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1)  Inner Electrolgtic Coulmn
内电解柱
2)  micro-electrolysis process
内电解法
1.
Study on flocculating bed of micro-electrolysis process;
一种新型水处理技术—内电解法絮凝床的研究
3)  internal electrolysis
内电解
1.
Acrylic fiber wastewater treatment by complex process made up of internal electrolysis, Fenton oxidization and SBMBR;
内电解-Fenton氧化-膜生物反应器处理腈纶废水
2.
Study of the disposal of disperse blue E-4R dye wastewater with internal electrolysis enhanced by ozone;
O_3协同内电解处理分散艳蓝E-4R废水的研究
3.
Experimental study on the application of internal electrolysis method in disposal of difficultly degraded organic waste water;
内电解法处理难降解有机废水试验研究
4)  inner electrolysis
内电解
1.
Study on the treatment of active greatly black dye wastewater by catalytic iron inner electrolysis method;
催化内电解法处理活性大黑染料废水的研究
2.
Application of inner electrolysis-aeration-hydrolyzation & acidif ication-SBR technology in mechanical processing wastewater treatment;
内电解—气浮—水解酸化—SBR工艺在机械加工废水治理中的应用
3.
Study on the mechanism and kinetics of nitrobenzene wastewater treatment by catalyzed iron inner electrolysis process;
催化铁内电解法处理硝基苯废水的机理与动力学研究
5)  internal electrolysis
内电解法
1.
The wastewater containing azo dye was treated by internal electrolysis.
采用内电解法处理偶氮染料废水。
2.
Electrolysis and internal electrolysis are compounded to treat wastewater of printing and dyeing of high concentration and high chroma.
采用电解法和内电解法复合处理了高浓度和高色度印染废水,结果表明在达到同种处理效果的情况下,复合法比两种方法单独使用可节约时间和电能、提高效率。
3.
The treatment of dry spun acrylic fibre wastewater by iron chips activated carbon internal electrolysis is investigated, and the influence of three factors (reaction time, wastewater pH and iron carbon ratio)on the results is discussed.
利用铁屑 活性炭内电解法预处理干法腈纶废水 ,讨论了处理时间、pH值和铁碳比对处理结果的影响 。
6)  FeC inner electrolysis
FeC内电解
1.
Based on the fact that FeC can reduce undegradative substances to a certain extent and is able to remove COD from some substances,the paper makes a study on advanced treatment of the leachate tail water subject to treatment by aged refuse bio-reaction bed using FeC inner electrolysis technology.
根据FeC对难降解物质具有一定的还原作用,并对部分物质具有去除COD的功效,应用FeC内电解技术对经矿化垃圾生物反应床处理后渗滤液尾水进行深度处理研究,通过FeC比例、pH条件、反应时间等不同因素的小型试验确定其适宜条件,并通过L9(34)正交试验,确定如下最佳条件,反应时间5h,pH为6,FeC比例为4:1,此时出水COD能降低约100 mg/L,而对氨氮其作用不大,甚至有增加的趋势,FeC内电解反应后出水的pH值和电导率具有一定的增加趋势。
2.
Based on the fact that FeC can reduce undegradative substances to a certain extent and is able to remove COD from some substances, the paper makes a study on advanced treatment of the leachate tail water subject to treatment by aged refuse bio-reaction bed using FeC inner electrolysis technology.
根据FeC对难降解物质具有一定的还原作用,并对部分物质具有去除COD的功效,应用FeC内电解技术对经矿化垃圾生物反应床处理后渗滤液尾水进行深度处理研究,通过FeC比例、pH条件、反应时间等不同因素的小型试验确定其适宜条件,并通过L9(34)正交试验,确定如下最佳条件,反应时间5h,pH为6,FeC 比例为4:1,此时出水COD能降低约100 mg/L,而对氨氮其作用不大,甚至有增加的趋势,FeC内电解反应后出水的pH值和电导率具有一定的增加趋势。
补充资料:铝电解厂16kV·A电解槽系列及电解多功能机组


铝电解厂16kV·A电解槽系列及电解多功能机组


铝电解厂16kV·A电解槽系列及电解多功能机组
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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