buy cars, right? And that then creates more capacity for learning to scale. Did seeing some aspect of the economy make you realize how difficult or potentially solvable the challenge is?
John Arnold: I think what was striking was, I had a hard time identifying where the weak spot was for Chinese industry, given that they have a highly educated workforce, low cost of labor, that there is risk capital that's provided. A lot of it comes from the government, but then flows through to venture capital groups who are making roughly similar decisions with some constraints on where they can invest to the end of the industries and the geographies as American ones. Talk about the size of the domestic market, the supply chains there, that they are close both in geography and culturally, you know, without having to do cross-border supply chain management. Seeing that and then trying to understand how other countries compete on the electrostack going forward was very challenging. And I walked away saying, I'm not sure if China would be a good investment or not for somebody from the West. I'm not sure those companies are ever going to make money, but I would be very hesitant to invest much in manufacturing companies in the West that are competing with China. I think the auto manufacturing industry is fascinating for a number of reasons, but most countries that have a domestic manufacturing industry for autos view that as strategic. It's a lot of jobs. There's kind of this pride of making cars. And so there's always been a lot of export hurdles and kind of fences being built around countries of various heights. And America.
Has this decision to make of, do we try to compete with Chinese cars globally, or do we build this big wall around our country and say, you have to make it here with American technology?
And I think the risk is what you're seeing in Canada. So the Canadian and American car industries were kind of tied at the hip since forever. And you saw a lot of car parts flow back and forth across borders. The assembly might be done in Canada, but it would use some combination of Canadian and American parts, be done with an American manufacturer, et cetera. You know, the United States is increasingly saying that we don't want that of cars to be assembled in Canada.
And so then Canada's starting to question what should its domestic manufacturing industry look like? And if America is not going to be a good partner, would somebody else? And China's raising their hand saying, try us. And so there was a deal recently in the past maybe six months, where Canada started allowing a certain number of Chinese imports that were essentially with tariff-free, very low tariffs. And the way I read it, I think the way others read it was, that China is testing the market? Is there demand for the product? And if so, then I think China is going to make a very significant investment in Canada. And Canada is protective of its jobs, its domestic industry. And if America is not a good partner for it, maybe China is.
Robinson Meyer: But it doesn't sound like you walked away. I mean, you kind of said this, but it doesn't sound like you walked away with like, okay, there's a clear way that American manufacturing? Because it's more than just auto industry, right? It's kind of this whole set of technologies around electricity at the bleeding edge that I think American policymakers would consider strategic. And I don't know, I would consider strategic, but it doesn't sound like you walked away with a clear sense of what America could do to compete in those industries.
John Arnold: Correct. I think the challenge of industrial policy is that it can end up being zero-sum, right? If one country starts doing it and then the next country says, well, if they're doing it, then I have to do it. And you can end up in a end state where there's very significant subsidies coming from each state and nobody's necessarily better off. And that seems to be where we're headed now.
And the justification that we're having in America to this is, well, China's doing it. And this was part of the rationale for WTO in trying to standardize what the trade rules were and what subsidies and supports a state could give to industry. And to try to really minimize that has always been tough. There's many, many ways that a state can support an industry. But there's been fights about that. And it was relatively stable. It may have been going up slowly. But I do think that China now being a very already healthy competitor in a number of these areas that are deemed to be the future, including things like drones and motors and magnets, et cetera, that there is that question that's happening. And I'm not sure what the answer is for the United States besides either we're going to do this as well. We're going to show supports for our industries that we deem strategic and or that the world's going to build these new alliances with high walls around it. And we have these trading alliances that get created and there's a lot of trading within those alliances and very little that goes across those alliances.
Robinson Meyer: I think it's hard because it's we kind of knew industrial policy had this race to the bottom or zero sum aspect. But what's new is that it works. What's new is that China seems to be doing it in a way that is working and outcompeting Western companies. It was easy for economists to say, oh, we shouldn't do this industrial policy when it didn't seem to work because they could say, oh, it's a race at the bottom and it doesn't work. Well, in that case, who wants to do it? But if China's doing it and it seems to be working, then suddenly we have real issues because an entire set of policy tools that I think both create real negative dynamics in the global market, but also have like huge strategic implications for the US suddenly seem like they're back on the table, but also... Not fit for our current global trading system.
John Arnold: Yeah, I think that's exactly right. It's an economist will give a hundred reasons why the five-year plan should not work and should end up leading to terrible inefficiencies and tremendous waste. But China has five-year plans in recent times have seemed to have been working pretty well.
Robinson Meyer: Yeah.
John Arnold: And so America is moving a little bit more in that direction than China is moving towards our direction.
Robinson Meyer: Exactly. To be continued, speaking, I guess, of the electrostack. So you're involved with a number of companies around electricity, Fervo, Grid United. On the scale of it's a nuisance to it requires a Manhattan project-like effort, how worried are you about the grid? Yeah.
John Arnold: I think there's a limited number of technologies or solutions that seemingly don't have any trade-off. And you can think about the goals of the energy system, and oftentimes you think about something and there's a trade-off, right? And you have trade-offs between affordability and reliability, or trade-offs between the environmental sustainability versus affordability or reliability, for instance. And there's a limited number that have really kind of no obvious trade-offs, at least with respect to the goals of the energy system. And I think about the goals as a lot of people talk about the four of reliability, affordability, sustainability, and security. I would add, I think, good jobs and I think scalability. So if you want to bring on a data center, can you provide power for that? And building out a more integrated grid helps on every one of those six factors.
I think doing things like demand management also doesn't have obvious trade-offs for it. I think adding batteries to the grid is another one of those solutions without the trade-offs. And those are the technologies I think I'm most excited about — again, because if we're in this fight about, you know, the trade-offs, and yes, it's good here, but it has this trade-off — those things are hard to scale or they are very fragile as you change administrations and the prioritization of those goals changes every four or eight years. But if you truly have solutions that are just a net positive then i think they're much easier to scale much more durable.
Robinson Meyer: Have you become convinced that any one grid in the U.S. or area of the U.S. could have does this right as compared to other parts or other grids?
John Arnold: ERCOT is this interesting example. Everybody loves to examine and analyze ERCOT. It's very good on the scalability of the system, which is one of the reasons why so many data centers are now being built in Texas. That was not the case even a few years ago. I think they were going in many different places, but that you can add demand and add the corresponding generation relatively easily in ERCOT, and that you don't have these very long timeframes for grid interconnection, I think is very positive. But what we're trying to do at Grid United is really go across the seams. So accident of history, we have these three grids in the United States. There's almost no connection across them. The benefits of trade that you get of increasing reliability and affordability just by making the system more efficient, more optimized are very real. And so that's really where we're focused.
Robinson Meyer: The Arnold Foundation, you know, your team is very involved in permitting reform. Are there particular policies you would like to see or that you think would solve these issues relatively quickly or at least provide a big boost?
John Arnold: Yeah. So, you know, it's really kind of a question of how do you get your permit? The certainty that you have once you've received your permit. And you want a system where people have the ability and right to object, that those objections are heard in a timely manner. A decision is made and the project's either greenlit or killed. And that certainty of how that process happens is very important to developers. And then maybe even more important is once you have that permit, that you have real certainty that it's not going to get tied up in the courts, right? That judicial review period is set. And again, that the objections get heard, But after the decision's been made, that it's final and we're moving forward. And there's a saying that time is money. It is very true for development, that the best way for an objector of a project to kill it is just to keep the delays. And the judicial system, as it currently works in practice, allows for some types of projects, this never-ending series of delays that happen. And so developers don't even start.
