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New long-duration, extended capacity Na-Al battery design for grid storage

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The new battery design could help ease integration of renewable energy into the electrical grid at lower cost, using Earth-abundant metals, according to a study just published in Energy Storage Materials. h is achieved with an estimated raw active materials cost of $7.02 mAh cm −2 , a discharge duration of 28.2 Weller et al.

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Opinion: Reinventing fuel-based power for a more secure and resilient grid

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With battery storage able to provide a unique role in balancing a renewable electricity grid, Toby Gill, CEO of Intelligent Power Generation, asks could innovations in green hydrogen and biofuel technologies contribute to a more optimized and economical energy mix? Our grid is changing, and so must the way we operate it.

Grid 332
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Shearwater Energy developing SMR wind-hybrid energy project; selects NuScale Power

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a United Kingdom-based hybrid clean energy company, is developing a wind-SMR (Small Modular Reactor) and hydrogen production hybrid energy project in North Wales. NuScale’s assessment of the UK supply chain concluded that more than 75% of the content of a NuScale plant could be sourced within the UK. Shearwater Energy Ltd.,

Wind 320
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Profiteering Hampers U.S. Grid Expansion

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The deficit is driving up electricity prices, reducing grid reliability, and hobbling renewable energy deployment. grids demands public scrutiny and accountability. A transmission network contains webs of connections, which create a reliable, redundant power-supply system of massive scale. Their grip over the backbone of U.S.

Grid 139
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Naturgy and Enagás studying production of green hydrogen from 350 MW of wind power in Asturias

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Naturgy and Enagás are studying the production of green hydrogen from a 250MW floating offshore wind farm and another 100MW onshore wind farm in Asturias (Spain) for industrial consumption in this Autonomous Region. The electrolyzer will be supplied by Hydrogenics, which is part of the Cummins Group.

Wind 315
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IEA: governments must act to ensure sufficient supply of critical minerals to meet net-zero goals

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A typical electric car requires six times the mineral inputs of a conventional car, and an onshore wind plant requires nine times more mineral resources than a similarly sized gas-fired power plant. Wind takes the lead, bolstered by material-intensive offshore wind. Source: IEA. Source: IEA.

Supplies 248
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Wind-to-Hydrogen Tech Goes to Sea

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Wind and solar parks produce a large portion of their energy. Then, as now, wind farms are operating off the world’s coasts—but not all of these offshore sites are connected to the mainland via underwater power cables. Some of the wind farms instead sit in clusters more than 100 kilometers out at sea.

Wind 89