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各种高级氧化工艺对水中雌酮的降解。

Degradation of estrone in water and wastewater by various advanced oxidation processes.

机构信息

Department of Chemical and Biochemical Engineering, The University of Western Ontario, London, N6A5B9, Canada.

Department of Chemical and Biochemical Engineering, The University of Western Ontario, London, N6A5B9, Canada.

出版信息

J Hazard Mater. 2014 Aug 15;278:16-24. doi: 10.1016/j.jhazmat.2014.05.078. Epub 2014 Jun 4.

Abstract

A comprehensive study was conducted to determine the relative efficacy of various advanced oxidation processes such as O3, H2O2, UV, and combinations of UV/O3, UV/H2O2 for the removal of estrone (E1) from pure water and secondary effluent. In addition to the parent compound (E1) removal, performance of the advanced oxidation processes was characterized using removal of total organic carbon (TOC), and estrogenicity of the effluent. Although E1 removal was high for all the AOPs, intermediates formed were more difficult to degrade leading to slow TOC removal. Energy calculations and cost analysis indicated that, although UV processes have low electricity cost, ozonation is the least cost option ($ 0.34/1000 gallons) when both capital and operating costs were taken into account. Ozonation also is superior to the other tested AOPs due to higher removal of TOC and estrogenicity. The rate of E1 removal decreased linearly with the background TOC in water, however, E1 degradation in the secondary effluent from a local wastewater treatment plant was not affected significantly due to the low COD values in the effluent.

摘要

进行了一项全面的研究,以确定各种高级氧化工艺(如 O3、H2O2、UV 以及它们的组合 UV/O3、UV/H2O2)在去除纯净水中和二级出水中雌酮(E1)方面的相对效率。除了母体化合物(E1)的去除,高级氧化工艺的性能还使用总有机碳(TOC)的去除和流出物的雌激素性来表征。尽管所有 AOP 都能高效去除 E1,但形成的中间体更难降解,导致 TOC 的去除速度较慢。能量计算和成本分析表明,尽管 UV 工艺的电费成本较低,但考虑到资本和运营成本,臭氧氧化是成本最低的选择(每千加仑 0.34 美元)。臭氧氧化也优于其他经过测试的 AOP,因为它能更有效地去除 TOC 和雌激素。E1 的去除率随水中背景 TOC 的增加呈线性下降,但由于流出物中的 COD 值较低,当地污水处理厂的二级出水中 E1 的降解并未受到显著影响。

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