You see this not only with energy, you see this with any type of linear infrastructure, whether it's pipelines or highways or broadband. And you see this in housing as well. We have less housing because developers know in certain geographies that even though they should have their permit in three months, it's going to take them three years. And the cost of capital makes the project go from a profitable one to a money that was never even started. And so certainly today with the growth in demand and power, we need to be able to build again in this country. And if we're still on this trend of, and it's harder and harder to build each project, which makes it longer to bring on and more expensive, then we're never going to meet the goals of the energy system. It's this remarkable moment where I think almost everybody on the political spectrum recognizes that and recognizes the principles of energy permitting. And they're trying to write the fine print today, but I've never seen this issue have so much bipartisan support.
Robinson Meyer: Do you feel like we're going to get a deal this year? Or give me the probability that you think there's a deal this year.
John Arnold: Yeah, so if I go to the prediction markets, what am I going to see?
Robinson Meyer: Yeah, exactly. I haven't even looked to see if there's a Kalshi market.
John Arnold: There probably is.
Robinson Meyer: I'd be too inclined.
John Arnold: I am very optimistic. And we do a lot of policy work at Arnold Ventures. I know how hard it is to pass laws, especially in this era of political dysfunction. The one thing I think almost every member of Congress I talk to understands is the need to do this. There is support from the administration. There is support from congressional leadership on both sides. There's support from the relevant committee heads. If we can't get this done, then we can't get anything done.
Robinson Meyer: What needs to change or what needs to happen between now and, say, the end of the year for it to actually get done?
John Arnold: Yeah. So I think on an election year, it's very unusual for any big piece of bipartisan legislation to get passed really the whole year. And so what we're really looking at is most likely is that it would get passed after the election in the lame duck period. And so you start working backwards from there and really need to have language that's agreed upon in the next 45 days. It's hard to work over the summer. Congress scatters. Everybody scatters. Then you come back. There's a little bit of work time in September, and then everybody's focused on the elections. So the bill needs to get written today. And then again, in the next 45 days, and there's a lot of work happening behind the scenes. So again, sometimes it's hard to know exactly where it is, but everybody's saying the right things. There's been fits and stops to date, particularly when the administration hit the pause on offshore wind. They've made some changes. They brought Senator Whitehouse back to the negotiating table, for instance. So again, everything I think is looking good, but getting anything passed in DC these days might be a long shot.
Robinson Meyer: Arnold Foundation was involved in the MethaneSAT project. And, you know, methane is an interesting problem. I think natural gas would obviously be a much stronger position on emissions terms if we dealt with the methane pollution problem. Of course, then the administration came in and removed rules that were set to begin regulating methane pollution from the oil and gas sector. Why has methane proven so hard to tackle in the U.S.?
John Arnold: Yeah, I think it's a question of who pays for it. And so that well that, you know, is 50 years old, that's kind of barely economic today. It's leaking a little bit as a standalone well, but in aggregate, the number of very old wells or near end of life wells that are leaking, the title to those wells has changed hands many times over the years. And so the current owner says, right, why am I responsible? I just bought this thing a year ago. And when I bought it, there weren't rules about that I had to pay for it. Otherwise, I would have paid a very different price or wouldn't have bought it at all. So I think that's one. I think the industry probably has some fear of if they lose one fight on this, that there'll be the slippery slope argument on regulation. My argument to industry has been that if you want natural gas to be viewed as a clean fuel, then it actually needs to be a clean fuel. And that there's some low hanging fruit on trying to clean up the industry. And it would be good for you economically to make these investments. Now, that's true of the industry, I think. Again, you get down to, okay, which company is actually paying for it?
Robinson Meyer: I've heard this theory that, okay, the majors might be fine with that. They might say, yeah, sure, we can deal with it, whatever. It's the independents who are going out and killing all of this. And the majors don't mind that the independents are killing it, or the miners are killing it, but they would eat it if they had to. Do you buy this theory? Or if you were to lift the lid on any of these kind of big oil companies that have been more facially supportive of the regulations, they would actually be just as opposed?
John Arnold: I think a few things are true. Number one is that a newer well has lower leaks than an older well. Assuming the infrastructure is built, you know, at times whenever there's flaring, that's not true. But in general, once a well is operational and connected, then the newer it is, especially anything that's been put on the system in this decade, is a relatively low leak molecule. And that the larger companies tend to be the ones that are doing the new drilling. They have the capital. And as wells age, the big companies sell them to the small companies, to companies that have a lower cost of operations.
And so there's that natural trajectory of life of a well. And so I think there is some economic rationale to that. I think the large companies are more concerned about the reputation. I think they're more concerned about what's the long-term value and opportunity for the industry. They have publicly traded stocks that represent what the long-term value of the industry is versus kind of being owned privately and people having a shorter-term focus on the financial return market. And I think you're probably right that the big guys are kind of happy to have the little guys have this fight so they don't have to be criticized publicly.
Robinson Meyer: I guess into the point we know the big guys' names. I couldn't tell you all the names of the independents that would oppose this. What should clean energy companies learn from conventional energy companies or the conventional energy industry?
John Arnold: The conventional industry has, it's mature. It has low cost of capital. It has the robust supply chains. They are well capitalized. Right. Yeah. So they're able to do things, right, that kind of newer industries not able to. Look, the oil and gas sector has become tremendously efficient at scale, right? Scaling anything. So if it works, the oil and gas industry can go scale it. And I back up and just say that's something that happens with time.
Robinson Meyer: Yeah.
John Arnold: And so I'm not sure that the clean energy industry can just say, like, we should be like the oil and gas industry. We just need to copy their ways because they don't have the tools.
Robinson Meyer: I think they would love to say that, actually. Yeah, exactly. You know, I think they'd love the bankability. They'd love the scale. Is there anything they might not think of that they should think about?
John Arnold: I think the political power that the oil and gas industry has. And part of that is also time. If you've been donating to a party or to a candidate for three years, that's very different than if you've been donating for 30 years. Yeah. And so the oil and gas industry just has a lot more political power than the clean energy side does. I think there's just larger policy teams, larger budgets for it. The understanding that collectively, everybody has to participate in those PACs and in the trade organizations that I don't think you're seeing today in the clean energy side.
Robinson Meyer: Your work has been really studiously bipartisan. I think there was a phase in the clean energy industry as recently as a year and a half ago where it was not nearly as bipartisan. Was that a mistake? Should it embrace the kind of more Catholic position of the oil and gas industry, or is it not able to because of the policy landscape?
John Arnold: So it's hard because, again, like the longer an industry has been there, the more ingrained in the fabric of any community it is. And so you still see some Democratic states like New Mexico or Colorado that have oil and gas industries. And because the representatives in those states have to represent their communities, they end up having to get support or they do get support for it. Just because, again, just like the number of jobs that are there, the political organization that they have in those states, the number of companies. And so this takes time. It's like developing and becoming more and more of the fabric. And so the irony is that a lot of the wind producing states, a lot of the solar states are red. But they just haven't been around long enough to really have ingrained themselves into the fabric and into the political institutions in that state. So I think this is just more of a time component.
Robinson Meyer: Last question. So you're a big booster of Houston. And I would say the Houston civic culture. City is growing very quickly, of course, has this long term connection to oil and gas. When people visit Houston, what should they do? Or where should they go to see, not in a tourism sense, but if they're interested truly in what has made Houston different and what makes it different today? Like, what should they make sure they not miss?
John Arnold: The Menil Center is kind of this amazing museum that I think captures Houston's spirit and that the de Menils were part of the Schlumberger founding family that during World War II moved from France to Houston. And so it envelops the cosmopolitan nature of Houston that Houston draws from the entire world, often because of the industry we have here, the energy nature of it, and then the cultural assets that we have here. The Chamber of Commerce likes to talk about, we have the second most number of live theater seats, for instance, after New York. The museums we have, it's not New York, it's not maybe LA, but it's right there after those two. the theater. It's one of maybe four or five cities in the U.S. with a grand opera.
