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Japan team evaluates battery-assisted low-cost hydrogen production from solar energy

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Researchers from Japan’s NIMS (National Institute for Materials Science), the University of Tokyo and Hiroshima University have jointly conducted a techno-economic analysis for hydrogen production from photovoltaic power generation (PV) utilizing a battery-assisted electrolyzer. Credit: NIMS. 2018.11.119 ).

Low Cost 403
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Researchers use melamine to create effective, low-cost carbon capture; potential tailpipe application

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UC Berkeley chemists created the first such carbon-capture MOF in 2015, and subsequent versions have proved even more efficient at removing carbon dioxide from flue gases, such as those from a coal-fired power plant. The low cost of porous melamine means that the material could be deployed widely. Haiyan Mao et al.

Low Cost 243
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PNNL team develops new low-cost method to convert captured CO2 to methane

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Earlier this year, PNNL researchers revealed that using EEMPA in power plants could slash the price of carbon capture to 19% lower than standard industry costs—the lowest documented price of carbon capture. The new process gives off excess heat, too, providing steam for power generation. —Heldebrant et al.

Low Cost 315
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SK E&S, SK Plug Hyverse partner with Korea South-East Power for green hydrogen & green ammonia production

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SK E&S and SK Plug Hyverse—a joint venture (JV) formed in January of this year by SK E&S and Plug Power—will work with Korea Southeast Power Generation (KOEN) to cooperate with green hydrogen and green ammonia projects based on renewable energy resources in Korea and abroad.

Green 284
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GlobalData: hydrogen to become game changer as large-scale source of cleaner power

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The technology has the capability to serve as a long-term, large-scale clean energy storage medium that aids power generation from renewable sources, however, formulating a cost-effective and well-regulated transition is a complex issue and the cost of producing hydrogen from renewable energy sources is currently expensive.

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Researchers in Australia develop low-cost water-splitting catalyst that offers comparable performance to platinum

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An additional benefit is that our nickel-iron electrode can catalyse both the hydrogen and oxygen generation, so not only could we slash the production costs by using Earth-abundant elements, but also the costs of manufacturing one catalyst instead of two. —Prof Zhao. Iron and nickel are currently priced at $0.13 and $19.65

Water 243
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New long-duration, extended capacity Na-Al battery design for grid storage

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h is achieved with an estimated raw active materials cost of $7.02 These metrics show the great potential of this unlocked chloroaluminate battery for future low-cost, long-duration electrochemical energy storage. Resources J. mAh cm −2 , a discharge duration of 28.2 —Weller et al. Weller et al. Reed, Vincent L.