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1)  anode electrode area
阳极电极面积
2)  anodic electrodeposition
阳极电沉积
1.
The electrodes with γ-MnO2 type oxide coatings were prepared by anodic electrodeposition on the base of Ti/IrO2.
采用阳极电沉积法在Ti/IrO2基体上获得γ-MnO2氧化物涂层钛电极,在镀液中掺杂其他元素进行阳极电沉积,获得了MnV、MnCr、MnMoFe和MnFeV混合氧化物涂层钛电极。
3)  electrode area
电极面积
1.
5mol/L NaCl, NaHCO_3+NaCl and NaNO_2+NaCl solutions were selected as the studied media and the effects of the Q235 (A3) electrode area on EN were studied by EN measurements and other traditional .
本文选择A3钢电极及中性NaCl溶液体系、NaHCO_3+NaCl点蚀体系、NaNO_2+NaCl的缓蚀体系,通过电化学噪声测量和多种噪声数据分析方法,研究了电极面积对电化学噪声的影响,主要结果如下: (1)A3钢电极在中性的NaCl溶液体系中,电流电位噪声的标准偏差σ_i、σ_v与电极面积S的关系为: lgσ_i= 0。
4)  anodic area
阳极极面
5)  cathode/anode area ratio
阴阳极面积比
1.
Galvanic corrosion behaviors of Q235-304L couple with various cathode/anode area ratios in three different concentrations of Na_2S solutions were studied by the potentiodynamic polarization curves,galvanic method and immersion test.
结果表明:在3种溶液中Q235钢的阳极过程均为混合控制,而304L的阴阳极过程均为电化学控制;偶接后Q235钢表面阳极金属的溶解过程与阴极过程同时进行,其阳极溶解电流大于电偶电流值;电偶腐蚀效应随阴阳极面积比的增大而增大;随着S2-浓度的升高,电偶对中Q235钢的腐蚀速率减小,电偶腐蚀效应也随之降低。
6)  surface area of electrode
电极表面积
补充资料:银阳极泥提银(见铜阳极泥提金银)


银阳极泥提银(见铜阳极泥提金银)
extraction of silver from silver anode slime

y In yongJ,nl tlyln银阳极泥提银(extraetion of Silve:fr()nl 511一ver anode slime)见铜阳极泥提金银
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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