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Constellation Energy inked the deal, but the whole industry stands to benefit.
After Three Mile Island, what’s next?
That’s the question the nuclear industry and those who follow it were asking after news broke Friday that Constellation Energy was planning to reboot the facility’s Unit 1, which shut down in 2019. The deal is being anchored by Microsoft, which will purchase the power in order to balance out the emissions generated by its facilities in the PJM Interconnection, the multi-state power market that includes Pennsylvania. The plant is expected to be operational by 2028, Constellation said, and will be called the Crane Clean Energy Center, in honor of the company's former chief executive.
The demand for non-carbon-emitting power — and all power — has grown since Unit 1 closed and is expected to continue to in the future, especially as tech companies like Microsoft seek to build more datacenters while complying with their pledges to power their operations without greenhouse gas emissions.
The days of nuclear power plants shuttering not because of old age, safety concerns, or local opposition, but because of the economics of subsidized wind and solar and cheap natural gas, are likely over. New York, New Jersey, Connecticut, and Illinois all provided subsidies to their state’s nuclear fleet as plants were threatened with closure. California’s Diablo Canyon plant has seen its decommissioning delayed and received federal aid to help stay open. At a time when states representing a big chunk of US power consumption have aggressive emissions reduction goals and worries about power reliability, money is often easily found to keep nuclear plants open.
And now much of that cash might be coming from the private sector, specifically technology companies and independent power producers like Constellation.
“What we’re seeing is the fruits of previous labors coupled with the first-time-in-a-generation demand signals we had not yet seen,” Brett Rampal, a senior director at Veriten, an energy advisory company, told me.
These companies want the 24/7 carbon-free power that nuclear can uniquely provide. The federal government and several state capitals are also committed to bolstering the economics of America’s largest non-greenhouse-gas emitting, firm power source.
The Inflation Reduction Act contains considerable subsidies for both investing in and producing nuclear energy, as well as tools to finance nuclear power.
If history is any indication, having public and corporate policy rowing in the same direction can provide a huge boost for clean energy. For wind and solar, the two biggest demand boosters pulling forward their adoption has been technology companies wanting to buy clean power and federal subsidies for their construction and operation.
The structure Microsoft is using to purchase this power, the corporate power purchase agreement, was pioneered by Google in the late 2000s as a way for technology companies to support the development of clear power even when they couldn’t directly consume it. Now these tools are being used to support nuclear power. Constellation said Friday that the deal was the largest single power purchase agreement in history. According to figures worked out by Rampal, the deal will lead to some 135 terawatt-hours of generation over 20 years (a bit short of the annual electricity generation of Argentina), generating some $13.5 billion of revenue.
“Nobody would be moving forward with these projects,” explained Rampal, without tax credits or “extremely favorable loan support from the Loans Program Office.”
The other shuttered nuclear plant looking to restart, Michigan’s Palisades, has a $1.5 billion loan guarantee from the LPO.
“Constellation will be spending $1.6 billion of its own money to restart the plant – no state or federal aid. We may look at whether to seek a DOE loan for some of the financing, but that is not a given and not needed to make the project work. And even in that scenario, all the money is paid back in full. It’s just a slightly better interest rate,” Paul Adams, a Constellation spokesman, told me.
“The IRA contained nuclear production tax credits, which any nuclear plant is eligible for. The Crane Clean Energy Centerwould be no different once it is up and operating. That tax credit simply provides a floor price, in essence, to support nuclear production,” Adams said.
Almost immediately after the deal was announced attention turned to the Duane Arnold Energy Center plant in Iowa, which shut down in 2020 but whose owner, NextEra, has said could be a candidate for being relaunched.
After that, Rampal said, “there are tons of conversations around power uprates,” which is when nuclear plant operators install new equipment or alter the operation of existing plants to make them more powerful.
According to one study by Massachusetts Institute of Technology professor Koroush Shirvan, uprates could increase the capacity of America’s nuclear fleet by 50%. Actual uprates tend to be far more modest (and the paper acknowledges such dramatic uprates “are aspirational and may not be practical”). The last 10 uprates have averaged 1.6%, according to data collected by the Nuclear Energy Institute.
“Many more nuclear plants could be more aggressive with uprates. There’s technology out there that could produce more power,” Mark Nelson, managing director at Radiant Energy Group, told me.
The Loan Program Office can fund these upgrades and they will benefit from tax credits alongside other existing nuclear plants.
Microsoft is not the first technology company to get into the nuclear game, although many observers have long suspected it would. Alongside Google and Nucor, the company has committed to nurturing so-called clean-firm generation to help power operations on a 24/7 basis in a way that existing renewable generation cannot. The company has made several notable hires of nuclear industry veterans in the past few years.
