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在模拟日光下,灭虫脒和氯硝柳胺的直接光解速率和转化途径。

Direct Photolysis Rates and Transformation Pathways of the Lampricides TFM and Niclosamide in Simulated Sunlight.

机构信息

Environmental Chemistry and Technology Program, University of Wisconsin - Madison , Madison, Wisconsin 53706, United States.

Upper Midwest Environmental Sciences Center, United States Geological Survey , La Crosse, Wisconsin 54603, United States.

出版信息

Environ Sci Technol. 2016 Sep 20;50(18):9998-10006. doi: 10.1021/acs.est.6b02607. Epub 2016 Aug 26.

Abstract

The lampricides 3-trifluoromethyl-4-nitrophenol (TFM) and 2',5-dichloro-4'-nitrosalicylanilide (niclosamide) are directly added to many tributaries of the Great Lakes that harbor the invasive parasitic sea lamprey. Despite their long history of use, the fate of lampricides is not well understood. This study evaluates the rate and pathway of direct photodegradation of both lampricides under simulated sunlight. The estimated half-lives of TFM range from 16.6 ± 0.2 h (pH 9) to 32.9 ± 1.0 h (pH 6), while the half-lives of niclosamide range from 8.88 ± 0.52 days (pH 6) to 382 ± 83 days (pH 9) assuming continuous irradiation over a water depth of 55 cm. Both compounds degrade to form a series of aromatic intermediates, simple organic acids, ring cleavage products, and inorganic ions. Experimental data were used to construct a kinetic model which demonstrates that the aromatic products of TFM undergo rapid photolysis and emphasizes that niclosamide degradation is the rate-limiting step to dehalogenation and mineralization of the lampricide. This study demonstrates that TFM photodegradation is likely to occur on the time scale of lampricide applications (2-5 days), while niclosamide, the less selective lampricide, will undergo minimal direct photodegradation during its passage to the Great Lakes.

摘要

杀海虫剂 3-三氟甲基-4-硝基苯酚(TFM)和 2',5-二氯-4'-硝基水杨酰苯胺(灭虫脒)直接添加到许多栖息着入侵性寄生海七鳃鳗的大湖支流中。尽管它们的使用历史悠久,但杀海虫剂的命运仍未得到很好的理解。本研究评估了在模拟阳光条件下这两种杀海虫剂的直接光降解速率和途径。TFM 的估计半衰期范围为 16.6 ± 0.2 h(pH 9)至 32.9 ± 1.0 h(pH 6),而灭虫脒的半衰期范围为 8.88 ± 0.52 天(pH 6)至 382 ± 83 天(pH 9),假设在 55 厘米水深的连续辐照下。这两种化合物都会降解形成一系列芳香族中间体、简单有机酸、环断裂产物和无机离子。实验数据用于构建一个动力学模型,该模型表明 TFM 的芳香族产物会迅速光解,并强调灭虫脒的降解是脱卤和矿化杀海虫剂的限速步骤。本研究表明,TFM 的光降解可能发生在杀海虫剂应用的时间范围内(2-5 天),而在进入大湖的过程中,选择度较低的灭虫脒将经历最小的直接光降解。

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