• The results show that the EIS of cathode reaction change with corrosion time.

    结果表明阴极反应交流阻抗随着腐蚀时间发生变化

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  • Electrolysis: make the current through the electrolyte solution at the anode and cathode cause REDOX reaction process.

    电解使电流通过电解质溶液而在阳极阴极引起氧化还原反应过程

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  • The reaction at the cathode is described chemically as.

    反应阴极描述的化学为。

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  • In the cathode, substances such asmolecular oxygen or hydrogen peroxide are subsequently reduced in this processand so, in combination with the reaction at the anode, generate electricalpower.

    阴极物质主要为氧分子或者过氧化氢,随后电池反应中消耗,阳极反应共同产生电能。

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  • Simultaneously, a nondestructive chemical reaction (reduction) would proceed at the cathode, in most cases producing hydrogen gas on it.

    同时阴极进行破坏性反应(还原反应),多数情况下在阴极产生氢气。

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  • They can inhibit reaction of cathode and anode, and thus be regarded as a mixed corrosion inhibitor.

    该类缓蚀剂阳极反应阴极反应均有抑制作用,属于混合型缓蚀剂

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  • The oxygen reduction reaction that takes place at the fuel cell's cathode creates water as its only waste and it is there that up to 40 percent of a fuel cell's efficiency is lost.

    还原反应发生燃料电池阴极地方创建作为唯一废水存在多达40燃料电池的效率百分之丢失

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  • Lead into reduction reaction steps before, deposition of metal ions in the cathode near the surface or on the surface transformed.

    前置转化步骤还原反应沉积金属离子阴极表面附近表面发生转化

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  • The results show that: increasing temperature will lead to more methanol to permeate to the cathode, and increase the charge transfer resistance of cathodic oxygen reduction reaction;

    只有采用大空气流量,才会有效防止水淹,加大氧气催化剂层的质,促进阴极反应进行;

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  • The cathode catalyst for oxygen reduction reaction is one of the most important factors that can affect the performance of fuel cell.

    还原反应阴极催化剂燃料电池性能起着非常关键的作用

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  • This paper studies on the cathode and anode electrochemical reaction from electrolysing manganese dioxide.

    论述电解二氧化锰阳极电化学反应并进行了热力学计算。

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  • This paper studies the possibility of using nickel-nickel sulfide composite coating obtained by electrodeposition as the active cathode material for hydrogen evolution reaction in alkaline solution.

    用电沉积获得镍-硫化复合沉积层作碱性溶液活性阴极材料可能性进行了研究。

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  • The results show that the charge transfer reaction of the cathode pro- cess is preceded by a homogeneous chemical reaction and a heterogeneous surfac a chemical reaction.

    结果表明阴极过程中存在均相前置化学转化异相表面化学转化步骤

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  • First, the distance between the anode and cathode should be increased enough in order to limit the secondary reaction.

    提高电流效率途径两条:是增大阴、阳极间距减小副反应的发生;

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  • While hollow cathode being discharged, migration, diffusion, evaporation and sputtering of reaction products were analyzed.

    论述了空心阴极放电时,其内部化学反应生成物的迁移扩散蒸发溅射

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  • This is because of the coupling reaction between two alkyl compounds occurred by gaining electron from cathode, and aryl isocyanate reacted with high dispersed active magnesium on the cathode.

    我们认为由于烷基氰酸阴极得到电子发生比分子联,基异氰酸酯则是阴极析出的分散活性起作用。

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  • This is because of the coupling reaction between two alkyl compounds occurred by gaining electron from cathode, and aryl isocyanate reacted with high dispersed active magnesium on the cathode.

    我们认为由于烷基氰酸阴极得到电子发生比分子联,基异氰酸酯则是阴极析出的分散活性起作用。

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