“There’s nowhere in the USA where you can suddenly get power needed by Microsoft while making it additional,” besides bringing new nuclear power onto the grid, Nelson told me, referring to the concept that to fully prevent carbon emissions from new corporate activity, the non-carbon-emitting energy acquired has to be new to the grid. “Not just 24/7, but 24/7 at one location.”
Microsoft’s nuclear deal is also the second major one inked by a technology company just this year. Amazon purchased a data center site co-located at another Pennsylvania nuclear plant in March. That plan to link up a data center with the Susquehanna nuclear power plant has been controversial as it is “behind-the-meter,” meaning it would be powering Amazon’s facility directly, not providing power to the grid under a power purchase agreement like Microsoft will be doing with Constellation. Some argue it would still shift costs to others on the grid. The Amazon deal also does not provide any new clean power, it simply reallocates it to a big customer.
But there are only so many existing nuclear power plants that could uprate or recently-shut plants that could restart, but whatever new nuclear power does come online, there will likely be a technology company eager to scoop it up.
“We need to stamp out nuclear plants of designs that work now and lock in new construction,” Nelson told me. “We’re in a time of extreme scarcity.”
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The foreign entities of concern rules in the One Big Beautiful Bill would place gigantic new burdens on developers.
Trump campaigned on cutting red tape for energy development. At the start of his second term, he signed an executive order titled, “Unleashing Prosperity Through Deregulation,” promising to kill 10 regulations for each new one he enacted.
The order deems federal regulations an “ever-expanding morass” that “imposes massive costs on the lives of millions of Americans, creates a substantial restraint on our economic growth and ability to build and innovate, and hampers our global competitiveness.” It goes on to say that these regulations “are often difficult for the average person or business to understand,” that they are so complicated that they ultimately increase the cost of compliance, as well as the risks of non-compliance.
Reading this now, the passage echoes the comments I’ve heard from industry groups and tax law experts describing the incredibly complex foreign entities of concern rules that Congress — with the full-throated backing of the Trump administration — is about to impose on clean energy projects and manufacturers. Under the One Big Beautiful Bill Act, wind and solar, as well as utility-scale energy storage, geothermal, nuclear, and all kinds of manufacturing projects will have to abide by restrictions on their Chinese material inputs and contractual or financial ties with Chinese entities in order to qualify for tax credits.
“Foreign entity of concern” is a U.S. government term referring to entities that are “owned by, controlled by, or subject to the jurisdiction or direction of” any of four countries — Russia, Iran, North Korea, and most importantly for clean energy technology, China.
Trump’s tax bill requires companies to meet increasingly strict limits on the amount of material from China they use in their projects and products. A battery factory starting production next year, for example, would have to ensure that 60% of the value of the materials that make up its products have no connection to China. By 2030, the threshold would rise to 85%. The bill lays out similar benchmarks and timelines for clean electricity projects, as well as other kinds of manufacturing.
But how companies should calculate these percentages is not self-evident. The bill also forbids companies from collecting the tax credits if they have business relationships with “specified foreign entities” or “foreign-influenced entities,” terms with complicated definitions that will likely require guidance from the Treasury for companies to be sure they pass the test.
Regulatory uncertainty could stifle development until further guidance is released, but how long that takes will depend on if and when the Trump administration prioritizes getting it done. The One Big Beautiful Bill Act contains a lot of other new tax-related provisions that were central to the Trump campaign, including a tax exemption for tips, which are likely much higher on the department’s to-do list.
Tax credit implementation was a top priority for the Biden administration, and even with much higher staffing levels than the department currently has, it took the Treasury 18 months to publish initial guidance on foreign entities of concern rules for the Inflation Reduction Act’s electric vehicle tax credit. “These things are so unbelievably complicated,” Rachel McCleery, a former senior advisor at the Treasury under Biden, told me.
McCleery questioned whether larger, publicly-owned companies would be able to proceed with major investments in things like battery manufacturing plants until that guidance is out. She gave the example of a company planning to pump out 100,000 batteries per year and claim the per-kilowatt-hour advanced manufacturing tax credit. “That’s going to look like a pretty big number in claims, so you have to be able to confidently and assuredly tell your shareholder, Yep, we’re good, we qualify, and that requires a certification” by a tax counsel, she said. To McCleery, there’s an open question as to whether any tax counsel “would even provide a tax opinion for publicly-traded companies to claim credits of this size without guidance.”
John Cornwell, the director of policy at the Good Energy Collective, which conducts research and advocacy for nuclear power, echoed McCleery’s concerns. “Without very clear guidelines from the Treasury and IRS, until those guidelines are in place, that is going to restrict financing and investment,” Cornwell told me.