And so it has that cultural component as well as this gritty part of being an industrial city. We build things here, come here for scale. And we like growth. There's a number of communities today that, fight growth, right? They don't want to change. Houston does. Texas does, right? It's a state, it's an area that we want to grow. No politician could take office saying, we want to pause growth. That person would never get elected. And so kind of across the political spectrum, it's maybe, how do you grow? But Houston wants more people, it wants more diversity. It wants more growth, more industry. And that's what's made this community better. It's why people have come here in the first place. And that's what we want to give to the next generation.
Robinson Meyer: Well, there's so much more to talk about, but I'm going to respect your time and leave it there. John Arnold, thank you so much for joining us on Shift Key.
John Arnold: Great being here. Thanks.
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Robinson Meyer:
Hello, it’s Wednesday, September 2. I cannot believe it is already September. Last month, it became clear we’re witnessing a new kind of natural gas build out in the United States. Just think of the announcements we got in a few days in the middle of August. First, around August 11, the market intelligence service Cleanview identified that Amazon was behind a 7.6-gigawatt natural gas plant in Texas called Gigawatt Ranch. So just for comparison, that is huge. That would be the country’s biggest natural gas power plant. In fact, it would be the country’s biggest power plant, period. It’s about half a gigawatt bigger than the Grand Coulee Dam in Washington State, the largest power plant in America for like half a century. Then, just a week later, we learned that OpenAI and Nvidia are working together on a 9.2-gigawatt gas plant in Ohio.
Robinson Meyer:
That plant would obviously dwarf the Grand Coulee Dam. It would be the biggest power plant in America by far. But it would also even rival the Jebel Ali Power and Desalination Facility in Dubai as the world’s largest natural gas power plant of any kind. It would be a truly gargantuan facility. My colleague Emily Pontecorvo recently tried to identify the scale of the ongoing gas buildout. And she found a number of power plants, of projects that I think weren’t on my radar, weren’t generally on people’s radar. It’s been interesting because we’ve been getting a sense of the scale of this buildout at the same time that it’s become clear that the data center buildout is enormously unpopular in itself. If you’ve been reading Heatmap News, you know that according to a Heatmap Pro and Embold research poll conducted also in early August, 75% of Americans are now opposed to a data center being built near where they live, including a majority of Democrats, Republicans, independents, rural voters, urban voters, suburban voters, basically any demographic you can think of. They don’t seem to want a data center near them right now.
Robinson Meyer:
I recently sat down with Emily, a Heatmap founding staff writer, to talk about her reporting on the gas buildout, how she identified the 10 largest gas power projects now under construction or being permitted or being proposed in the United States, and how to think about this messy period. Also, how to think about the fact that it’s tech companies, who often have some of the most ambitious climate policies in America, who are now behind, a natural gas buildout on the scale that could actually increase the country’s, greenhouse gas emissions from the power sector, or at least increase them compared to the baseline. How should we think about these net zero commitments from companies like Amazon, Microsoft, Google, when often it’s those same companies that are now building some of the biggest fossil fuel projects ever proposed in the United States? And what would a good net zero commitment or climate commitment look like from those companies? We get into all of it in this conversation. It was a really generative, really interesting conversation for me. I’m Robinson Meyer, the founding executive editor of Heatmap News, and it’s all coming up on this episode of Shift Key. Emily Pontecorvo is here. Welcome to Shift Key.
Emily Pontecorvo:
Thanks, Rob. Glad to be here.
Robinson Meyer:
So you recently wrote a piece for us about the scale of the natural gas buildout in the United States that’s happening to service data centers and to service AI. And I think it’s quite interesting because we will talk about this, but I don’t know if we understood just how large this buildout was going to be as recently as the beginning of this year.
Emily Pontecorvo:
Yeah, I think that’s right.
Robinson Meyer:
What I think back to is, we did our poll, our annual poll of climate insiders, which are kind of sources and experts and former officials and chief sustainability officers. And we asked them at the end of last year, do you think the AI build out is going to significantly slow down decarbonization? And most people said no. And at the time, I don’t know how I would have answered, but ... I feel like we’re much closer to a place where the AI buildout is slowing down decarbonization now than we were even eight months ago. And so just to start off, can you put the scale of this gas buildout in context for us? So how many plants have been proposed? How many of these plants are going to happen? What do we understand about the scale of this next generation of gas that is being planned across the United States right now?
Emily Pontecorvo:
Yeah, so I will say to start that a lot of this information is very slippery because there’s been so many announcements. The announcements are constantly kind of changing. And so we have some numbers, but they’re definitely estimates. So last week, the Global Energy Monitor, which is this group that tracks oil and gas projects all over the world, they put out a report saying that they counted 189 gigawatts of natural gas plants in the U.S. that have either been announced, that are in a pre-construction phase, like they have some permits, or that are under construction. And that is nearly double the amount that they found at the end of last year, which was about 97 gigawatts.
Robinson Meyer:
And is that entirely behind the meter plants, or are those any kind of natural gas plant being planned across the United States, kind of for any purpose on the grid or off the grid?
Emily Pontecorvo:
So these numbers, 189 gigawatts up from 97 six months ago, those are projects that are specifically being motivated by data centers. So some of them are being built on the grid that utilities are building to kind of meet new demand room data centers. And a lot of them are off-grid projects that are being directly tied to data centers.
Robinson Meyer:
And I guess you’ve kind of alluded to this already, but like, So it’s almost 200 gigawatts of gas plants coming online. Do we know, like, how large is the existing U.S. gas fleet?
Emily Pontecorvo:
Yeah, so I, you know, had to look this up for this story. But as of last year, the existing natural gas generation capacity in the U.S. was 512 gigawatts.
Robinson Meyer:
Wow. It’s like 40% of the gas fleet we’re going to add to our existing fleet. Like, this is not a small change to the size of the gas fleet. This is like a major expansion of U.S. generation capacity.
Emily Pontecorvo:
Yeah. And the thing is, the numbers I gave earlier, those are just projects that have some relationship to the data center build out. The report also gave an estimate of just total natural gas generation that’s being planned across the country. And that number is 378 gigawatts. So it’s almost, you know, nearly doubling what we have today. And what was really interesting was I went back and looked at when was a lot of the existing natural gas generation built? Was there a time in the past where we ... Natural gas plants this quickly. And there’s like a pretty clear kind of analogous time period in the early 2000s where we built, what was it, like nearly, it was like more than 150 gigawatts in just four years. I saw different estimates. It was like maybe closer to 200. But that was a very different build out where this time the plants are much, much bigger. And so many of them are being built off-grid.
Robinson Meyer:
It is actually crazy to me the scale of the build-out that is not being built to service AI, first of all, because I would have assumed that basically the number, that upfront number, was basically all the gas because all of it would be going to AI. So the fact that there’s another, what, 150, 140 gigawatts going to just general generation is pretty crazy.
Emily Pontecorvo:
Yeah, I will say it is possible that some of that is duplicative. Like I was talking to Brendan Pierpont from Energy Innovation. He is on their electricity team, and he was pointing out that they’re seeing that in a lot of cases, the developers will go to the utilities first and ask for a certain amount of capacity. And then when they see how long that’s going to take, then they’ll kind of turn to an off-grid project. And so it’s possible that both of those are getting included in this data, but it’s so hard to really pinpoint what the numbers are.
