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DOE to fund research to reduce costs of high-voltage direct current (HVDC) transmission

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The US Department of Energy’s (DOE) Wind Energy Technologies Office (WETO) and Office of Electricity (OE) plan to fund (DE-FOA-0003241) research to drive innovation and reduce costs of high-voltage direct current (HVDC) voltage source converter (VSC) transmission systems.

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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

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Syrah Resources completes BFS for expansion of US anode material production

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Australia-based Syrah Resources has completed a bankable feasibility study (BFS) for expansion of its natural graphite AAM facility in Vidalia, Louisiana, as it continues to execute its strategy of becoming the first vertically integrated producer of natural graphite AAM (advanced anode material) outside of China.

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NYU team develops novel ion-conducting copolymer to increase power and reduce cost of fuel cells

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Researchers at the NYU Tandon School of Engineering, led by Miguel Modestino, professor of chemical and biomolecular engineering, and Lawrence Berkeley National Laboratory have developed a novel ion-conducting polymer (ionomer) that increases the power and lowers the cost of fuel cells. —Katzenberg et al. —Miguel Modestino.

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SDSU-led project to design bacteria that extract rare earth elements in DARPA EMBER project

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With funding from the Defense Advanced Research Projects Agency (DARPA) Environmental Microbes as a BioEngineering Resource ( EMBER ) program ( earlier post ), San Diego State University researchers are developing advanced extraction methods with the aim of boosting the domestic supply of REEs.

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Penn State Li-ion battery design could charge an EV in 10 minutes; asymmetric temperature modulation

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If scaled, the asymmetric temperature modulation design is one potential strategy to alleviate concerns that all-electric vehicles lack sufficient cruise range to safely reach a destination without stalling mid-journey. Next, Wang’s team is planning to take the design a step further. Yang et al. —Chao-Yang Wang. 2019.09.021.

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National labs team delivers techno-economic analyses of H2 DRI scenarios for green steel

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In this study, break-even levelized cost of hydrogen (LCOH) targets for decarbonizing the steel industry with H 2 -DRI are established by comparing H 2 -DRI to the commercial natural gas-based direct reduced iron (NG-DRI) process. The authors examined five NG-DRI design scenarios and six H 2 -DRI scenarios. —Rosner et al.

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