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Biochar sacrificial anode assisted water electrolysis for hydrogen production

机译:生物炭牺牲阳极辅助电解水制氢

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摘要

Carbon-assisted water electrolysis uses carbon oxidation reaction replacing oxygen evolu-tion reaction to decrease the anode potential and the energy consumption for water elec-trolysis hydrogen production. However, the mass transfer between carbon particle-electrolyte-anode limits its energy saving effect. Based on the principle of self-corrosion/ oxidation of carbon-based electrode materials, the biochar sacrificial anode was proposed and investigated to solve the mass transfer issue in carbon slurry assisted water electrolysis for hydrogen production. Results showed that the activity and stability of sacrificial anode could be improved simultaneously in high concentration alkaline electrolyte using pinewood char as active substance, graphite as conductive agent and coal liquefying residue as binder. The biochar anode produced less oxygen than Pt anode, and the anode potential of biochar was 60-76 of that Pt anode. The application of biochar as sacrificial anode offers an in-dustrial clean, scalable and sustainable idea to obtain green hydrogen.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:碳辅助电解水是利用碳氧化反应代替析氧反应,降低阳极电位和水电解制氢能耗。然而,碳颗粒-电解质-阳极之间的传质限制了其节能效果。基于碳基电极材料的自腐蚀/氧化原理,提出并研究了生物炭牺牲阳极,以解决碳浆辅助电解水制氢中的传质问题。结果表明,在高浓度碱性电解液中,以松木炭为活性物质,石墨为导电剂,煤液化渣为粘结剂,可以同时提高牺牲阳极的活性和稳定性。生物炭阳极产生的氧气比Pt阳极少,生物炭的阳极电位为Pt阳极的60-76%。生物炭作为牺牲阳极的应用为获得绿色氢气提供了一种室内清洁、可扩展和可持续的想法。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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