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应用于高甲拌磷浓度水体的光-Fenton 处理的实验设计。

Experimental design applied to photo-Fenton treatment of highly methomyl-concentrated water.

机构信息

Departament d'Enginyeria Química, Universitat de Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.

出版信息

Water Sci Technol. 2010;62(9):2066-74. doi: 10.2166/wst.2010.522.

Abstract

This work is focused on the study of the suitability of the photo-Fenton process as a pretreatment for water highly contaminated with a methomyl commercial formulation in Advanced Greenhouses devices. Initial concentrations of reagents and pesticide were evaluated according to a central composite experimental design, with methomyl depletion and biocompatibility of the final effluent as response functions. A triad of optimal operation conditions could be determined, Met.=50 mg L(-1), H(2)O(2)=254 mg L(-1) and Fe(2+)=77 mg L(-1) for the best elimination yield and an acceptable BOD(5)/COD value, and initial concentration of methomyl can be established as the most important parameter for the performance of the treatment due to the limitations that impose on the hydrogen peroxide doses in the presence of the excipients of the commercial formulation.

摘要

这项工作侧重于研究光芬顿工艺作为一种预处理方法的适用性,用于处理高度污染的水中含有甲拌磷商业制剂的水,这些水来自高级温室设备。根据中心复合实验设计,评估了初始试剂和农药浓度,以甲拌磷的消耗和最终流出物的生物相容性为响应函数。可以确定一组最佳操作条件,Met.=50mgL(-1),H(2)O(2)=254mgL(-1)和Fe(2+)=77mgL(-1),以获得最佳的去除率和可接受的 BOD(5)/COD 值,并且由于商业制剂赋形剂存在时对过氧化氢剂量的限制,初始甲拌磷浓度可以被确定为处理性能的最重要参数。

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