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As Americans crank up their air conditioning bills in the summer months, the importance of affordable, dependable power is critical but often taken for granted. Especially today, families are more acutely aware of how much they’re paying as electricity rates have risen at a pace more than double the rate of inflation over the past year. 

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With demand surging, primarily driven by the data centers powering America’s AI boom, the Trump administration launched its Ratepayer Protection Pledge to shield Americans from the costs of new load growth. Since its signing in March, the pledge has grown to cover roughly 80 percent of all power delivered to U.S. homes and businesses, pulling in support from more than 200 additional utilities, developers, cooperatives, and states. The initiative has also been picked up as a Senate resolution urging federal agencies to help implement it. While the buy-in is real, the outcome will be more difficult to achieve without the regulatory reforms necessary to truly protect ratepayers. 

The original premise of the Ratepayer Protection Pledge is sound in principle. Hyperscalers that need more energy should pay for the power plants and transmission lines their servers require, rather than spreading those costs across every ratepayer’s monthly bill. Original signatories, including Amazon, Google, Meta, Microsoft, and OpenAI, committed to building or buying their own generation, covering the infrastructure upgrades their projects require, and paying negotiated rates whether they use the power they request or not. Utilities already negotiate special contracts with large industrial customers and data centers, and the power they help bring online could be a flexible resource for the grid during high demand or if a weather event takes other power offline. 

>>>READ: Energy Innovation Could Offer a Path to More Affordable Energy and Lower Emissions

In practice, insulating ratepayers from all the new builds will be challenging. Electricity rates are complex, and disentangling the costs AI developers should bear for generation, transmission, and distribution is an extremely difficult task that requires coordinated efforts across multiple jurisdictions. Special contracts between utilities and large customers that preemptively bind commercial and industrial players to pay for grid upgrades are rare in today’s buildout. This leaves ratepayers to foot the bill if a large customer’s demand is lower than expected or fails to materialize altogether. While federal regulators just directed regional markets to close this gap, the comprehensiveness and timeliness of regions’ responses are highly uncertain. In the near term, contracts could include real minimum-payment and exit-cost provisions, but it is likely that not all of them will. 

Investor-owned utilities’ business model is also not conducive to building out energy infrastructure in an economically efficient manner. These monopolies earn a regulator-approved rate of return on new infrastructure investments they add to their rate base. They have a “spend money, make money” model. Since the beginning of 2026, utility rate increases have totaled $18.6 billion, evidence of this perverse incentive. As utilities plan $1.4 trillion in capital expenditures through 2030, there’s no utility bill relief in sight for U.S. households and businesses. When regulators approve large, rate-based investments, ratepayers foot the bill.

While spending is necessary to ensure grid reliability and meet rising demand, policy and regulation should ensure reliability at the lowest possible cost, which has been far from the case. The role, then, for federal and state policymakers is to create a system that structures the incentives to minimize those costs. 

The hard work requires consumer-first reforms at the federal and state levels. Subjecting generation and transmission to more competition, expanding retail choice, improving permitting timelines, providing flexibility, integrating cost-competitive, advanced transmission technologies into grid planning, and creating entirely new infrastructure development models that operate outside of public utility commissions but are still subject to environmental and safety standards. 

>>>READ: Blocking Data Centers Won’t Make Electricity Cheaper

These reforms share a common goal of reducing artificial barriers to competitive grid innovation. Meeting elevated, AI-driven electricity demand while fostering cost discipline requires policymakers to embrace a solution set that enables competition, supports the least-cost investments, and cuts unnecessary red tape that hinders energy growth.

None of this means the pledge is worthless. It’s a meaningful signal that industry recognizes the political and economic risk of shifting AI’s power needs onto ordinary families, particularly amid growing opposition to data centers. However, if lawmakers are serious about protecting ratepayers, it is incumbent on federal lawmakers, state legislatures, and public utility commissions to enact reforms that create a more dynamic, flexible system that rewards cost discipline rather than cost overruns. Doing so will reward technological innovation and drive economic competitiveness while protecting families from unnecessarily high utility bills. 

