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太阳能光芬顿法提高氯酚废水的生物降解性。

Biodegradability of chlorophenol wastewater enhanced by solar photo-Fenton process.

作者信息

Kuo W S, Lin I T

机构信息

Department of Safety, Health, and Environmental Engineering, National United University, Miao-Li, 360, Taiwan, China.

出版信息

Water Sci Technol. 2009;59(5):973-8. doi: 10.2166/wst.2009.052.

Abstract

The combination of solar irradiation and Fenton reagent have been used to enhance the biodegradability (BOD(5)/COD) of chlorophenol wastewater, including 2-chlorophenol (2-CP), 4-chlorophenol (4-CP), and 2,4-dichlorophenol (2,4-DCP). Results showed that the solar photo-Fenton process improved significantly the biodegradability of chlorophenol wastewater. Basically, increasing initial H(2)O(2) dosage was much more beneficial for increasing biodegradability of wastewater than increasing initial Fe(2 + ) dosage. Among the conditions studied, the optimum condition of increasing biodegradability of chlorophenol wastewater was found with a H(2)O(2)/Fe(2 + )/chlorophenol ratio of 10.0/0.2/1.0, 10.0/0.3/1.0, and 10.0/0.2/1.0 for 2-CP, 4-CP, and 2,4-DCP, respectively. As a result, the value of BOD(5)/COD was increased from 0 for untreated solution up to 0.231, 0.248, and 0.193 for 2-CP, 4-CP, and 2,4-DCP, respectively with a 15-min treatment. Under the operation of optimum conditions, the oxidative state of chlorophenol wastewater could be easily controlled into a higher biodegradability stage. The COD and TOC degradation efficiency could be in excess of 90% on the whole as the preoxidized chlorophenol solution was treated by a following batch-type biological unit. In the meanwhile, the microtoxicity of wastewater reduced more than 95%.

摘要

太阳辐射与芬顿试剂联合使用,以提高氯酚废水(包括2-氯酚(2-CP)、4-氯酚(4-CP)和2,4-二氯酚(2,4-DCP))的生物降解性(BOD(5)/COD)。结果表明,太阳能光芬顿工艺显著提高了氯酚废水的生物降解性。基本上,增加初始H(2)O(2)投加量比增加初始Fe(2 + )投加量更有利于提高废水的生物降解性。在所研究的条件中,发现提高氯酚废水生物降解性的最佳条件是,对于2-CP、4-CP和2,4-DCP,H(2)O(2)/Fe(2 + )/氯酚的比例分别为10.0/0.2/1.0、10.0/0.3/1.0和10.0/0.2/1.0。结果,经15分钟处理后,2-CP、4-CP和2,4-DCP的BOD(5)/COD值分别从未处理溶液的0增加到0.231、0.248和0.193。在最佳条件下运行时,氯酚废水的氧化状态可轻松控制到更高的生物降解性阶段。当预氧化的氯酚溶液由后续的间歇式生物单元处理时,COD和TOC的降解效率总体上可超过90%。同时,废水的微毒性降低超过95%。

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