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检验水磁化效应的方法探讨 被引量:1
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作者 周士琼 吴晓惠 《铁道建筑》 北大核心 1993年第8期31-33,共3页
磁化水混凝土,即用磁化水拌制的混凝土,其强度、和易性、抗渗性和抗冻性均优于自来水混凝土。在强度有所提高、和易性相同的情况下磁化水混凝土可以比自来水混凝土节省水泥8%~10%。本文提出水磁化效应的检测方法,对于推广应用磁化水... 磁化水混凝土,即用磁化水拌制的混凝土,其强度、和易性、抗渗性和抗冻性均优于自来水混凝土。在强度有所提高、和易性相同的情况下磁化水混凝土可以比自来水混凝土节省水泥8%~10%。本文提出水磁化效应的检测方法,对于推广应用磁化水混凝土有重要意义。 展开更多
关键词 混凝土 磁化 水磁化效应 检测
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The possible implications of magnetic field effect on understanding the reactant of water splitting 被引量:3
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作者 Chao Wei Zhichuan J.Xu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第1期148-157,共10页
Electrochemical water splitting consists of two elementary reactions i.e.,hydrogen evolution reaction(HER)and oxygen evolution reaction(OER).Developing robust HER and OER technologies necessitates a molecular picture ... Electrochemical water splitting consists of two elementary reactions i.e.,hydrogen evolution reaction(HER)and oxygen evolution reaction(OER).Developing robust HER and OER technologies necessitates a molecular picture of reaction mechanism,yet the reactants for water splitting reactions are unfortunately not fully understood.Here we utilize magnetic field to understand proton transport in HER,and hydroxide ion transport in OER,to discuss the possible implications on understanding the reactants for HER and OER.Magnetic field is a known tool for changing the movement of charged species like ions,e.g.the magnetic‐field‐improved Cu^(2+)transportation near the electrode in Cu electrodeposition.However,applying a magnetic field does not affect the HER or OER rate across various pH,which challenges the traditional opinion that charged species(i.e.proton and hydroxide ion)act as the reactant.This anomalous response of HER and OER to magnetic field,and the fact that the transport of proton and hydroxide ion follow Grotthuss mechanism,collectively indicate water may act as the universal reactant for HER and OER across various pH.With the aid of magnetic field,this work serves as an understanding of water might be the reactant in HER and OER,and possibly in other electrocatalysis reactions involving protonation and deprotonation step.A model that simply focuses on the charged species but overlooking the complexity of the whole electrolyte phase where water is the dominant species,may not reasonably reflect the electrochemistry of HER and OER in aqueous electrolyte. 展开更多
关键词 ELECTROCATALYSIS Water splitting Magnetic field Lorenz force Metal deposition
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