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色氨酸对 UV/氯消毒过程中三卤甲烷生成的影响。

Impact of tryptophan on the formation of TCNM in the process of UV/chlorine disinfection.

机构信息

Department of Municipal Engineering, Southeast University, Nanjing, 210096, China.

出版信息

Environ Sci Pollut Res Int. 2018 Aug;25(23):23227-23235. doi: 10.1007/s11356-018-2397-0. Epub 2018 Jun 4.

Abstract

Low-pressure (LP) UV treatment after chlorine disinfection was associated with enhanced formation of trichloronitromethane (TCNM), a halonitromethane disinfection by-product (DBP), due to the chlorination of tryptophan. Evidence was found that the concentration of TCNM from tryptophan increased quickly to the maximum for the first instance. Moreover, the increase of TCNM under UV exceeded 10 times than under dark. Then, it was found to have an obvious decrease in the formation of TCNM, even finally hardly disappear. In order to elucidate reasons for this phenomenon, the effects of light intensity, initial tryptophan concentration, free chlorine concentration, pH, and tert-butanol (TBA) on the formation of TCNM were investigated under UV/chlorine treatment. Finally, the effects of tryptophan on the formation of TCNM and the direct photodegradation of TCNM under LP UV irradiation were studied for analyzing the possible pathways of TCNM formation from amino acid. Since amino acids are very common in water sources, further research into chemical oxidation of these species by LP UV and chlorine is recommended. It can help us to find the precursors of TCNM formation and reduce the risk of TCNM formation for drinking water and wastewater utilities.

摘要

低压 (LP) 紫外线处理后氯消毒与增强形成三氯硝基甲烷 (TCNM),卤代硝基甲烷消毒副产物 (DBP),由于色氨酸的氯化。有证据表明,从色氨酸的 TCNM 浓度迅速增加到最大值的第一个实例。此外,紫外线下 TCNM 的增加超过黑暗的 10 倍。然后,它被发现有 TCNM 的形成明显减少,甚至最后几乎消失。为了解释这一现象的原因,研究了光强、初始色氨酸浓度、游离氯浓度、pH 值和叔丁醇 (TBA) 在紫外线/氯气处理下对 TCNM 形成的影响。最后,研究了色氨酸对 TCNM 形成和 LP 紫外线照射下 TCNM 的直接光降解的影响,以分析氨基酸形成 TCNM 的可能途径。由于氨基酸在水源中非常常见,建议进一步研究 LP 紫外线和氯对这些物质的化学氧化。它可以帮助我们找到 TCNM 形成的前体,并降低饮用水和废水处理厂 TCNM 形成的风险。

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