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Google’s new 1.9GW clean energy deal includes massive 100-hour battery

Tim De Chant
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⚡ Quantum Brief
Google will build a 1.9GW clean energy-backed data center in Pine Island, Minnesota, featuring a record-breaking 30GWh battery—world’s largest—capable of 100-hour discharge to ensure round-the-clock renewable power. The project pairs 1.4GW of wind and 200MW of solar with Form Energy’s 300MW iron-air battery, using rust-based chemistry to store energy at $20/kWh—three times cheaper than lithium-ion despite lower efficiency. Form’s battery reversibly rusts iron pebbles to generate power, offering ultra-low-cost, long-duration storage but with 50-70% efficiency versus lithium-ion’s 90%, prioritizing affordability over performance. A novel "clean transition tariff" lets Xcel Energy adopt risky tech like Form’s unproven battery, with Google covering premiums to shield ratepayers, mirroring a prior Nevada deal with geothermal startup Fervo. This marks Google’s first Minnesota data center and Form’s largest deployment, scaling from a 150MWh pilot with Great River Energy, as the startup expands its West Virginia-built iron-air systems.
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Google announced Tuesday that it will build a data center in Minnesota that’s backed by 1.9 gigawatts of clean power, including a massive 300-megawatt battery made by startup Form Energy. The new data center, Google’s first in Minnesota, will be located in Pine Island, about an hour southeast of Minneapolis. The tech company is working with Xcel Energy to build 1.4 gigawatts of wind power and 200 megawatts of solar power. Both will feed Form’s battery, which will be capable of delivering its rated power for 100 hours. At 30 gigawatt-hours, it will be the largest battery in the world, helping the data center operate on clean energy for longer periods of time. Such long-duration batteries help renewable energy sources continue to provide power at night or during lulls, “firming” the power source, as experts call it. Grid-scale lithium-ion batteries do this already, though for shorter periods. Form Energy’s batteries are unlike most other grid-scale batteries. Whereas a typical grid-scale battery today uses lithium-ion technology that’s been repurposed from chemistries used by the automotive industry, Form’s batteries store energy by rusting and deoxidizing iron. When oxygen from the air flows over pebbles of iron inside the battery, it rusts the iron, generating electricity in the process. To charge, electrical current deoxidizes the rust, turning it back into metallic iron and releasing oxygen in the process, which is drawn out of the battery. As battery chemistries go, Form’s iron-air cells are heavy and not very efficient. Typical iron-air batteries can only deliver 50% to 70% of the energy used to charge them, compared with upwards of 90% for lithium-ion batteries. But for all their downsides, they come with one very large upside: they’re incredibly cheap. Form says 1 kilowatt-hour of storage will ultimately cost just $20 using their technology, which is at least three times cheaper than lithium-ion batteries. Techcrunch event Save up to $300 or 30% to TechCrunch Founder Summit 1,000+ founders and investors come together at TechCrunch Founder Summit 2026 for a full day focused on growth, execution, and real-world scaling. Learn from founders and investors who have shaped the industry. Connect with peers navigating similar growth stages. Walk away with tactics you can apply immediately.Offer ends March 13. Save up to $300 or 30% to TechCrunch Founder Summit 1,000+ founders and investors come together at TechCrunch Founder Summit 2026 for a full day focused on growth, execution, and real-world scaling. Learn from founders and investors who have shaped the industry. Connect with peers navigating similar growth stages. Walk away with tactics you can apply immediatelyOffer ends March 13. Boston, MA | June 9, 2026 REGISTER NOW The new project also introduces a wonky utility fee structure to Minnesota that’s intended to help utilities adopt clean technologies without running afoul of their regulators, which push utilities to use the cheapest source of electricity. Google first developed the concept in Nevada, where it’s buying power from enhanced geothermal startup Fervo. Alternately called the “clean transition tariff” or the “clean energy accelerator charge,” the agreement between Google and Xcel allows the utility to accept projects that might be considered risky by regulators, with the tech company paying a premium to ensure that regular ratepayers aren’t left holding the bag. Solar and wind are both proven technologies, but Form’s iron-air batteries are still relatively new. The startup’s first battery is currently being installed in Minnesota with cooperative utility Great River Energy, and it will store 150 megawatt-hours for 100 hours, sending 1.5 megawatts to the grid at its peak. Form makes its batteries at a factory in West Virginia. The company has raised $1.4 billion to date, according to PitchBook data. Topics Batteries, Climate, data centers, electrical grid, Enterprise, Form Energy, Google, Solar Power, Wind power Tim De Chant Senior Reporter, Climate Tim De Chant is a senior climate reporter at TechCrunch. He has written for a wide range of publications, including Wired magazine, the Chicago Tribune, Ars Technica, The Wire China, and NOVA Next, where he was founding editor. De Chant is also a lecturer in MIT’s Graduate Program in Science Writing, and he was awarded a Knight Science Journalism Fellowship at MIT in 2018, during which time he studied climate technologies and explored new business models for journalism. He received his PhD in environmental science, policy, and management from the University of California, Berkeley, and his BA degree in environmental studies, English, and biology from St. Olaf College. You can contact or verify outreach from Tim by emailing tim.dechant@techcrunch.com.

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