Tennessee Governor Bill Lee announced Monday that the U.S. Department of Energy selected Tennessee as a finalist to host a “Nuclear Lifecycle Innovation Campus.”

According to the governor’s office, the campus could bring billions of dollars in economic investment and create thousands of jobs. The DOE said the campus would support the development of domestic nuclear fuel cycle capabilities, accelerate the development of advanced nuclear technologies, and reinforce America’s energy security.

Read more in WBIR here.

The White House is pushing Congress to break a decades-long impasse around the handling of nuclear waste and entice states to get on board, according to a document obtained by POLITICO.

The Trump administration is seeking changes to federal law to allow the Department of Energy to partner with states willing to store waste generated at the nation’s nuclear reactors, according to the document laying out “legislative principles.” It has been circulating on Capitol Hill and among nuclear industry leaders.

Read more in Politico here.

Conservatives have long understood that conservation is not about locking away America’s natural treasures, but stewarding them through responsible use so future generations can enjoy the same public lands that earlier generations worked hard to secure.

Just six years ago, President Donald Trump paid tribute to that legacy when he signed the original “Great American Outdoors Act” into law. That bill established the National Parks and Public Land Legacy Restoration Fund (LRF), which budgeted for countless infrastructure projects within our most precious landscapes. But that program expired last year, threatening the future of America’s natural inheritance.

Read more in Fox News here.

The Midwest and Northeast registered some of the worst air quality in the world last week as wildfire smoke shrouded cities from Minneapolis to New York in an apocalyptic haze. More than 100 million Americans were under air-quality alerts, with smoke even reaching Washington, D.C., by the weekend.

Most of the smoke came from Canada, where about 900 wildfires were burning by Friday. Over 100 were burning in northwestern Ontario alone. Fires are also raging in northern Minnesota and across the western United States, where another brutal fire season is underway. Nearly 80 large fires are uncontained nationwide, and more than 3.9 million acres have burned this year.

Read more in City Journal here.

This week, a reptile from the Florida Keys was added to the endangered species list. The Mole Skink may have a better chance of survival due to recent changes in regulations and an improved scientific landscape.

The 50-year era of “don’t-touch” conservation may have ended three weeks ago, after the Trump administration narrowed the definition of harm under the Endangered Species Act (ESA). Harming an endangered species used to encompass damage to the land the species lives on. Landowners with endangered species were limited in how they could steward their plots of land. After all, endangered species’ recoveries relied on proactive efforts by landowners, which will remain intact regardless of the changing incentive structure of the ESA. The unnecessary penalties landowners had to incur were lifted, and conservation efforts will be able to fit the needs of the land and life rather than keeping the overburdening punishments of the ESA. 

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Harm once covered habitat degradation as well as direct injury to endangered plants and animals; now it covers only the latter. With the new ruling, construction projects will still prioritize recovery plans, and harm to species will still be minimized. Under the old rule, construction projects were curtailed due to the possible risk they could have on the local endangered flora and fauna.

However, shielding endangered species from all types of harm is like wrapping a child in bubble wrap: safe, perhaps, but unable to grow up and experience life. That excessive prevention has stifled American industry, and with it, economic progress. With the bubble wrap removed, endangered species must now coexist with American innovation, including the genetic technologies and procedures emerging to help save them.

>>>READ: To Save the Sequoias, Bring Back Good Fire

For instance, on June 25, Colossal Biosciences and the U.S. Fish and Wildlife Service launched the BioVault initiative to catalogue the DNA of every species listed in the ESA. Colossal Biosciences’ manager of conservation, Stefano Arango, announced that this “partnership aims to collect, sequence, and preserve living cells, reproductive tissues, and genomic material from more than 2,300 ESA-listed species so future scientists, wildlife managers, and conservation organizations have more tools to support recovery and resilience.” 

“America leads the world when we embrace innovation and put our best minds to work solving big challenges,” said Secretary of the Interior Doug Burgum.

