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Inside the Global Race to Tap Potent Offshore Wind

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In a hangar at the University of Edinburgh, a triangular steel contraption sits beside a giant tank of water. One day soon, a platform 50 times as large may float in the deep waters of the North Sea, buoying up a massive wind turbine to harvest the steady, strong breezes there. Hence the push for wind platforms that float.

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DOE Critical Materials Institute selects four projects to support critical materials supply chain innovation

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The US Department of Energy’s (DOE’s) Critical Materials Institute (CMI) announced selections totaling up to $4 million for four research and development projects to partner with industry to address challenges in establishing domestic supply chains for critical materials. Project Title: Unlocking Missouri’s Cobalt Potential.

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CMU researchers find controlled charging of PHEVs can cut cost of integration into electricity system by 54-73%; higher benefits with wind power

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In a new study published in the journal Applied Energy , Carnegie Mellon University (CMU) researchers found that controlled charging of plug-in hybrid electric vehicles (PHEVs) reduces the costs of integrating the vehicles into an electricity system by 54–73% depending on the scenario. —Weis et al.

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UK awards £28M for 5 demonstration-phase low-carbon hydrogen production projects

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The Dolphyn project showcases a floating semi-submersible design with an integrated wind turbine, PEM electrolysis and desalination facilities. The project concerns the production of hydrogen at scale from offshore floating wind in deep water locations. The project aims to reduce the cost of electrolytic hydrogen significantly.

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Leading UK scientists set out resource challenge of meeting EV targets by 2050

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Over the next few decades, global supply of raw materials must drastically change to accommodate not just the UK’s transformation to a low carbon economy, but the whole world’s. Energy cost of metal production: This choice of vehicle comes with an energy cost too. million cars that requires 22.5

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Stanford study quantifies energetic costs of grid-scale energy storage over time; current batteries the worst performers; the need to improve cycle life by 3-10x

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Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. The data revealed that all five battery technologies have high embodied-energy costs compared with pumped hydroelectric storage.

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DOE awarding $35M to 11 projects for hydrokinetic turbine development; ARPA-E SHARKS

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These methodologies will significantly decrease the levelized cost of energy (LCOE) of the final HKT design. The National Renewable Energy Laboratory will expand its open-source Wind Energy with Integrated Servo- control (WEIS) toolbox to include control co-design capabilities of tidal and riverine hydrokinetic turbines.

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