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空气电极的英文

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"空气电极"怎么读用"空气电极"造句

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  • air electrode

例句与用法

  • The properties of air electrode and catalyst were investigated by measuring the curve of steady - state polarization
    实验采用恒电流的稳态极化曲线来考察催化剂和空气电极的性能。
  • The oxygen reduction catalyst is the key material of air electrode used in the metal - air battery and the electrochemical oxygen generator
    氧还原催化剂是金属空气电池和电化学制氧空气电极的核心材料。
  • Experiments showed that the semi - hydrophobic and porous gas diffusion electrodes were fabricated by use of la0 . 7sr0 . 3mno3 as catalyst
    实验证明,以la0 . 7sr0 . 3mno3为催化剂,可以制作多孔、疏水、透气的空气电极
  • As a part of zinc air battery , air electrode has become the key factor to the character of zinc - air battery , because of the stagnancy of the zinc electrode which is the anode electrode in the battery
    空气电极作为锌空气电池中的一部分,在锌电极的研究几乎进入停滞阶段的现在,现已成为决定整个锌空气电池性能的关键。
  • Air electrode is one of the most important components in zinc - air cell . the main effect factors on performance of air electrode are catalysts ’ oxidation and deoxidization capability and structure of oxygen electrode
    空气电极是锌-空气电池的重要组成部分之一,影响空气电极性能的主要因素是催化剂的氧化还原性能和空气电极结构。
  • The factors affecting the properties of air electrode were examined in this article and mno2 / c was prepared . the process parameters of air electrode were optimized , and the aluminum / air battery was also assembled
    本文主要针对影响空气电极性能的因素进行了系统的研究,制备了mno _ 2 / c催化剂,确定了空气电极的最佳制备工艺,将空气电极与铝阳极组装成电池,并初步考察了电池的性能。
  • Air electrode , in which nh _ 4hco _ 3 is as pore former , is mainly studied in this paper . the manufacturing process of air electrode , the composition of waterproof and gas diffusion layer , the composition of catalysis layer , and two kinds of catalyst were studied by numbers
    本文针对以碳酸氢铵为造孔剂的空气电极进行研究,分别对电极制作工艺、防水透气层组成、催化层组成以及两类催化剂进行了初步系统的探索和研究。
  • The optimum conditions for air electrode preparation were shown as follow : 20 % ptfe and 20 % mno2 in active layer , thickness of active layer 0 . 15 - 0 . 25mm and the ratio of active carbon to ethine black 4 : 1 ; 60 % ptfe in the gas diffusion and waterproof layer , employing na2so4 as pore - making agents , thickness 0 . 35 - 0 . 45mm , colding forming and layer sequence catlytic layer / gas diffusion and waterproof layer / current collector layout ; employing 40 meshed nickel screen as current collector and thermal treatment temperature over 200
    确定了制备空气电极的优化工艺条件,催化层中ptfe含量约20 , mno _ 2的最佳含量约为20 ,催化层中活性炭和乙炔黑的比例为4 : 1 (质量比) ,厚度在0 . 15 - 0 . 25mm之间。防水透气层中ptfe的含量约为60 ,以无水硫酸钠作为造孔剂,厚度一般为0 . 35 - 0 . 45mm 。电极各层采用催化层/防水透气层/集流体的排布方式,冷压成型,热处理对空气电极的性能影响较大,热处理温度不低于200 。
  • Two series of catalysts were preparated by co - deposition and sol - gel methods each . and each serie of catalysts was analysed by xrd spectrums , and was preparated to be air electrode with the optioned compoundings and manufacturing process . the cathode polarization curves were elementarily studied
    实验还利用共沉淀和溶胶凝胶法合成了两类催化剂,分析了其xrd谱图,利用优化过的配方和工艺制备了空气电极,初步研究了其极化曲线,并对其中最好的催化层进行了sem观察。
  • The optimum conditions for air electrode preparation were shown as follows : active carbon which was baked for 15 min in 900 as carrier for catalyst , bond is 60mass % polytetrafluoroethylene ( ptfe ) liquor , 20 % ptfe in waterproof layer , 10mass % pore - making in waterproof layer thickness of waterproof layer 0 . 30mm , 10mass % ptfe in catalysis layer , nickel screen for current collector , compacting pressure 6mpa
    确定制备空气电极的最佳工艺条件为:催化剂载体的处理条件为在900下灼烧15min ,粘结剂为60mass % ptfe的水溶液。防水层中pefe含量为20mass % ,造孔剂含量为10mass % ,其厚度为0 . 3mm 。催化层中ptfe含量为10mass % 。
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