Robinson Meyer:
So how should we think about these 189 gigawatts? Because as you said at the top of this episode, like there’s a haziness to all of this because sometimes the same gigawatt, so to speak, of demand gets requested in multiple different venues, either in different grids or at different locations, or they ask for it on grid and then they try to build it off grid. At the same time, One through line of this AI story since the beginning has been the difficulty of getting any kind of bead on demand and on the scale of demand. And it seems entirely possible to me that these 189 gigawatts are not going to all get built, but that we are going to add 189 gigawatts because maybe there’s another 100 gigawatts of demand that’s waiting to be requested. And, you know, if we build 70% of these requested gigawatts and 30% of those requested gigawatts, we’re still hitting 190 gigawatts, we’re still hitting 200 gigawatts. And so how do you think about the likelihood that this demand becomes like real capacity in the economy?
Emily Pontecorvo:
I think that the demand is real. I don’t know that 189 gigawatts of natural gas fired power plants, and especially the particular list that this report comes up with, I don’t know that those are real. But I think between data centers and a lot of other kinds of demand that we’re putting on the grid, air conditioning, electric vehicles, manufacturing, like absolutely 189 gigawatts is real. I think that the really big question is how real are these natural gas projects and how quickly will they get built? What kinds of equipment, what kinds of technology they’ll use? So
Emily Pontecorvo:
I basically went through this exercise of trying to identify the 10 biggest projects. And my initial list and my final list are not the same because as I was like researching each individual one, everything felt like sand slipping through my fingers. Like I would see one press release and then one, you know, news article with rumors about XYZ. And then the company’s website said one thing and the permit said another thing. And it was really hard to get a good grasp of, here’s a developer with a project that they say can meet five gigawatts of demand someday. And yet, in the near term, they’re actually just going to build 150 megawatts.
Emily Pontecorvo:
And so, like, should we think about that? Right, exactly.
Robinson Meyer:
This is the case for the OpenAI facility. I wrote about this for Heatmap Daily, our daily afternoon newsletter that everyone should hopefully be subscribed to. But there is this big OpenAI Department of Energy data center that is being planned in Ohio. It’s being built on a kind of ex-nuclear site that the DOE owns. And I think one of the interesting things, I mean, there’s a lot of interesting things about this project. But first of all, it’s massive. It’s nearly 10 gigawatts. It would rival the largest natural gas power plants in the world. I think it’s going to be right now.
Robinson Meyer:
Neck and neck. If the whole thing gets built, it would be right around the same size as the Jabal Ali power and desalination gas plant in Dubai. And it’s all going to go to an open AI data center. It’s backstopped by Nvidia. We learned that last month, it’s really going to increase the likelihood that this facility gets built out. But what’s interesting is that the natural gas plant is going to be built on federal land, on Department of Energy land. It’s going to be owned by the DOE and financed by Japan as part of this Trump-Japan trade deal. Now, I think there’s still a lot of questions about how much this gets built. But to your point, what’s difficult about thinking about this plant is that they want to eventually build more than nine gigawatts of power. They plan to initially build 800 megawatts of gas, which is a lot of gas, but not like a Grand Coulee Dam’s worth of gas. That is a very large gas plant, but it is not a unprecedentedly large gas plant. And how do you assess the scale of that demand, right? Do you think of it as an 800 megawatt gas plant that could literally grow 10x over the next few years? Or do you think of it as a nine and a half gigawatt gas plant, and therefore the largest power generation project in American history?
Emily Pontecorvo:
Right. I mean, so there’s like so many projects that are in this data, that are in that 189 gigawatts, like Fermi America, the big project in Texas.
Robinson Meyer:
The Rick Perry associated project, yes.
Emily Pontecorvo:
Yes. And so they’re also aspiring to even bigger than the OpenAI project. I believe their stated total power generation for the site is like 17 gigawatts, 11 gigawatts of natural gas, plus a bunch of nuclear and some other stuff. Just completely pie in the sky numbers. they already have a permit for the 11 gigawatts of natural gas though or actually no i’m sorry they have a permit for the first six and submitted a permit for the next five but
Robinson Meyer:
Big plant that’s still a really big.
Emily Pontecorvo:
Plant it’s a really big plant and yeah there’s all these projects in the list that have these huge numbers but then what’s actually happening is they’re being built in phases and the first phase might just be a couple hundred megawatts or one gigawatt or between one and two is what I’ve mostly seen. And so whether that first phase is successfully built will determine whether the additional phases are built will determine how much of that 189 gigawatts.
Robinson Meyer:
Right. Well, and also like if the AI boom is still going strong in 2028 and 2029 and 2030, then they can keep building gas to service it. Who knows what the economy will be like by then? You and I will work for AI map or something.
Robinson Meyer:
Can we talk a little bit about like, why are companies building gas? Clean energy advocates talk a lot about how wind and solar, especially solar and batteries are the cheapest source of electricity. I would say when you talk to electricity traders, too, like when you talk to people in the market every day, they also talk about how cheap solar is. So why are companies building gas and not solar to service these facilities?
Emily Pontecorvo:
So there’s like, a lot of different reasons that are all kind of coming together. Maybe the biggest one of all are the bottlenecks to connecting to the grid, the transmission bottlenecks. And that’s really pushing a lot of these companies to look for off-grid solutions.
Robinson Meyer:
And specifically just to like play that out, because they cannot site enough acreage of solar on the site where they would put a data center to generate the power they need, which means they need a grid hookup. But if they need to generate their own power on their own acreage, then you need an extremely energy-dense form of generation, and that means you go to gas. Right, right.
Emily Pontecorvo:
And then I think that’s coming together with a bunch of political factors, like the Trump administration has a strong interest in pushing natural gas. They have gotten rid of the tax credits for clean energy. They’ve made renewable energy, wind and solar, really hard to build with all of these permitting freezes and permitting obstacles for renewables. I think another element is just like the extreme speed and kind of urgency that AI companies are expanding at and demanding power at, which I guess kind of circles back to the interconnection issue and just not wanting to wait to be connected to the grid. And then the last one that I think is important is this issue with affordability in data centers where people are really worried about the build out, increasing their energy bills. And a lot of data center developers are pushing this idea that by bringing their own generation, by building these gas power plants on site, not connecting to the grid, they’re kind of putting their project in a box and ensuring that it doesn’t have any impact on regular rate payers.
Robinson Meyer:
It’s interesting to me, the ratepayer protection pledge from Trump pledges that, data centers won’t make electricity rates go up. And the solution to this for a lot of these companies, as you were saying, when they look at the set of constraints that they’re working within that include acreage, cost, regulation, local grid interconnection capacity, speed to power, they solve this set of constraints by going with gas. And I mean, I think there’s a few interesting aspects about it. First of all, it’s not clear to me that it makes data centers any more popular. He recently did polling that made a lot of news that found that 75% of Americans at this point would oppose the data center being built near where they live. I’m not convinced that adding a fossil fuel power plant to a proposed data center project makes it any more popular because it’s taking a quasi-industrial site and turning it into a full-on industrial site. But that being said, one of the promises made by adding gas generation at the data center is that by generating your own electricity, you’re not increasing local demand for electricity and therefore not increasing anyone’s rates. Now...
Robinson Meyer:
There’s a whole separate conversation to have here about whether adding marginal large-scale loads to electricity grids outside of markets like the Mid-Atlantic, which are structured in a particular way where that jacks up everyone’s rates. There’s a whole separate question and discussion to have here about basically, if you add large customers to an electricity grid because of how electricity rates are designed, that may actually bring down everyone’s bills. But I don’t want to have that conversation now. But like, it’s not clear to me that they are actually like, companies build gas to protect everyone’s electricity rates from going up nearby. And whether or not that is a good idea, and whether or not that is true, what gets left out of that conversation is whether they’re protecting everyone else’s gas rates. And the natural gas system is also a fixed system. And unlike the electricity system where you’re moving electrons around, so to speak, and you can re-rate lines, you can up-rate existing transmission lines, like you are moving molecules around with natural gas. And one thing I have wondered is like, if we’re adding gigawatts and gigawatts of gas generation to an existing gas grid.
