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1)  electrolytic bath membrane
电解槽膜
2)  divided cell
隔膜电解槽
1.
Using activated carbon fiber (ACF) as anode and cathode, the decoloration behavior of reactive blue 19, one of anthraquinone dyes, was studied by paired electrolysis in divided and undivided cell respectively.
分别采用有/无隔膜电解槽,以活性炭纤维(ACF)为阳极和阴极,研究了不同电流密度下蒽醌染料活性艳蓝KN-R的电化学脱色。
2.
Using activated carbon fiber(ACF) as anode and cathode,the decoloration behavior of reactive blue 19,one of anthraquinone dyes,was studied by paired electrolysis in a divided cell.
同时以活性炭纤维(ACF)为阳极和阴极,在隔膜电解槽中研究了不同电流密度下蒽醌染料活性艳蓝KN-R的电化学脱色。
3)  diaphragm electrolyzer
隔膜电解槽
1.
Experiences on operation with high load of 30 diaphragm electrolyzer;
30型隔膜电解槽高负荷运行的体会
2.
Development and application of nano-activated cathodes for diaphragm electrolyzers;
隔膜电解槽纳米活性阴极的开发与应用
3.
Analysis on a fire and explosion accident in diaphragm electrolyzers
一起隔膜电解槽起火爆炸事故分析
4)  Double membrane electrolytic cells
双膜电解槽
5)  undivided cell
无隔膜电解槽
1.
Electrolysis was carried out in an undivided cell using graphite as electrodes.
在无隔膜电解槽中采用石墨电极,以稀HNO3为介质,Ce4+/Ce3+为氧化还原媒质,间接电氧化氟代甲苯法合成了邻(间、对)氟代苯甲醛。
2.
Under galvanostatic model using activated carbon fiber as anode and cathode,the decoloration behavior of amaranth,one of azo dyes was studied by paired electrolysis in an undivided cell.
采用恒电流模式,同时以活性炭纤维(ACF)为阳极和阴极,在无隔膜电解槽中研究了不同电流密度下偶氮染料苋菜红的电化学脱色。
3.
Using activated carbon fiber (ACF) as anode and cathode, the decoloration behavior of reactive blue 19, one of anthraquinone dyes, was studied by paired electrolysis in divided and undivided cell respectively.
分别采用有/无隔膜电解槽,以活性炭纤维(ACF)为阳极和阴极,研究了不同电流密度下蒽醌染料活性艳蓝KN-R的电化学脱色。
6)  ionic membrane electrolyzer
离子膜电解槽
1.
Calculation of water supplement quantity of cathode liquor of ionic membrane electrolyzer and selection of control method;
离子膜电解槽阴极液补充水量的计算及控制方法
2.
Inquiry of DC power consumption of ionic membrane electrolyzer;
关于离子膜电解槽直流电耗的探讨
补充资料:电解食盐水溶液离子膜电解槽所用的膜材料之一
分子式:
CAS号:

性质:又称全氟羧酸-磺酸复合离子膜  Rf-COOH-Rf-SO3H  电解食盐水溶液离子膜电解槽所用的膜材料之一。使用时,将较薄的羧酸层面向阴极,较厚的磺酸层面向阳极,因而兼有羧酸膜和磺酸膜的优点。由于Rf-COOH层的存在,可阻挡氢氧离子返迁移到阳极室,确保了高的电流效率(96%),因Rf-SO3层的电阻低,能在高电流密度下运行,且阴极液可用盐酸中和,产品氯气中氧含量低,氢氧化钠浓度可达33%~35%。可在全氟磺酸膜上涂敷一层全氟羧酸的聚合物,或是将磺酸膜和羧酸膜进行层压,或是采用化学方法处理而制得的复合膜。现以采用化学方法处理者质量最佳。

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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