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anodic current meaning in English

阳极电流

Examples

  1. Anodic current efficiency
    阳极电流效率
  2. Anodic current density
    阳极电流密度
  3. The distinct anodic current peak was observed in the seawater containing srb . it was presumed that it was the result of electrochemical oxidation of sulfide
    在接近自然腐蚀电位( ecorr )附近,出现了显著的阳极电流峰值,电流峰值是硫化物氧化的结果。
  4. The method of obtaining high concentration of na2feo4 solution by quick electrolysis mainly contains four aspects : adoption of either a diaphragm or an ionic membrane electrolytic cell in which a thin anodic cell lying between the two cathodes , ( 2 ) using an iron anode that has larger specific surface area , ( 3 ) keeping suitable concentration of naoh in the anodic cell , adoption of lower current density and higher electrolyzing speed . the practical technique parameters follow a s below : the naoh solution of 14 - 16mol / l , the temperature of 303 - 308k , the surface anodic current density of 300a / m2 , the unit electrolyzing speed of efficiency larger than 6 . 0a / l
    快速电解获取高浓度na _ 2feo _ 4溶液的方法,主要包括四个方面:采用两阴极室夹一厚度较小的阳极室的隔膜(或离子膜)电解槽;使用比表面积较大的铁网阳极;保持阳极室中有适宜浓度的浓naoh溶液;采用较低的电流密度和较高的电解速度。具体工艺参数是: 14 16mol / lnaoh溶液、温度303 308k 、表观阳极电流密度300a m ~ 2 、有效单位电解速度6 . 0a / l 。
  5. As for the method of preparing solid potassium ferrate from electrolytic synthesis of sodium ferrate solution , it is compared that the effects of the main procession facts of electrolysis upon both the anodic current efficiency and the relative concentration of na2feo4 . one method was put forward to obtain high concentration of na2pe04 in the high concentration of alkaline by quick electrolyzing iron anode
    针对由电解法合成na _ 2feo _ 4溶液进而制备固态k _ 2feo _ 4的方法,通过比较研究电解过程中主要工艺因素对阳极电流效率和相应na _ 2feo _ 4浓度的影响,提出了在浓碱液中快速电解铁源阳极获取高浓度na _ 2feo _ 4溶液的方法。

Related Words

  1. anodic
  2. anodic adsorption
  3. anodic impurity
  4. anodic flash
  5. anodic phase
  6. anodic film
  7. anodic brush
  8. anodic control
  9. anodic oxervoltage
  10. anodic slime
  11. anodic corrosion inhibitor
  12. anodic corrosion protection
  13. anodic current density
  14. anodic current efficiency
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