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首页> 外文期刊>Journal of Environmental Engineering >Identification of Transformation Products for Benzotriazole, Triclosan, and Trimethoprim by Aerobic and Anoxic-Activated Sludge
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Identification of Transformation Products for Benzotriazole, Triclosan, and Trimethoprim by Aerobic and Anoxic-Activated Sludge

机译:通过好氧和缺氧激活污泥鉴定苯并三唑,三胞嘧啶和三甲基氯化物的转化产物

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This study identified biotransformation products formed from three anthropogenic trace organic compounds (TOrCs) (benzotriazole, triclosan, and trimethoprim) in aerobic and anoxic sludge from a biological nutrient removal (BNR) wastewater treatment system. Liquid chromatography coupled to quadrupole time-of-flight mass spectrometry (LC-QTOF) was used to identify intermediate transformation products. A user-defined compound library was used to target unknowns in samples with a mix of TOrCs without requiring chemical standards and developed using EAWAG-BDD predictive software, which included 37 potential transformation products. Biotransformation batch experiments were conducted using activated sludge from anoxic and aerobic redox regimes of a BNR treatment plant located in Southern Nevada, United States. Four intermediates were observed for benzotriazole in both aerobic and anoxic activated sludge, which consisted of two isomers of hydroxy benzotriazole and two isomers of methoxy benzotriazole. Four intermediates were observed for trimethoprim under aerobic conditions, which formed 2,4-diaminopyrimidin-5-yl)(3,4,5-trimethoxyphenyl)methanol (TMP 306) and 2,6-diamino-5-hydroxy-5-(3,4,5-trimethoxybenzyl)-5,6-dihydropyrimidin-4(1H)-one (TMP 324) and two demethylation isomers of desmethyl trimethoprim. Triclosan had one confirmed transformation product, triclosan-o-sulfate, formed in both conditions. The identification of these transformation products will allow for more thorough risk assessments to be performed for the target TOrCs.
机译:本研究确定了生物营养物去除(BNR)废水处理系统的好氧和缺氧污泥中三种人为微量有机化合物(TORC)(苯并三唑、三氯生和甲氧苄啶)形成的生物转化产物。液相色谱-四极杆飞行时间质谱联用(LC-QTOF)用于鉴定中间转化产物。用户定义的化合物库用于在不需要化学标准的情况下,以TORC混合物为目标,并使用EAWAG-BDD预测软件开发,其中包括37种潜在转化产物。利用美国内华达州南部BNR处理厂缺氧和好氧氧化还原条件下的活性污泥进行了生物转化间歇试验。在好氧和缺氧活性污泥中观察到四种苯并三唑中间体,它们由羟基苯并三唑的两种异构体和甲氧基苯并三唑的两种异构体组成。在好氧条件下观察到四种甲氧苄啶中间体,它们形成2,4-二氨基嘧啶-5-基(3,4,5-三甲氧基苯基)甲醇(TMP 306)和2,6-二氨基-5-羟基-5-(3,4,5-三甲氧基苄基)-5,6-二氢嘧啶-4(1H)-一(TMP 324)和去甲基甲氧苄啶的两种脱甲基异构体。三氯生有一种确认的转化产物,三氯生-o-硫酸盐,在两种条件下都形成。识别这些转化产品将允许对目标TORC进行更彻底的风险评估。

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