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1)  micro-electrolysis
微电解
1.
Pretreating of wastewater from vitamin B_1 production by coagulation - micro-electrolysis process;
混凝—微电解预处理维生素B_1生产废水
2.
The treatment of the highly concentrated chemical wastewater by the aerated micro-electrolysis and flocculation-deposition process;
曝气微电解—絮凝沉淀法处理高浓度化工废水
3.
Treatment of printing and dyeing wastewater by micro-electrolysis method;
铝炭微电解法对印染废水的处理
2)  microelectrolysis
微电解
1.
Treatment of direct scarlet 4BE dye wastewater by the hybrid method of Fe/C microelectrolysis and ultrasound radiation;
超声波/铁-炭微电解耦合处理直接大红4BE染料废水
2.
Application of microelectrolysis-biomembrane process to the treatment of Ba~(2+)-bearing organic wastewater;
微电解—生物膜复合工艺处理含Ba~(2+)有机废水
3.
Study on the process of dyestuff wastewater treatment by microelectrolysis;
铁屑微电解法处理染料废水
3)  micro electrolysis
微电解
1.
Study on Treating Pharmaceutical Wastewater and Furfural Wastewater with Ferric-carbon Micro electrolysis;
铁炭微电解法预处理制药废水的研究
2.
A study on water-based ink wastewater treatment with ferric filings micro electrolysis;
铁屑微电解法处理水性油墨废水的研究
3.
A study on nekal BX wastewater treatment with ferric-carbon micro electrolysis;
铁炭微电解法处理拉开粉废水的研究
4)  micro-electrolysis process
微电解法
1.
Treatment of oil-bearing wastewater from restaurants by micro-electrolysis process;
微电解法处理餐饮业含油废水
5)  Micro-electrolysis technology
微电解法
1.
The results show that the micro-electrolysis technology not only removes COD, phenol, cyanide, sulfide in the wastewater, but also improves its biodegradability (BOD5/CODcr) from 0.
结果表明,微电解法不仅能去除焦化废水中的COD、酚、氰、硫化物等有机污染物(COD去除率为70%, 酚、氰、硫化物去除率分别为76。
6)  micro-electrolysis method
微电解法
1.
Research on enhanced biological nitrogen removal by micro-electrolysis method;
微电解法强化生物脱氮的实验及反应特征分析
2.
The micro-electrolysis method was applied to treat papermaking middle-stage effluent,the results of orthogonal experiment showed the optimum conditions:blowing air volume was 0.
微电解法应用于处理造纸中段废水,最佳的实验条件为:曝气量0 4L/min、铁炭质量比2∶1、pH值3、反应时间1 0min。
3.
The micro-electrolysis method was applied in treating pulping middle-stage effluent.
本文将微电解法应用于处理制浆中段废水,根据正交试验设计及结果分析得出最佳的试验条件,即反应时间为30m in、pH值为3、曝气量为0。
补充资料:电解定律
分子式:
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性质:法拉第(英国,19世纪30年代)发现电解时电极反应的量与通过的直流电电量成正比。如通过电极的电量为1F——即1mol电子,则阴极上将析出108g银、32g铜、9.0g铝或1g氢气,阳极将有108g银、32g铜、9.0g铝溶解或析出8g氧气。

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