But a genetic archive is not a cure. It is insurance against a worst-case scenario we should never reach: extinction. 

But BioVault should be understood as a complement to conservation on the ground, not a substitute for it. A genetic archive may preserve options for future researchers, but it cannot remove threats to extinction or manage a working landscape today. That requires landowners and local communities with the knowledge and incentive to act on the ground. 


>>>READ: Interior Announces State Management of Grizzly Bears

An ounce of prevention is worth a pound of cure, and endangered species policy should reflect that principle. Supporting recovery and resilience beforehand will ensure species don’t reach that point. The goal now is balance: enough room for resilient nature to adapt and for America to build. Whether the rule change delivers a better future for Americans and the more than 2,300 listed species, something the previous ESA regulations, focused solely on non-human organisms never achieved, remains to be seen. 

A better ESA would reward measurable recovery, active habitat management, and private stewardship rather than rely so heavily on restrictions. It would also treat invasive species like the threat they are, and reward prevention and management of them.

In many cases, conservation requires active stewardship. By actively combating drivers of extinction, such as invasive species, the ESA would be stronger. Better prevention requires targeting the cause rather than the victim. Since 1973, when the ESA was passed, the law has prevented the killing, trapping and harming of any listed endangered wildlife — a provision that still makes sense. The federal land-use restrictions tied to habitat no longer do; habitat can be better shared.

Landowners and developers should be rewarded for stewardship, rather than penalized with outdated restrictions.

Airlines instruct passengers to secure their own oxygen masks before helping others. The same logic applies here: caring for other species shouldn’t come at the cost of our own progress. Conservation efforts can expand even as mining, oil, and other industries see a revival. 

The ESA was created for a clear reason: “various species of fish, wildlife, and plants in the United States have been rendered extinct as a consequence of economic growth and development.” Now, thanks to that same growth and development, species can be genetically preserved. Preventing harm to endangered species no longer has to mean harming human progress. That is the symbiosis this reform is reaching for. 

The U.S. Department of Agriculture (USDA) is taking steps to speed up progress in plant science by calling on universities and stakeholders to help build new AI tools that can translate the huge amount of germplasm data the agency collects.

Through the Genesis Mission and the Agriculture Advanced Research and Development Authority (AgARDA), USDA is expected to launch an Agricultural National Science & Technology Challenge later this year. The Challenge will ask innovators to create practical solutions that pull together different types of information—like images, field data, and lab results—so scientists can quickly spot important plant and seed traits and develop crops that are more resilient and productive.

Read more from the USDA here.

Not long ago, the artificial intelligence boom lifted pretty much any stockwith a story to tell about serving electricity to data centers. Investors are getting more fretful about whether there will be enough power demand to go around. 

For them, selling into a tight market in the 2030s would be a nice way to fund the continued commercialization of their technologies. 

Exhibit A is Oklo, the nuclear-reactor developer backed by OpenAI’s Sam Altman. Its shares have lost roughly 75% of their value since it briefly hit a valuation north of $25 billion last October, around the peak of AI power mania. Oklo has deals to provide more than 14 gigawatts of power for Meta and others, but has yet to secure key permits, let alone build a power plant. 

Read more in the Wall Street Journal here.

Many American power plants are stuck in a dysfunctional express lane. Energy Resource Interconnection Service, or ERIS was created to give generating facilities a faster, leaner way to connect to the grid without waiting in the main queue. Instead, in many markets, ​​ERIS today places fast-trackers on the same slow schedule as projects in the main line. When new, highly competitive generation cannot be connected to the grid in a timely way, a key affordability and efficiency opportunity is left on the table.

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The distinction between ERIS and its busier counterpart, Network Resource Interconnection Service (NRIS) is an important one, and relates to the grid’s capacity to handle newly generated power. With NRIS, developers want full, firm access to the grid, so the grid operator studies what new infrastructure must be built so the plant can inject power even when the system is stressed. This creates increased certainty for the generator, backed by detailed studies and upgrades, but also more cost and longer timelines; ERIS is supposed to be different.