Understanding what the law requires will be the first challenge. But following it will involve tracking down supply chain data that may not exist, finding alternative suppliers that may not be able to fill the demand, and establishing extensive documentation of the origins of components sourced through webs of suppliers, sub-suppliers, and materials processors.
The Good Energy Institute put out an issue brief this week describing the myriad hurdles nuclear developers will face in trying to adhere to the tax credit rules. Nuclear plants contain thousands of components, and documenting the origin of everything from “steam generators to smaller items like specialized fasteners, gaskets, and electronic components will introduce substantial and costly administrative burdens,” it says. Additionally the critical minerals used in nuclear projects “often pass through multiple processing stages across different countries before final assembly,” and there are no established industry standards for supply chain documentation.
Beyond the documentation headache, even just finding the materials could be an issue. China dominates the market for specialized nuclear-grade materials manufacturing and precision component fabrication, the report says, and alternative suppliers are likely to charge premiums. Establishing new supply chains will take years, but Trump’s bill will begin enforcing the sourcing rules in 2026. The rules will prove even more difficult for companies trying to build first-of-a-kind advanced nuclear projects, as those rely on more highly specialized supply chains dominated by China.
These challenges may be surmountable, but that will depend, again, on what the Treasury decides, and when. The Department’s guidance could limit the types of components companies have to account for and simplify the documentation process, or it could not. But while companies wait for certainty, they may also be racking up interest. “The longer there are delays, that can have a substantial risk of project success,” Cornwell said.
And companies don’t have forever. Each of the credits comes with a phase-out schedule. Wind manufacturers can only claim the credits until 2028. Other manufacturers have until 2030. Credits for clean power projects will start to phase down in 2034. “Given the fact that a lot of these credits start lapsing in the next few years, there’s a very good chance that, because guidance has not yet come out, you’re actually looking at a much smaller time frame than than what is listed in the bill,” Skip Estes, the government affairs director for Securing America’s Energy Future, or SAFE, told me.
Another issue SAFE has raised is that the way these rules are set up, the foreign sourcing requirements will get more expensive and difficult to comply with as the value of the tax credits goes down. “Our concern is that that’s going to encourage companies to forego the credit altogether and just continue buying from the lowest common denominator, which is typically a Chinese state-owned or -influenced monopoly,” Estes said.
McCleery had another prediction — the regulations will be so burdensome that companies will simply set up shop elsewhere. “I think every industry will certainly be rethinking their future U.S. investments, right? They’ll go overseas, they’ll go to Canada, which dumped a ton of carrots and sticks into industry after we passed the IRA,” she said.
“The irony is that Republicans have historically been the party of deregulation, creating business friendly environments. This is completely opposite, right?”
On the budget debate, MethaneSAT’s untimely demise, and Nvidia
Current conditions: The northwestern U.S. faces “above average significant wildfire potential” for July • A month’s worth of rain fell over just 12 hours in China’s Hubei province, forcing evacuations • The top floor of the Eiffel Tower is closed today due to extreme heat.
The Senate finally passed its version of Trump’s One Big Beautiful Bill Act Tuesday morning, sending the tax package back to the House in hopes of delivering it to Trump by the July 4 holiday. The excise tax on renewables that had been stuffed into the bill over the weekend was removed after Senator Lisa Murkowski of Alaska struck a deal with the Senate leadership designed to secure her vote. In her piece examining exactly what’s in the bill, Heatmap’s Emily Pontecorvo explains that even without the excise tax, the bill would “gum up the works for clean energy projects across the spectrum due to new phase-out schedules for tax credits and fast-approaching deadlines to meet complex foreign sourcing rules.” Debate on the legislation begins on the House floor today. House Speaker Mike Johnson has said he doesn’t like the legislation, and a handful of other Republicans have already signaled they won’t vote for it.
The Environmental Protection Agency this week sent the White House a proposal that is expected to severely weaken the federal government’s ability to rein in planet-warming pollution. Details of the proposal, titled “Greenhouse Gas Endangerment Finding and Motor Vehicle Reconsideration,” aren’t clear yet, but EPA Administrator Lee Zeldin has reportedly been urging the Trump administration to repeal the 2009 “endangerment finding,” which explicitly identified greenhouse gases as a public health threat and gave the EPA the authority to regulate them. Striking down that finding would “free EPA from the legal obligation to regulate climate pollution from most sources, including power plants, cars and trucks, and virtually any other source,” wrote Alex Guillén at Politico. The title of the proposal suggests it aims to roll back EPA tailpipe emissions standards, as well.
