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1)  inert electrode
惰性电极
1.
The effects of enhanced biological phosphorus removal with electric field formed by inert electrode were studied.
利用惰性电极形成的外加电场对强化生物除磷的效果进行了研究。
2.
Developments of inert electrode materials for aluminum electrolysis in the nineties were introduced in this paper.
介绍了国内外 90年代以后在电解铝生产用惰性电极材料研究方面的最新进展。
2)  Inert anode for aluminum electrolysis
铝电解惰性阳极
3)  inert anode
惰性阳极
1.
Effects of technological conditions on properties of inert anodes of Ag/NiFe_2O_4 cermet;
合成工艺对Ag/NiFe_2O_4惰性阳极性能的影响
2.
Preparation of large scale NiFe_2O_4-10NiO/17Ni type inert anode for aluminium electrolysis;
大尺寸NiFe_2O_4-10NiO/17Ni型金属陶瓷惰性阳极的制备
3.
Effect of on grain composition on properties of inert anodes;
原料粒度组成对铝电解惰性阳极性能的影响
4)  Inert anodes
惰性阳极
1.
The physical properties of the inert anodes based on perovskite-like Oxygen-Ceramic for Al electrolysis;
铝电解用惰性阳极钙钛矿陶瓷的物性探索
2.
Preparation and properties of fiber/NiFe_2O_4 composite ceramic inert anodes
纤维/NiFe_2O_4复合陶瓷惰性阳极的制备及性能
3.
Cold isostatic press sintering is adopted to prepare Co-Ni-xNiFe2O4 (x=5 %, 10 %, 15 % and 20 wt%) metal based inert anodes for aluminum electrolysis.
采用冷等静压-烧结的方法制备了铝电解用Co-Ni-xNiFe2O4(x=5%,10%,15%,20%,质量分数,下同)金属基惰性阳极,并对试样的导电性和抗腐蚀性进行了研究。
5)  inert cathode
惰性阴极
1.
The TiB_2 as inert cathode material for aluminum electrolysis, was electrodeposited successfully on carbon cathode as a coating by way of molten salts electrolysis at 800℃ for 3 hours with a current density 0.
采用熔盐电解法在碳阴极上电镀TiB2铝电解用惰性阴极材料,电解温度800℃,电解质组成(质量分数,%)为KCl4。
2.
Sample of compact TiB 2-MoSi 2 inert cathode is prepared by cold-pressing and sintering.
用冷压烧结法制造了TiB2 -MoSi2 惰性阴极 ,得到致密的二硼化钛基惰性阴极试样。
3.
Some materials,including metal anodees and oxide anodes in the inert anodes and titanium diboron material in the inert cathodes,were especially focused on.
重点介绍了惰性阳极材料中的金属阳极和氧化物阳极以及惰性阴极材料中的二硼化钛材料 ,指出了电解铝用的惰性电极材料的研究方向和应用前景。
6)  action inertia
积极惰性
1.
The causes & the countermeasures of action inertia;
“积极惰性”的成因分析及其对策
补充资料:惰性电极

惰性电极 就是指用 pt au 石墨 等 制成的

不易得失电子的 一般不与电解液反应的电极

由铂、金或碳等惰性材料与含有可溶性的氧化态和还原态物质的溶液组成

它本身不参与氧化还原反应,只起传递电子的作用

其电极电位等于溶液中氧化还原电对的电位。

例如将铂丝或石墨棒插入fe3+和fe2+混合溶液中所构成的电极,就是惰性电极

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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