When a generator joins the ERIS queue, it agrees to be turned down, or curtailed, when the local grid is under strain. It doesn’t demand firm injection rights at all times. In principle, that flexibility should allow operators to study ERIS projects under lighter criteria, because the plant can be dialed back rather than forcing the grid to be rebuilt around it. That should mean fewer required upgrades, faster interconnection and lower costs than NRIS. 

But ERIS is failing to deliver these advantages today. Researchers from the Lawrence Berkeley National Laboratory and Duke University have shown that ERIS projects are increasingly facing similar upgrade costs and multi-year wait times as NRIS ones. Some of that reflects a genuine decline in unused capacity on our existing infrastructure, but it also reveals a deeper flaw in how energy‑only projects are studied.

When transmission providers study a non-firm project, they often use highly conservative planning assumptions, treating ERIS resources as if they must deliver even when grid capacity is scarce. In other words, they model ERIS projects as always needing to be accommodated, and then identify and assign major network upgrades to make that possible. That approach runs counter to the fundamental purpose of ERIS: to manage scarcity by curtailing flexible resources, not by asking flexible participants to unnecessarily upgrade the system. 

>>>READ: A Consumer-First Framework for Transmission Reform

There is a more efficient way to handle these constraints, and it’s called operational redispatch. Redispatch is simply when grid operators turn some plants up and others down so electricity flows keep the equipment operating within safe limits. If an ERIS plant sits behind a constraint, the operator can run generation on closer to where power is needed—on the other side of the constraint—and temporarily turn the ERIS plant down. When such a bottleneck isn’t present, the ERIS plant runs and displaces more expensive generation.

Texas’ grid shows what an operationally grounded, energy‑only approach can look like. The ERCOT “connect and manage” model allows new generators to interconnect quickly as long as baseline reliability standards are met, without requiring them to fund large transmission upgrades just to begin delivering power. Economic congestion and operational constraints are managed through redispatch, curtailment, and market signals. This framework has allowed the Lone Star State to connect more generation than any other major U.S. region, while keeping average electricity prices among the lowest in the country. Nonetheless, the state’s reliability and planning debates underline why broader consumer-first grid policy remains imperative.

Congress now has an opportunity with the Grid Connection and Congestion Management Act, introduced by Senator Martin Heinrich (D-NM), to ensure that energy-only does not translate into energy-never in FERC‑regulated markets. The bill paves a path forward on ERIS by directing the Federal Energy Regulatory Commission (FERC) to establish a true energy-only service option. This offering should define clear study assumptions focused on reliability, limit when ERIS projects can be assigned upgrade costs, and study projects independently to ensure efficient application processing. In exchange for accepting curtailment risk, ERIS developers should enjoy cheaper, faster access to the grid where it’s available. That trade is squarely in the interest of consumers, as long as the costs of any necessary upgrades are fairly allocated to the customers and projects that actually benefit, rather than quietly shifted onto captive ratepayers.

>>>READ: Closing the Local Project Loophole: the Case for Competitive Transmission

To be sure, none of this replaces the need to upgrade and expand the broader power grid. New high-voltage transmission that links regions and interconnections remains vital to keeping electricity both affordable and reliable over the long term. But reforming the Energy Resource Interconnection Service process can help inject competition into power prices across the United States while making better use of the equipment that ratepayers have already paid for.

With new electricity demand on the horizon, getting affordable generation online quickly has to be part of the solution. Fixing ERIS is an early, sensible way to move the needle. Congress should give FERC the direction it needs to reopen this fast track, so competitive projects can get onto the grid and help lower utility bills for American households and businesses.

The Trump administration plans to announce Wednesday that it has reached a broad nuclear agreement with Saudi Arabia that could lead to the country enriching its own fuel for nuclear reactors, U.S. officials said. 

The accord is intended to further bind the United States with the Saudi government as the war with Iran strains the relationship. The Trump administration, according to officials, estimates it will provide billions of dollars for the U.S. nuclear industry — starting with Westinghouse, which designs many of the reactors sold abroad.

Read more in the New York Times here.

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