Robinson Meyer:
Are we about to see natural gas prices go up around the country, especially when you take into effect that LNG demand is also about to double over the next few years? And so there’s like we were already worried about LNG export driving up natural gas rates. Now we’re adding LNG and a nine gigawatt scale natural gas power plant is basically like a medium sized LNG plant’s worth of demand. You’re just exporting carbon dioxide into the sky and producing electricity right so like hyperscalers can protect electricity rates by building local gas generation it’s not clear to me they can protect gas rates.
Emily Pontecorvo:
Yeah I, I mean we’ve talked about this. I, I think it’s a ... I did talk a little bit about this with folks when i was reporting on this gas build out, and I think the natural gas international natural gas market is complicated, and it’s not like there’s like a one-to-one, you know, increased demand here prices go up here…
Robinson Meyer:
It’s also like when you talk about natural gas pricing like what drives natural gas pricing in the united states is like number one weather and then like ... dot dot dot ... like a gap as big as the grand canyon and then number two like, local supply constraints and then number three is like local demand you know like there’s the number one thing driving natural gas rates remains weather but I don’t know whether these.
Emily Pontecorvo:
Things wonder yeah like if any of these mega projects get built to this the scale that they are trying to and like will they be fighting with lng exports for capacity it’s hard to it’s hard to imagine
Robinson Meyer:
Of these 10 projects, like what surprised you most? Or what project kind of wound up on the list that you did not expect to see on the list at the beginning?
Emily Pontecorvo:
So, you know, going back to a few things that we’ve talked about, like, why is this happening? Why are why gas plants? There were two projects on the list that I was surprised to learn about that were, I think, have been sort of overshadowed by the OpenAI project. But there are two additional natural gas mega projects that are coming out of this U.S.-Japan trade deal that are going to be financed by Japan and owned by the U.S.
Robinson Meyer:
I think they’re financed by Japan, owned by SoftBank’s new energy subsidiary.
Emily Pontecorvo:
In this case, SoftBank is not involved. So NextEra is building a big project in Pennsylvania. They haven’t said where yet. And a big project in Texas, neither is like has a data center attached to it. It’s a little bit unclear whether there will be a data center attached to it. The Pennsylvania one might connect to the grid. But nonetheless, these deals have been advertised as being sort of motivated by increased data center demand. And so just going back to what we were talking about before, like, I do think that a significant amount of this buildup is the Trump administration wanting to build gas plants. Like, that’s nearly 20 between these three projects, the OpenAI one and the two NextEra projects. That’s nearly 20 gigawatts of natural gas fired capacity that the Trump administration is behind through this trade deal.
Robinson Meyer:
That’s crazy. Do we know for the 180 gigawatts built-to-service AI, for the hundreds of gigawatts that we think might be coming online for these 20 gigawatts, do we know what ... Kind of power plant they’re going to build. Because as we’ve discussed on previous episodes of Shift Key, there’s several different kinds of gas plants that are being built. The most efficient tend to be these combined cycle plants, which use the exhaust from generating electricity to then generate more electricity. And then that can kind of scale up through a peaker plant all the way to just basically now people are running jet engines to generate electricity. That matters a lot to the emissions profile of these plants because it matters a lot to their energy efficiency in just a very kind of classical sense. Do we have any sense of how efficient this nearly 190 gigawatts could be?
Emily Pontecorvo:
No, we don’t. In the case of these three projects that came out of the U.S.-Japan trade deal, it’s a little bit fuzzy still what technologies they’ll be using. I think in the case of the OpenAI plant, they said that they have the initial generation equipment secured, which maybe that just leads me to think that it’s combined cycle turbines since those are in shorter supply.
Robinson Meyer:
The hardest to get. Or maybe it means that they absolutely don’t have combined cycle turbines. Maybe, maybe.
Emily Pontecorvo:
But in going through this list, what I learned is that like, yeah, a lot of these projects are the ones that are permitted where, you know, you get really specific information about exactly what technology they’re using. A lot of them are using these combustion engines, just putting like dozens of them on site and,
Robinson Meyer:
Let’s ask the question that I think is nearest and dearest to both of our hearts. Like, what does this mean for U.S. emissions? Do we have any ability to estimate what a gas build out of the scale, what does this mean for U.S. emissions?
Emily Pontecorvo:
I tried to answer that question for this story, and I think it’s one that I’m going to continue to look into. It’s really hard to say at this point because so much of it is speculative. We don’t know, you know, is a third of this real? Is half of it real? Will it all eventually be real? What technologies will they end up using? How much of it will be on-grid versus off-grid? Like all of those questions will impact what it means in the long run. I think the best kind of estimate that I found was to look at the Rhodium Group’s taking stock report. They just put out their latest version of this last month. And this report they put out annually, it basically looks at, you know, if we take current policy, energy, technology trends, and we project them out into the future, what happens to emissions. So they found power sector emissions could decline 24 to 48% by 2040.
Emily Pontecorvo:
Compared to today, yeah. So, you know, that maybe it’s hard to tell, like, is that good? Is that bad? That is a significantly worse outcome than what they found two years ago when they did the same exercise and the Inflation Reduction Act was kind of in full swing. At that point, their estimate was power sector emissions would decline by at least 42%, so near the high end of the current estimate, by 2035, so five years earlier. Both of those reports did take into account lots of data center demand growth, but they did not, neither of them took into account the potential for a lot of that demand growth to be met with off-grid natural gas combustion engines. And so, you know, those are much worse from a mission standpoint. And the other thing, when I spoke to Ben King, one of the authors, and he was saying, you know, not only are these less efficient systems, these combustion engines and simple cycle turbines, but putting them off-grid also, they’ll be running around the clock. Whereas like if they were on the grid, you have this amazingly efficient system that’s, they’re being called upon when they’re needed, but they’re not necessarily...
Robinson Meyer:
Right, you have price-based dispatch.
Emily Pontecorvo:
Yeah, yeah.
Robinson Meyer:
What does this mean for corporate net zero goals? And to what extent is the AI high boom kind of turning corporate net zero goals into a dead letter?
Emily Pontecorvo:
So, you know, all of these companies, the biggest AI hyperscalers, Microsoft, Google, Meta, Amazon, those four specifically, they are still the biggest clean energy buyers in the world. Like Amazon has funded, you know, has more clean energy PPAs than any other company in the world. At the same time, Amazon is behind this natural gas power plant in Texas that’s going to be 7.65 gigawatts, depending on what else gets built, could be the biggest natural gas plant in the U.S. So it’s really hard.
Robinson Meyer:
For about a week, we thought it was the biggest natural gas plant in the U.S. And then this OpenAI project got announced.
Emily Pontecorvo:
Right, right. So yeah, it’s very hard to square these two sides of the coin where like these companies, on the one hand, seem to be totally throwing out their net zero goals and just trying to build as quickly as possible with whatever they can get. And on the other hand, they are still publicly stating their commitment to the net zero goal and still publicly signing power purchase agreements with clean energy. I don’t know that we have a good accounting yet of how much gas are they helping get built versus how much renewables. And I don’t know if that exercise is possible, but if you know, reach out to me. But there is something sort of absurd or like it just feels so implausible that these companies could still say we’re committed to go net zero and meanwhile be supporting these natural gas mega projects.
