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Pretreatment of dyestuff wastewater by internal microelectrolysis

机译:内部微电解预处理染料废水

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Internal microelectrolysis is an effective pretreatment technology for poor biodegradable industrial wastewater contaminated with dyestuffs, pesticides, pharmaceuticals, etc. In internal microelectrolysis system, numerous microscopic galvanic cells are formed between iron and carbon in wastewater, resulting in galvanic cell reaction. Products released from the galvanic cell reaction include hydroxyl, atomic hydrogen and Fe(II) which have high capacity to decompose contaminants. In this paper, the effects of internal microelectrolysis pretreatment for dyestuff wastewater were firstly studied. The degradation mechanism and influence factors of internal microelectrolysis were also investigated. Experimental results indicated that the weight ratio of iron to carbon is a key parameter during internal microelectrolysis. The optimum ratio of Fe/C was found to be 5. To obtain the maximum removal efficiency with low operation costs, reaction time of microelectrolysis was about 2 hours and the pertinent pH of influent was 2∼3. Under these optimum conditions, different concentrations of dyestuff wastewater were treated by internal microelectrolysis. In the end, the removal efficiency of COD was over 45 percent, and B/C of wastewater was increased obviously from 0.2 to about 0.4.
机译:内部微电解是一种有效的预处理技术,用于处理被染料,农药,药物等污染的可生物降解的工业废水,在内部微电解系统中,废水中的铁和碳之间会形成大量的微观原电池,从而引起原电池反应。从原电池反应释放的产物包括具有高分解污染物能力的羟基,原子氢和Fe(II)。本文首先研究了内部微电解预处理对染料废水的影响。还研究了内部微电解的降解机理和影响因素。实验结果表明,铁与碳的重量比是内部微电解过程中的关键参数。发现Fe / C的最佳比例为5。为了以较低的运行成本获得最大的去除效率,微电解的反应时间约为2小时,进水的相关pH值为2〜3。在这些最佳条件下,通过内部微电解处理了不同浓度的染料废水。最后,COD的去除率超过45%,废水的B / C明显从0.2增加到约0.4。

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