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MBL begins first test of tropical seaweed farming for biofuels production

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The team members are affiliated with an additional 16 organizations: Caribbean Coastal Ocean Observing System; University of Puerto Rico Mayaguez; University of Puerto Rico Rio Piedras; Woods Hole Oceanographic Institution; C.A. Earlier post.).

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Study shows a much cheaper catalyst can generate hydrogen in a commercial electrolyzer

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Researchers at the Department of Energy’s SLAC National Accelerator Laboratory and Stanford University have shown for the first time that a low-cost, non-precious metal cobalt phosphide (CoP) catalyst catalyst can split water and generate hydrogen gas for hours on end in the harsh environment of a commercial device. King, McKenzie A.

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DOE announces more than $65M in public and private funding to commercialize promising energy technologies

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The US Department of Energy (DOE) announced more than $30 million in federal funding, matched by more than $35 million in private sector funds, for 68 projects that will accelerate the commercialization of promising energy technologies—ranging from clean energy and advanced manufacturing, to building efficiency and next-generation materials.

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Woods Hole awarded $5.7M for seaweed-to-biofuels projects

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million from the Advanced Research Projects Agency - Energy (ARPA-E) Macroalgae Research Inspiring Novel Energy Resources (MARINER) Program for two projects that develop tools and technology to advance the mass production of seaweed for biofuels and bio-based chemicals. Earlier post.).

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Ethanol-fueled solid oxide fuel cells with HEA internal reforming catalyst for transportation applications

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Researchers from Lawrence Berkeley National Laboratory and the University of Connecticut have demonstrated high-performance metal-supported solid oxide fuel cells (MS-SOFC) with an integrated high entropy alloy (HEA) internal reforming catalyst (IRC) for transportation applications using ethanol and methanol as fuels. —Hu et al.

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DOE to award ~$13.5M to 16 R&D projects for solid-oxide fuel cell technologies

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SOFC technologies enable efficient, cost-effective electricity generation from abundant domestic coal and natural gas resources, with minimal use of water and near-zero atmospheric emissions of carbon dioxide and pollutants. Sputtered Thin Films for Very High Power, Efficient, and Low-Cost Commercial SOFCs.

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Researchers predict average Gulf of Mexico hypoxic “dead zone” slightly above-average in Chesapeake Bay

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NOAA­-supported modeling is forecasting this year''s Gulf of Mexico hypoxic zone to cover an area ranging from about 4,633 to 5,708 square miles (12,000 to 14,785 square kilometers) or about the size of the state of Connecticut.

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