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Hatch report finds NOVONIX dry cathode synthesis process offers cost and waste reduction improvements

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a global engineering consultancy firm, has delivered its report that evaluates NOVONIX’s all-dry, zero-waste cathode synthesis process. NOVONIX Limited, a battery materials and technology company, announced that Hatch Ltd.,

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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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The US Department of Energy (DOE) announced more than $24 million in funding for 77 projects supported by the Office of Technology Transitions (OTT) Technology Commercialization Fund (TCF). High-fidelity ignition models to boost engine thermal efficiency, $720,000 Convergent Science Inc., Madison, Wis. TerraPower LLC, Bellevue, Wash.

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Caltech engineers devise new thermochemical cycle for water splitting for H2; recyclable, non-toxic, non-corrosive and at lower temperatures

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The research group led by Mark Davis, the Warren and Katharine Schlinger Professor of Chemical Engineering at Caltech, describes the new, four-reaction process in an open access paper in the Proceedings of the National Academy of Sciences (PNAS). —Xu et al. NaMnO 2 at 850 °C; Na + extraction from ?-NaMnO

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First Cobalt announces positive feasibility results for Canadian cobalt refinery expansion; first NA producer of battery-grade cobalt sulfate

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Discussions underway with Glencore on commercial arrangements, financing and allocation of project economics; third party and government funding opportunities also under review. Sodium Treatment. Ausenco Engineering Canada Inc. Several EV manufacturers have expressed an interest in purchasing a North American cobalt sulfate.

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Novozymes launches commercial enzyme technology to convert waste oils into biodiesel

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Novozymes has launched Eversa Transform, the first commercially available enzymatic solution (a liquid lipase) to convert both glycerides and free fatty acids (FFA) into biodiesel. equivalent MeOH, 35°C/95°F, 2% water and 20 to 24 hours reaction time. This figure shows the basic layout of the Novozymes enzymatic process.

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NSF to award $13M for fundamental engineering research on production of electricity and fuels

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Advanced systems such as lithium-air, sodium-ion, as well as lithium-ion electrochemical energy storage are appropriate. Work on commercially available systems such as lead-acid and nickel-metal hydride batteries will not be considered by this program. Advanced Batteries for Transportation and Renewable Energy Storage.

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NSF to award $13M to projects focused on electrochemical and organic photovoltaic systems

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The goal of the Energy for Sustainability program is to support fundamental engineering research that will enable innovative processes for the sustainable production of electricity and fuels, and for energy storage. Advanced systems such as lithium-air, sodium-ion, as well as lithium-ion electrochemical energy storage are appropriate.