Robinson Meyer:
How many of these companies are still pledging to hit net zero by 2030?
Emily Pontecorvo:
Those four, the big, like Amazon, Microsoft, Meta, Google, the thing is
Robinson Meyer:
They all still have 2030 net zero goals.
Emily Pontecorvo:
They’re either 2030 or 2035. But I mean, on one hand, Google calls it a moonshot. And they have language like that, where they’re like, this is our guiding principle. This is our aspiration. But even that if this is your guiding principle how is it guiding you to support it
Robinson Meyer:
We did get to the moon, do you know what i mean a lot companies the government does this now too like public sector organizations they use moonshot to refer to something they want to do but are not probably going to do but in fact the whole thing about the moonshot was we did in fact get to the moon.
Emily Pontecorvo:
The thing is, like, is it still possible for a company like Microsoft or Google to hit net zero emissions by whatever date they choose on paper? Probably. That will maybe depend on the corporate standards that rise up in the next couple of years that determine what they are allowed to say on paper and how we account for certain things like carbon removal and clean energy purchases, those accounting rules can really change what these companies say they’ve accomplished. Will they have achieved net zero in the true spirit of trying to get the whole world to go net zero? I think that seems a lot less likely.
Robinson Meyer:
Well, this is, I mean, you’ve written about this too, but I guess what all this suggests to me is that corporate net zero goals and arguably even national net zero goals are not even the right thing to be training on because, and I’m not trying to make excuses for the tech companies here, because I completely agree with you that this gas build-out is not at all in line with their climate commitments. However if they were to basically give up on their climate commitments, and pull out their investments in all these other technologies that are crucial for global decarbonization and those technologies never got developed that would be a tragedy, like that would be really bad and to some degree if google, or microsoft with their investments that they’re making to meet their net zero goal, were to seed, a technology that is crucial to overall global decarbonization. To some degree, that is more important than whether Google is able to make a zero appear on its books in 2035 or 2040.
Robinson Meyer:
And I don’t mean to be too glib about this, but I do think we actually accept this logic in the case of other industries. I would argue, I think climate advocates would argue pretty forcefully that like the coal that was an input into the Chinese solar industry ultimately at this point has been overwhelmed by the emissions reductions from the Chinese solar industry, number one. But it was number two, it was like important because now we have the Chinese solar industry, which is able to produce solar panels at this unprecedented scale for global decarbonization. And setting aside the particular kind of security implications of that, it just seems to me that like, It is bad that these companies are doing this, but it would in some ways be worse for them to kind of stop.
Emily Pontecorvo:
I don’t know why one precludes the other.
Robinson Meyer:
I mean, well, just because I think that the charge here is not hypocrisy. I would rather they remain hypocritical, but doing something for net zero. I would like them to stop emitting. But if they are going to emit, I don’t mind that they’re hypocrites, I guess is maybe what I’m saying.
Emily Pontecorvo:
Sure. I mean, I do think that there is a potential problem with using net zero as the kind of defining goal.
Robinson Meyer:
Yes, yes. Right. In fact, the goal is a bad one.
Emily Pontecorvo:
Yeah, I mean, I would love for these companies to come up with a new set of commitments that continue to motivate them to make the kind of transformative investments that they’re making, but that don’t lead people to believe that achieving this balance of inputs and outputs is not only feasible, but is like for one company by itself to do that is important.
Emily Pontecorvo:
And it’s much more important to look at the kind of global picture.
Robinson Meyer:
How do you think about this whole build out in context of climate? I mean, at this point, Heatmap has written extensively about the unpopularity of data centers. It’s clear that some people hate data centers because of their emissions impact, but it doesn’t seem to be driving that trend. Though in some ways that trend is so big, so generalized, and so amorphous in some ways that like everything is kind of driving it. How has your recent reporting made you think about the AI build out broadly?
Emily Pontecorvo:
I mean, I’d come back to the fact that we really don’t know the scale of it yet, because there are so many unknowns. So much of this development is speculative. How much natural gas will actually get built? We don’t know. I think there are some other kind of exciting unknowns, like will we be able to speed up the development of geothermal and some nuclear and some other cleaner sources that could maybe displace some of this gas? And then I also started to think about some other questions, which are like, in a future administration that wanted to do something about climate or a future Congress that had more capacity to do something about emissions, what kind of new constituencies does this build? Like, I wonder if, you know, in the past, companies like Microsoft and Google have been supporters of emissions regulation and clean energy policy. But if they suddenly have all this natural gas on their books, are they going to still support regulating emissions? Like, they might have a vested interest in fighting natural gas power plant controls.
Robinson Meyer:
It’s been so fascinating watching the political backlash to data centers. And I think especially because data centers threaten to be this massive emissions bomb, right? But also because that doesn’t really seem to be what the backlash is about. And I am filled with a little bit of a sense of foreboding watching this because I know the scale of infrastructure change that is going to have to happen to decarbonize. And it is smaller than the data center build out. Now, I think we have a lot more to offer people in some ways than AI does. But I don’t know that, for instance, the faces of that decarbonization infrastructure change will be any more trusted than the faces of this infrastructure build out. And so, you know, Tom Perriello, former congressman, actually was in climate philanthropy for a long time.
Robinson Meyer:
Was a fairly important figure in climate philanthropy, is now running for Congress again. His odds aren’t great, but he’s running in this Republican district near Charlottesville, Virginia. And he just came out with an ad that was against transmission lines. It was against a transmission line. And it was also kind of against data centers because there’s an unpopular transmission line in his district. And listen, he’s a politician, right? He’s going to do what he needs to do to win that election. But like, if Tom Perriello, of all people, is willing to nod along to the threats of transmission lines, which are non-existent and, in fact, essential to the energy transition. I can’t look at the data center backlash and be entirely like, yes, only good can happen, to paraphrase our president.
Emily Pontecorvo:
Yeah. I mean, the one thing that I, when I think about comparing, if we didn’t have this crazy data center build out, and instead what we had was a huge surge of electric vehicles and heat pumps that created this energy crisis that, you know, where we needed to build a lot of power plants. I think the main difference in those two scenarios is the speed of it. Like, less the scale. I think the scale is somewhat equivalent, but it would at least have happened or it can still happen in the it might have been, people wouldn’t have been bombarded with a project in their backyard in every county in the country.
Robinson Meyer:
That’s not happening. And there’s an interesting angle here. We’ve talked about it on previous shows, but we always expected load growth to come back in the 2030s. In fact, we kind of need it to come back in the 2030s if we’re anywhere close to hitting climate goals. And if the economy not only decarbonizes, but modernizes in the way that we would like it to modernize, it will require load growth to go up. But I wonder if climate advocates are a little lucky that the people eating, the initial wave of load growth, the people who are kind of the clarions of load growth, as it were, are not decarbonization industries, but the big tech companies, which already had their own PR issues.
Emily Pontecorvo:
I don’t know. Well, a second ago, you were wondering if this doesn’t bode poorly for...
Robinson Meyer:
I think it ... I don’t know. I don’t know. I managed to feel bad about it either way. We’re going to have to leave it there. Emily Panacorvo, thanks so much for joining us on Shift Key.
Emily Pontecorvo:
Thanks, Rob.
Robinson Meyer:
And that will do it for us today. I hope you enjoy the dwindling days of your summer. Remember to stick around after the show for a conversation between Heatmap Labs and the sponsor of this episode, Verse. It should be really, really interesting. Until then, Shift Key is a production of Heatmap News. Our editors are Jillian Gibbon and Nico Loricello. Multimedia editing and audio production is by Jacob Lambert and by Nick Woodbury. Our music’s by Adam Cromelow. Thanks so much for listening. See you next time.