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So long, MethaneSAT, we hardly knew ye. The Environmental Defense Fund said Tuesday that it had lost contact with its $88 million methane-detecting satellite, and that the spacecraft was “likely not recoverable.” The team is still trying to figure out exactly what happened. MethaneSAT launched into orbit last March and was collecting data about methane pollution from global fossil fuel infrastructure. “Thanks to MethaneSAT, we have gained critical insight about the distribution and volume of methane being released from oil and gas production areas,” EDF said. “We have also developed an unprecedented capability to interpret the measurements from space and translate them into volumes of methane released. This capacity will be valuable to other missions.“ The good news is that MethaneSAT was far from the only methane-tracking satellite in orbit.
Nvidia is backing a D.C.-based startup called Emerald AI that “enables AI data centers to flexibly adjust their power consumption from the electricity grid on demand.” Its goal is to make the grid more reliable while still meeting the growing energy demands of AI computing. The startup emerged from stealth this week with a $24.5 million seed round led by Radical Ventures and including funding from Nvidia. Emerald AI’s platform “acts as a smart mediator between the grid and a data center,” Nvidia explains. A field test of the software during a grid stress event in Phoenix, Arizona, demonstrated a 25% reduction in the energy consumption of AI workloads over three hours. “Renewable energy, which is intermittent and variable, is easier to add to a grid if that grid has lots of shock absorbers that can shift with changes in power supply,” said Ayse Coskun, Emerald AI’s chief scientist and a professor at Boston University. “Data centers can become some of those shock absorbers.”
In case you missed it: California Governor Gavin Newsom on Monday rolled back the state’s landmark Environmental Quality Act. The law, which had been in place since 1970, required environmental reviews for construction projects and had become a target for those looking to alleviate the state’s housing crisis. The change “means most urban developers will no longer have to study, predict, and mitigate the ways that new housing might affect local traffic, air pollution, flora and fauna, noise levels, groundwater quality, and objects of historic or archeological significance,” explainedCal Matters. On the other hand, it could also mean that much-needed housing projects get approved more quickly.
Tesla is expected to report its Q2 deliveries today, and analysts are projecting a year-over-year drop somewhere from 11% to 13%.
Jesse teaches Rob the basics of energy, power, and what it all has to do with the grid.
What is the difference between energy and power? How does the power grid work? And what’s the difference between a megawatt and a megawatt-hour?
On this week’s episode, we answer those questions and many, many more. This is the start of a new series: Shift Key Summer School. It’s a series of introductory “lecture conversations” meant to cover the basics of energy and the power grid for listeners of every experience level and background. In less than an hour, we try to get you up to speed on how to think about energy, power, horsepower, volts, amps, and what uses (approximately) 1 watt-hour, 1 kilowatt-hour, 1 megawatt-hour, and 1 gigawatt-hour.
Shift Key is hosted by Jesse Jenkins, a professor of energy systems engineering at Princeton University, and Robinson Meyer, Heatmap’s executive editor.
Subscribe to “Shift Key” and find this episode on Apple Podcasts, Spotify, Amazon, YouTube, or wherever you get your podcasts.
You can also add the show’s RSS feed to your podcast app to follow us directly.
Here is an excerpt from our conversation:
Jesse Jenkins: Let’s start with the joule. The joule is the SI unit for both work and energy. And the basic definition of energy is the ability to do work — not work in a job, but like work in the physics sense, meaning we are moving or displacing an object around. So a joule is defined as 1 newton-meter, among other things. It has an electrical equivalent, too. A newton is a unit of force, and force is accelerating a mass, from basic physics, over some distance in this case. So 1 meter of distance.
So we can break that down further, right? And we can describe the newton as 1 kilogram accelerated at 1 meter per second, squared. And then the work part is over a distance of one meter. So that kind of gives us a sense of something you feel. A kilogram, right, that’s 2.2 pounds. I don’t know, it’s like … I’m trying to think of something in my life that weighs a kilogram. Rob, can you think of something? A couple pounds of food, I guess. A liter of water weighs a kilogram by definition, as well. So if you’ve got like a liter bottle of soda, there’s your kilogram.
Then I want to move it over a meter. So I have a distance I’m displacing it. And then the question is, how fast do I want to do that? How quickly do I want to accelerate that movement? And that’s the acceleration part. And so from there, you kind of get a physical sense of this. If something requires more energy, if I’m moving more mass around, or if I’m moving that mass over a longer distance — 1 meter versus 100 meters versus a kilometer, right? — or if I want to accelerate that mass faster over that distance, so zero to 60 in three seconds versus zero to 60 in 10 seconds in your car, that’s going to take more energy.
Robinson Meyer: I am looking up what weighs … Oh, here we go: A 13-inch MacBook Air weighs about, a little more than a kilogram.
Jenkins: So your laptop. If you want to throw your laptop over a meter, accelerating at a pace of 1 meter per second, squared …
Meyer: That’s about a joule.
Jenkins: … that’s about a joule.
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This episode of Shift Key is sponsored by …
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Music for Shift Key is by Adam Kromelow.