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In particular, he has built a prototype plant for global CO2 recycling in 1995 on the roof top of the Institute for Materials Research, Tohoku University. The plant consists of power generation by solar cell on a desert, hydrogen production by seawater electrolysis and methane formation by the reaction of carbon dioxide with hydrogen at a desert coast, carbon dioxide recovery at an energy consuming district, and transportation of carbon dioxide to the desert coast. The plant uses tailored key materials with high performance and durability, that is, cathodes for hydrogen production, anodes for only oxygen evolution without chlorine evolution in seawater electrolysis, and catalysts for rapid and selective production of methane by the reaction of carbon dioxide with hydrogen. The performance of the plant has substantiated that global CO2 recycling can supply abundant energy generated from solar energy on deserts in the form of methane and can really prevent global warming induced by carbon dioxide emissions. In 2003, he has built a pilot plant of global CO2 recycling at Tohoku Institute of Technology which is the minimum unit of industrial scale for seawater electrolysis and carbon dioxide methanation.
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Takayuki Nimura,Daiki Aomura,Makoto Harada,Akinori Yamaguchi, Kosuke Yamaka,Takero Nakajima,Naoki Tanaka,Takashi Ehara,Koji Hashimoto,Yuji Kamijo
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCESno. 2 (2024): 812
JOURNAL OF CLINICAL MEDICINEno. 3 (2024): 641
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CEN case reportspp.1-7, (2023)
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