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UV 激活过硫酸盐和过一硫酸盐过程中吡虫啉的降解:动力学、关键因素的影响和降解途径。

Degradation of imidacloprid by UV-activated persulfate and peroxymonosulfate processes: Kinetics, impact of key factors and degradation pathway.

机构信息

College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai, 201600, China.

College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai, 201600, China.

出版信息

Ecotoxicol Environ Saf. 2020 Jan 15;187:109779. doi: 10.1016/j.ecoenv.2019.109779. Epub 2019 Oct 19.

Abstract

UV-activated persulfate (UV/PS) and peroxymonosulfate (UV/PMS) processes as alternative methods for removal of imidacloprid (IMP) were conducted for the first time. The reaction rate constants between IMP and the sulfate or hydroxyl radical were calculated as 2.33×10  or 2.42×10 M s, respectively. The degradation of IMP was greatly improved by UV/PS and UV/PMS compared with only UV or oxidant. At any given dosage, UV/PS achieved higher IMP removal rate than UV/PMS. The pH range affecting the degradation in the UV/PS and UV/PMS systems were different in the ranges of 6-8 and 9 to 10. SO, F and NO had no obvious effect on the degradation in the UV/PS and UV/PMS systems. CO and PO inhibited the degradation of IMP in the UV/PS system, while they enhanced the degradation in the UV/PMS system. Algae organic matters (AOM) were used to consider the impact of the degradation of IMP for the first time. The removal of IMP were restrained by both AOM and natural organic matters. The higher removal rate of IMP demonstrated that both UV/PS and UV/PMS were suitable for treating the water containing IMP, while UV/PS was cost-effective than UV/PMS based on the total cost calculation. Finally, the degradation pathways of IMP were proposed.

摘要

首次采用紫外光激活过硫酸盐(UV/PS)和过一硫酸盐(UV/PMS)工艺作为去除吡虫啉(IMP)的替代方法。IMP 与硫酸根自由基和羟基自由基的反应速率常数分别计算为 2.33×10或 2.42×10Ms。与单独使用紫外光或氧化剂相比,UV/PS 和 UV/PMS 大大提高了 IMP 的去除率。在任何给定剂量下,UV/PS 都比 UV/PMS 具有更高的 IMP 去除率。影响 UV/PS 和 UV/PMS 系统中降解的 pH 范围不同,分别在 6-8 和 9-10 范围内。因此,SO、F 和 NO 对 UV/PS 和 UV/PMS 系统中的降解没有明显影响。CO 和 PO 在 UV/PS 系统中抑制了 IMP 的降解,而在 UV/PMS 系统中促进了 IMP 的降解。藻类有机物(AOM)首次用于考虑 IMP 降解的影响。IMP 的去除受到 AOM 和天然有机物的双重抑制。较高的 IMP 去除率表明,UV/PS 和 UV/PMS 都适用于处理含有 IMP 的水,而基于总成本计算,UV/PS 比 UV/PMS 更具成本效益。最后,提出了 IMP 的降解途径。

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