隔膜电解槽

  • 网络diaphragm cell;divided cell
隔膜电解槽隔膜电解槽
  1. 金属阳极隔膜电解槽

    MA cell diaphragm cell with metal anodes

  2. 在棉布隔膜电解槽中,使用Ti/IrO2/RuO2阳极、自制的碳/聚四氟乙烯(C/PTFE)充氧阴极,研究了电化学催化氧化降解煤气废水的效果。

    Electrochemical oxidation of coal-gas wastewater was studied using Ti / IrO2 / RuO2 anode and a self-made carbon / polytetrafluoroethylene ( C / PTFE ) O2-fed cathode in the divided cell with a cotton diaphragm .

  3. 世界首台S-3000型压滤式F4隔膜电解槽

    The first F4 diaphragm electrolyzer with S-3000 press filter in the world

  4. 总结了S-3000型压滤式F4隔膜电解槽的开发研制过程。

    The development of F4 diaphragm electrolyzer with S-3000 press filter is summarized .

  5. 由于在无隔膜电解槽中,阴极能够还原阳极生成的Ce(Ⅳ),降低其电解收率。

    In undivided electrobath , cathode would reduce the Ce ( IV ) just created on the anode , which caused a decease of the electrolytic yields .

  6. 研究了在无隔膜电解槽内外加电压、添加剂的量、电解质(Na2SO4)的量、溶液的pH值以及电解时间等因素对甲基橙降解效果的影响。

    The results showed that the removal efficiency of methyl orange was influenced by voltage , the concentration of the electrolyte , the reaction time and pH.

  7. 无隔膜电解槽中对苯醌电合成的研究无隔膜槽中ACF电极成对电解脱色活性艳蓝KN-R

    Studies on Electrosynthesis of Para Quinone in an Undivided Electrolytic Cell Paired Electrolytic Decoloration of C.I.Reactive Blue 19 on ACF Electrodes in An Undivided Cell

  8. 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。

    O - ( m - , p - ) Fluorobenzaldehydes were synthesized by indirect electronic oxidation using diluted nitric acid as the medium and Ce4 + / Ce3 + as the redox mediator .

  9. 充分利用大型离子膜电解槽使用过的旧膜和原有隔膜电解槽整流装置,研制开发成功LD0.32单极式离子膜电解槽。

    The ion-exchange membrane monopolar cell LD0.32 was developed successfully , which made full use of the old membrane in large scale ion-exchange membrane electrolyzer and the old rectifier for diaphragm electrolyzers .

  10. 离子膜和隔膜电解槽电流效率分析

    Analysis on the current efficiency of ion-exchange membrane and diaphragm electrolyzers

  11. 电流波动对后期隔膜电解槽的影响

    Effect of current fluctuation on diaphragm electrolyzer at the later stage

  12. 30型隔膜电解槽高负荷运行的体会

    Experiences on operation with high load of 30 diaphragm electrolyzer

  13. 隔膜电解槽阴极吸附质量的波动与调整

    Fluctuation of adsorption quality of diaphragm electrolyzer cathode and some adjustment measures

  14. 隔膜电解槽纳米活性阴极的开发与应用

    Development and application of nano-activated cathodes for diaphragm electrolyzers

  15. 具扩张阳极及活性阴极的隔膜电解槽

    Diaphragm electrolytic cell with expanded anode and active cathode

  16. 作者报道了用硅铁作为阳极,在非隔膜电解槽中电解制备了新型高效水处理剂高铁酸钠,并探索了最佳反应条件。

    Using silicon iron as anode to preparation sodium ferrate (ⅵ) in non-diaphragm electrobath .

  17. 介绍了在隔膜电解槽电流提升过程中所遇到的问题及采取的解决方法和措施。

    The problems in current increase of diaphragm electrolyzer and the countermeasures were introduced .

  18. 将隔膜电解槽应用于苯酚的电催化氧化,研究了阴、阳极协同作用电催化氧化降解水中苯酚的效果。

    Synergetic effects of anodic-cathodic electro-catalytic oxidation for phenol degradation were studied in this two compartments cell .

  19. 在阳离子隔膜电解槽用阴极恒电位的方法电化学合成了4-氨基吡啶,并对工艺条件进行了优化。

    In a cationic membrane electrolytic cell , 4-aminopyridine was synthesized by constant potential of cathode technique and the process conditions were optimized .

  20. 在无隔膜电解槽中,以Cu2+离子为电解媒质,铜板作阳极,石墨作阴极,对苯的间接电氧化进行研究。

    In an undivided electrolytic cell and with benzene as the starting material , Cu 2 + ions as electrolytic medium , Cu as the anode material and graphite as the cathode material , the synthesis of para quinone via the indirect electrooxidation of benzene was studied .

  21. 扩张阳极改性隔膜电解槽新技术主要是将废、旧金属阳极片改制成扩张阳极片,缩小阴、阳极间距,使极距和电流分布更均匀、更合理,从而降低溶液电压降;

    The new technology of modified diaphragm electrolyzers with expansible anodes mainly included making waste or old metal anode plates into expansible anode plates and shortening electrode gap to obtain more even and more rational electrode gap and current distribution so that the electrolytic solution voltage drop would be decreased .

  22. 在质子交换膜为隔膜的电解槽内,以2甲-基吡啶为原料,在丙酮/水混合溶剂中,以PbO2为阳极,电氧化合成了2-吡啶甲酸。

    In an electrolytic cell with proton exchange membrane as diaphragm , 2-pyridinecarboxylic acid was prepared in acetone / water mixed solvents by direct electrooxidation of 2-methylpyridine at a PbO_2 electrode .

  23. 钽包银铂电极应用于管状隔膜新型电解槽

    Ta Wrapped Ag-Pt Electrode Used for Tubular Diaphragm Electrolysis Bath

  24. 隔膜碱电解槽移峰填谷自动控制技术

    Auto control technology of peak load shifting in electrolyzers

  25. 92型隔膜式电解槽高浓度次氯酸钠发生器

    92 Model high concentration sodium hypochlorite generator

  26. 阴阳离子双隔膜三室电解槽电渗析处理垃圾渗滤液牵引电动机隔离开关

    Treatment of Landfill Leachates by Electrodialysis in Three-chamber Cell Divided by Two Membranes traction motor isolating switch

  27. 隔膜式电解槽生物膜阴极降解苯酚的过程及其条件的优化(生物学)(细胞)核膜。

    Process of Phenol Degradation in a Divided Electrolytic Cell with Biofilm-cathode and Optimization of Conditions ( biology ) nuclear membrane .

  28. 为减少电耗,新乡树脂厂在每日16:00~22:00将隔膜碱电解槽运行电流密度由1438A/m2下调为1250A/m2。

    The running current density of diaphragm caustic soda electrolyzers at Xinxiang Plant is down-adjusted from 1 438 A / m ~ 2 to 1 250 A / m ~ 2 , everyday in the time from 16:00 to 22:00 , in order to decrease electric consumption .

  29. 隔膜法金属阳极电解槽采用活性阴极技术的探讨

    Discussion on active-cathode technology appling in diaphragm cell with metal anodes

  30. 采用改性隔膜扩张阳极技术的电解槽比普通隔膜电解槽单槽电压可降低0.15V左右,生产1t烧碱可节电105kW.h。

    The single groove voltage of the electrolyzer by modified diaphragm and expanded anode technique can be reduced by about 0.15 V than that of common diaphragm electrolyzer . And 105 kW · h electric quantity can be saved by producing caustic soda per ton .