Alaton I Arslan, Balcioğlu I A
Istanbul Technical University, Faculty of Civil Engineering, Department of Environmental Engineering, 80626 Maslak-Istanbul, Turkey.
Water Sci Technol. 2002;45(12):297-304.
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 O3 + H2O2/UV-C oxidation enhanced the COD and TOC removal efficiency of the H2O2 (50 mM)/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 (10 mM)/UV-C treatment system from 15% to 62%, and TOC removal from 0% to 34%, but did not appear to be more effective than applying a single ozonation process in terms of TOC 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.
研究了通过臭氧化、H2O2/UV-C处理以及臭氧化与H2O2/UV-C氧化的连续组合对原废水和生物预处理废水进行高级化学氧化的情况。对于原纺织废水,连续的O3 + H2O2/UV-C氧化应用分别将H2O2(50 mM)/UV-C工艺的COD和TOC去除效率提高了13倍和4倍。对于生物处理后的纺织废水,初步臭氧化步骤将H2O2(10 mM)/UV-C处理系统的COD去除率从15%提高到62%,TOC去除率从0%提高到34%,但就TOC去除率而言,似乎并不比单一臭氧化工艺更有效。对于生物预处理废水,所研究的化学氧化系统的BOD5/COD比值平均提高了两倍,生物可降解性的增强更为明显。