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地磁场成因新论 被引量:1
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作者 彭寿斌 《中国高新技术企业》 2015年第23期23-24,共2页
文章通过对地球结构的研究分析,利用所学的地质学知识和高等物理学知识,推理得知"地核与地幔间巨大温差产生的‘汤姆逊效应’使核幔间产生了热电压和热电荷,热电荷随地球旋转产生了运移电流,运移电流产生了感应磁场,感应磁场使‘... 文章通过对地球结构的研究分析,利用所学的地质学知识和高等物理学知识,推理得知"地核与地幔间巨大温差产生的‘汤姆逊效应’使核幔间产生了热电压和热电荷,热电荷随地球旋转产生了运移电流,运移电流产生了感应磁场,感应磁场使‘岩浆冷却形成地壳岩石时带上了剩余磁场’,地壳岩石的剩余磁场叠加形成了强大的地磁场"。 展开更多
关键词 地磁场成因新论 热电效应 换相界面 运移电流 居里球面 剩余磁
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Decoupling hydrogen production from water oxidation by integrating a triphase interfacial bioelectrochemical cascade reaction
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作者 Jun Zhang Xia Sheng +6 位作者 Zhenyao Ding Haili Wang Lai Feng Xiqi Zhang Liping Wen Lei Jiang Xinjian Feng 《Science Bulletin》 SCIE EI CSCD 2021年第2期164-169,M0004,共7页
Water electrolysis to produce H2 is a promising strategy for generating a renewable fuel.However,the sluggish-kinetics and low value-added anodic oxygen evolution reaction(OER)restricts the overall energy conversion e... Water electrolysis to produce H2 is a promising strategy for generating a renewable fuel.However,the sluggish-kinetics and low value-added anodic oxygen evolution reaction(OER)restricts the overall energy conversion efficiency.Herein we report a strategy of boosting H_(2)production at low voltages by replacing OER with a bioelectrochemical cascade reaction at a triphase bioanode.In the presence of oxygen,oxidase enzymes can convert biomass into valuable products,and concurrently generate H_(2)O_(2) that can be further electrooxidized at the bioanode.Benefiting from the efficient oxidase kinetics at an oxygen-rich triphase bioanode and the more favorable thermodynamics of H_(2)O_(2)oxidation than that of OER,the cell voltage and energy consumption are reduced by~0.70 V and~36%,respectively,relative to regular water electrolysis.This leads to an efficient H_(2)production at the cathode and valuable product generation at the bioanode.Integration of a bioelectrochemical cascade into the water splitting process provides an energy-efficient and promising pathway for achieving a renewable fuel. 展开更多
关键词 Hydrogen production Water electrolysis OXIDASE Bioelectrochemical cascade reaction
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