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循环冷却水中使用 UV/过硫酸盐非氧化杀生剂的降解:动力学、途径和细胞毒性。

Degradation of a non-oxidizing biocide in circulating cooling water using UV/persulfate: Kinetics, pathways, and cytotoxicity.

机构信息

School of Environmental Science and Engineering, Shandong University, Qingdao, 266237, China.

School of Environmental Science and Engineering, Shandong University, Qingdao, 266237, China.

出版信息

Chemosphere. 2022 Feb;289:133064. doi: 10.1016/j.chemosphere.2021.133064. Epub 2021 Nov 24.

Abstract

In industry, isothiazolinone (a mixture containing 5-chloro-2-methyl-4-isothiazolin-3-one (CMIT) and 2-methyl-4-isothiazolin-3-one (MIT), CMIT-MIT) as a non-oxidizing biocide is extensively used to control the growth of microorganisms in the circulating cooling water system, which potentially threatens the ecological environment and human health. In this work, the oxidative degradation of CMIT-MIT by UV/persulfate (PS) technology on a laboratory-scale was systematically investigated. The degradation of CMIT-MIT was greatly improved by UV/PS compared with only UV or oxidant. During the photolysis of 60 mg/L PS, the degradation rate and TOC mineralization rate of CMIT-MIT were 91% and 34.7%, respectively. The contributions of OH and SO· to CMIT-MIT degradation in the UV/PS system were estimated to be 0.93% and 32.12% respectively. The degradation rate of CMIT-MIT decreased slightly with the increase of pH. The presence of SO and NO had no significant effect on the degradation of CMIT-MIT, while the presence of Cl and CO inhibited the CMIT-MIT removal rate. The degradation pathways and three possible intermediates of CMIT-MIT were obtained. After degradation of CMIT-MIT by UV/PS process, the cytotoxicity decreased within 20 min, effectively indicating that UV/PS could be as a potential technology to remove the CMIT-MIT in water treatment.

摘要

在工业中,异噻唑啉酮(一种含有 5-氯-2-甲基-4-异噻唑啉-3-酮(CMIT)和 2-甲基-4-异噻唑啉-3-酮(MIT)的混合物,CMIT-MIT)作为一种非氧化性杀生剂,被广泛用于控制循环冷却水中微生物的生长,这可能会威胁到生态环境和人类健康。在这项工作中,系统研究了 UV/过硫酸盐(PS)技术对 CMIT-MIT 的氧化降解。与单独使用 UV 或氧化剂相比,UV/PS 大大提高了 CMIT-MIT 的降解效率。在 60mg/L PS 的光解过程中,CMIT-MIT 的降解率和TOC 矿化率分别达到 91%和 34.7%。在 UV/PS 体系中,OH 和 SO·对 CMIT-MIT 降解的贡献分别估计为 0.93%和 32.12%。CMIT-MIT 的降解速率随 pH 的升高略有下降。SO 和 NO 的存在对 CMIT-MIT 的降解没有明显影响,而 Cl 和 CO 的存在抑制了 CMIT-MIT 的去除率。获得了 CMIT-MIT 的降解途径和三个可能的中间产物。经 UV/PS 工艺降解 CMIT-MIT 后,20min 内细胞毒性降低,表明 UV/PS 可作为一种去除水中 CMIT-MIT 的潜在技术。

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