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The effect of pre-ozonation on the H2O2/UV-C treatment of raw and biologically pre-treated textile industry wastewater

机译:预臭氧化对H2O2 / UV-C处理生化和生物预处理纺织工业废水的影响

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摘要

Advanced chemical oxidation of raw and biologically pretreated wastewater by ozonation, H2O2/UV-C treatment and the successive combination of ozonation and H2O2/UV-C oxidation was investigated. For the raw textile wastewater, the application of successive O-3 + H2O2/UV-C oxidation enhanced the COD and TOC removal efficiency of the H2O2 (50mM)/UV-C process by a factor of 13 and 4, respectively. In case of the biotreated textile wastewater, the preliminary ozonation step increased COD removal of the H2O2(10mM)/UV-C treatment system from 15% to 62%, and TOO removal from 0% to 34%, but did not appear to be more effective than applying a single ozonation process in terms of TOO abatement rates. Enhancement of the biodegradability was more pronounced for the biologically pre-treated wastewater with a two fold average increase in the BOD5/COD ratio for the studied chemical oxidation systems. [References: 21]
机译:研究了臭氧化,H2O2 / UV-C处理以及臭氧化和H2O2 / UV-C氧化的连续结合对原水和生物预处理废水的高级化学氧化。对于生纺织废水,连续进行O-3 + H2O2 / UV-C氧化可将H2O2(50mM)/ UV-C工艺的COD和TOC去除效率分别提高13倍和4倍。对于经过生物处理的纺织废水,初步的臭氧处理步骤将H2O2(10mM)/ UV-C处理系统的COD去除率从15%增加到62%,将TOO去除率从0%增加到34%,但似乎没有就减少TOO率而言,比采用单一的臭氧化工艺更有效。对于经过生物预处理的废水,生物降解性的提高更为明显,对于所研究的化学氧化系统,其BOD5 / COD比平均增加了两倍。 [参考:21]

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