Mike Munsell:
My name is Mike Munsell, and I’m the Vice President of Partnerships with Heatmap News. In my last conversation with Seyed Madaeni, we talked about Versus’ business model helping data centers and large energy consumers connect to power. In today’s conversation, we chat about Versus’ recent Series B, and we go deep on speed to power. Let’s talk about speed to power. Why is everyone talking about this concept today, and how is Versus helping to accelerate that deployment? Very good question. And I think this is the billion dollar question, if not a trillion dollar question. So as we know, AI is compute, and compute needs power. So the first order of business, if you’re, I’m just going to use an example, if you’re developing 100-megawatt data center, the size of these data centers are measured in units of power. Let’s say for the sake of the argument when we talk about 100 megawatt data center if you apply for interconnection meaning that you want to power your facility so your chips start running and your AI models start training that takes a long time the reason that it takes a long time is utilities need to do planning studies they’re basically answering two questions one is there enough energy at the grid level to serve your consumption and your demand? Second, if there is, is there enough transmission and distribution wires to get the power to your location?
Seyed Madaeni:
Given this enormous amount of growth, the answer usually fails on both fronts. And as days go by and our grid becomes more and more saturated, the wait times are going to be even longer and longer because the world of power and energy doesn’t move at the speed of AI. It takes years to build transmission lines. It takes years to build power facilities. So how do we solve this problem? Is there a magic wand that we can use to accelerate the time for in a connection of these large loads the answer is yes in a nutshell is to bring your own generation to the mix and that is by deploying behind the meter assets behind the meter assets that are capable of
Seyed Madaeni:
Charging up energy giving it back to the grid like energy storage or solar or nimble gas plants. So really the solution is to pair your data center with these large physical assets such that when you are being studied by the local utility, you’re not no longer seen as a 100 megawatt fixed load that consumes electricity around the clock. You have the capability to shape and form your energy profile. But those physical assets, they’re not just going to drive themselves. They need software. Ironically, they need AI to solve the AI compute problem. And that’s where we come in. We control these assets on a second by second basis to, again, make sure the needs of the utilities are met, the needs of the data center is met. And then plus, we can give back to the grid and be grid grid citizens by participating electricity markets and really trying to offer that capacity to suppress electricity prices. That’s the solution that’s really being adopted. And we play a role in kind of controlling those assets on a 10, 15 year basis.
Mike Munsell:
And I saw you recently completed a Series B of which Nvidia and Google Ventures were big backers. Can you talk more about that and why Nvidia and Google are invested in versus success? And is it related to that speed to power equation?
Seyed Madaeni:
We just closed the Series B round. It was led by Bessemer Venture Partners. They’re an amazing group of folks, have more than a century of experience in investing. You’re absolutely right. Nvidia backed us. Also, Google Ventures, which led our Series A round. They also took part in our Series B round. Essentially, the value prop that we have in the investment thesis that these investors try to pursue is, can Verse be the entity to solve the grid problem so we can be good grid citizens and also simultaneously win the AI race? That was the fundamental investment thesis. and we managed to prove that we are the team, we are the platform. And as a result, they did participate. Now we’re working alongside Nvidia to integrate with their DSX platform and kind of be that part of the standard reference design, which we are working towards. Obviously, Google has a big need of data centers. Plus, we’re also serving a lot of hyperscalers and we have a deep backlog in the queue to kind of help contribute to bring these CapEx online.
Seyed Madaeni:
But we also have a very good angle that we can look back and not only we solve the problem, but we also help towards sustainability because believe it or not, solar and storage is the quickest and cheapest solution that you can deploy. We’re at the moment of time that CFOs like clean energy because it’s economic and clean, which gives us momentum to try to solve this problem.
Mike Munsell:
Let’s get into that. What is VERS deploying today? And what does the system look like when you integrate it with a data center?
Seyed Madaeni:
We as a company, we are AI software driven. So we are not really developing the physical projects. That requires financing, that requires a balance sheet, that requires expertise in EPC and construction. That’s why we have partners like Calibrand and And they’re top notch, not from the kind of physical development, but understanding how the systems work, holding the hands of these customers to understand what the value proposition is. Our work is mostly on the software side. Just think about it when you build an amazing car. That car needs a driver. And in this case, these assets need a driver, but it can’t be a human driver because you’re making decisions every millisecond, whether to fire up the battery, curtail the solar. Draw from the grid so we’re you need a autonomous self-driving car and this is like self-driving assets so ironically we’re using ai to train our models to control these assets but that’s the role that we play and in terms of the underlying assets that we’re seeing a lot of lithium-ion batteries systems from tesla influence and etc.
Seyed Madaeni:
A lot of solar and some nimble gas generators that can and be part of the mix and the solution. But we have integrations with a lot of these OEMs, SCADA systems, meters to be able to effectively control.
Mike Munsell:
And you mentioned Calibrand. Can you talk more about your partnership with them and how they’re helping you deploy today?
Seyed Madaeni:
Yeah. So basically, as we announced in our Series B, I would look at them, the OG of energy infrastructure development, and they’ve made significant progress in this field. So they’re deploying assets, they’re financing assets, they’re their owner and operator. And our partnership, our involvement is on the software side because this is not a software and AI problem. You can’t build amazing software like the one that we have and just use it up in the air. You need to deploy it on physical assets. And it takes a whole team to do that from people that understand hardware, understand financing, understanding project development, and people who understand AI models and software platforms, we fit in more of the latter camp.
Mike Munsell:
Can you talk more about your project pipeline right now and maybe how your Series B is helping to deploy technology faster, perhaps?
Seyed Madaeni:
Yeah, so basically our backlog is pretty deep. We are in the business of managing assets at the end of the day. So we have gigawatts on the management. We’ll soon come out with some press releases in terms of showcasing what those numbers are. And then our backlog, it’s on the kind of plain vanilla contract management, utility bill management, a lot of enterprises ranging from retail to hyperscalers to manufacturing, steel companies. But on the dispatch intelligence, which is part of ARIA, we have a deep backlog and commitment from a lot of blue chip hyperscalers that need speed to power tomorrow. So really, our mix of customer base is, I would say, enterprises that spend $100 million and above on electricity, which by frame of reference, some of them spend billions of dollars. So that’s really our target ICP. And so far, the traction has been amazing.
Mike Munsell:
That wraps up today’s conversation with Sayed Medini, CEO of Verse. Stay tuned after the next episode of Shift Key to learn more about Verse’s next five years and what Sayed believes is needed for U.S. energy policy.
Rob talks with Heatmap’s Emily Pontecorvo about how the data center boom is changing our emissions trajectory.
The United States is staring down a natural gas buildout of gigantic proportions.
Amazon wants to build what would be the country’s largest power plant in Texas — and run it entirely on natural gas. Not to be outdone, OpenAI is plotting an even larger power plant in Ohio that, if built, would become the world’s largest gas power facility. How should we think about this boom — and about the AI and technology companies behind it, who remain some of the world’s biggest buyers of clean energy?
On this episode of Shift Key, Rob is joined by Emily Pontecorvo, a Heatmap founding staff writer. They discuss what Emily learned identifying the country’s 10 biggest gas projects, what surprised her most, and what this means for the country’s climate trajectory — and Big Tech’s corporate net-zero goals.
Shift Key is hosted by Robinson Meyer, the founding executive editor of Heatmap News.
Subscribe to “Shift Key” and find this episode on Apple Podcasts, Spotify, Amazon, or wherever you get your podcasts.
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Here is an excerpt from their conversation:
Robinson Meyer: Can we talk a little bit about , why are companies building gas? Clean energy advocates talk a lot about how wind and solar — especially solar and batteries — are the cheapest source of electricity. I would say, when you talk to electricity traders, too, like when you talk to people in the market every day, they also talk about how cheap solar is. So why are companies building gas and not solar to service these facilities?
Emily Pontecorvo: So there’s a lot of different reasons that are all kind of coming together. Maybe the biggest one of all are the bottlenecks to connecting to the grid, the transmission bottlenecks. And that’s really pushing a lot of these companies to look for off-grid solutions.
Meyer: And specifically, just to play that out, because they cannot site enough acreage of solar on the site where they would put a data center to generate the power they need, which means they need a grid hookup. But if they need to generate their own power on their own acreage, then you need an extremely energy-dense form of generation, and that means you go to gas.
Pontecorvo: Right, right. And then I think that’s coming together with a bunch of political factors, like the Trump administration has a strong interest in pushing natural gas. They have gotten rid of the tax credits for clean energy. They’ve made renewable energy, wind and solar, really hard to build with all of these permitting freezes and permitting obstacles for renewables.
I think another element is just the extreme speed and urgency that AI companies are expanding at and demanding power at, which I guess kind of circles back to the interconnection issue and just not wanting to wait to be connected to the grid. And then the last one that I think is important is this issue with affordability in data centers, where people are really worried about the buildout increasing their energy bills. And a lot of data center developers are pushing this idea that by bringing their own generation, by building these gas power plants onsite, not connecting to the grid, they’re kind of putting their project in a box and ensuring that it doesn’t have any impact on regular ratepayers.
Meyer: It’s interesting to me — the Ratepayer Protection Pledge from Trump pledges that data centers won’t make electricity rates go up. And the solution to this for a lot of these companies, as you were saying, when they look at the set of constraints that they’re working within that include acreage, cost, regulation, local grid interconnection capacity, speed to power — they solve this set of constraints by going with gas. And I mean, I think there’s a few interesting aspects about it.
First of all, it’s not clear to me that it makes data centers any more popular. We recently did polling that made a lot of news that found that 75% of Americans, at this point, would oppose the data center being built near where they live. I’m not convinced that adding a fossil fuel power plant to a proposed data center project makes it any more popular because it’s taking a quasi-industrial site and turning it into a full-on industrial site. But that being said, one of the promises made by adding gas generation at the data center is that by generating your own electricity, you’re not increasing local demand for electricity and therefore not increasing anyone’s rates.
You can find a full transcript of the episode here.
Mentioned:
The U.S. Is Building Natural Gas Power Twice as Fast as China
Emily on Amazon’s Gigawatt Ranch
Rob on OpenAI and the PORTS-Pike Technology Campus
This episode of Shift Key is sponsored by ...
Verse's software platform Aria helps data centers connect to the grid faster and optimize power operations in real time. Learn more at verse.inc.
RE+ 26 is the largest clean energy event in North America, happening November 16th through 19th at the Las Vegas Convention Center. Register at re-plus.com and use code SHIFTKEY20 to save 20% off a Full Conference pass.
Music for Shift Key is by Adam Kromelow.
Everything is getting more expensive — except for government debt.
Across the developed world, yields on government debt are rising, driving up the cost of borrowing with potentially particularly dire effects for renewable and clean energy.
“Nearly every issue of government bonds at every maturity for all G7 countries is trading at a higher rate today than it was in February, pushing up the amount that governments must pay to sell new debt,” the Financial Times reported on Sunday.
These government bonds — especially U.S. government bonds — serve as benchmarks for lending across the economy. The 10-year Treasury is currently trading at a yield of 4.8%, up from 4% in February before the war in Iran began.
The rising yields are due in part to the ongoing war being waged by the United States and Israel, which has driven up the prices of core commodities and touched off inflation across the globe. A number of wealthy countries, including the United States, are also running large budget deficits, which means there’s lots of government debt floating around. Inflation erodes the value of that debt, however, driving up the returns investors demand for government bonds and driving down what they’re willing to pay.
I have written extensively about how high borrowing costs exact an especially steep toll from renewable energy development. That’s because the bulk of spending on a renewable project — say a solar farm — comes up front as capital expenditure that often has to be financed through borrowing. For a gas-fired power plant, on the other hand, the spending is split more evenly between upfront costs and operational costs (namely fuel), which can be paid for out of cash flow from operating the plant. Where the cost of operating a gas plant is at the mercy of natural gas prices, for a renewables project, interest rates can dominate the economics.
Sure enough, that inflationary pressure showed up in the second-quarter results of America’s renewables companies. Solar installer Sunrun, for instance, has seen declining sales growth. In an August earnings call, Sunrun CEO Mary Powell said the company’s results were “reflecting a higher capital cost as interest rates have inched up.” Wind developer Orsted, meanwhile, told investors that it had incurred a nearly $200 million loss on its U.S. offshore wind business “as a result of an increase in the long-dated U.S. interest rates.”
But macroeconomic indicators like deficits, inflation, and interest rates show just one side of the picture. After all, it’s not just governments that borrow, and it’s not just money that’s necessary for any sort of big project, including renewable and clean energy.
At the same time governments are borrowing more, bond market investors are also being offered hundreds of billions of dollars of debt from hyperscalers and other technology companies looking to build out data centers to power artificial intelligence. Bond markets will have to ingest over $500 billion of AI-related debt issuance this year, according to Morgan Stanley, and they’ll be called upon again to help fund an estimated $1.2 trillion in capital expenditures in 2027. Across the economy as a whole, “more than half of the capex growth this year can likely be ascribed to the buildout related to AI,” Federal Reserve Chair Kevin Warsh said in a speech last week.
That boom is driving economic activity — and high prices — throughout a number of sectors, including materials and labor.
Cleveland Fed President Beth Hammack told CNBC in June that inflation was “too high,” citing “insatiable” demand from data center developers for inputs such as electric switchgears. (Hammack was a dissenting voice at the July meeting of the Federal Open Markets Committee, voting for a higher interest rate against the Fed majority who decided to keep rates unchanged.)
And it’s not just software engineers who are seeing high salaries as a result of the AI boom. The technology buildout has also raised the wages of laborers and tradespeople essential to both data center and energy projects, especially for specialized trades like electricians.
“Skilled workers were difficult to find in a range of fields, notably technicians and tradespeople,” the Federal Reserve reported in its July report on economic conditions.
While this is great news for electricians and their families, it’s also the type of thing that can make central bankers nervous.
The “AI investment surge could trigger nonlinear price increases,” Dallas Fed President Lorie Logan said in July. “The risk is that the pressures broaden as AI demand touches construction, power generation, and other sectors.”
That’s the silver lining for renewable energy — and all energy developers. While the costs of capital, materials, and labor are going up, electricity itself has never been in greater demand.
The energy developer and utility NextEra told investors on its July earnings call that it’s been able to sign new contracts on existing assets at a $20 per megawatt-hour premium over recent prices, a process known as “recontracting,” indicating solid demand for power.
Overall, NextEra chief executive John Ketchum said, “Hyperscalers and other large load customers are increasingly focused on speed, certainty, and scalability. That plays directly to our strengths.”
Chirag Lala, vice president of research at the Center for Public Enterprise, explained to me that it’s this demand that’s balancing out the higher financial and material costs renewable developers face. “That’s why we are still getting solar and battery builds. There’s demand on the system,” he told me.
The industry is in a kind of tug of war between financial and structural factors pulling it back, and demand factors pushing it forward. “That buildout could absolutely be faster and bigger if a variety of structural and financial variables were mitigated,” Lala said.