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Identification of transformation products of denatonium - Occurrence in wastewater treatment plants and surface waters

机译:废水处理厂和表面水域变性产物的鉴定

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Denatonium, one of the bitterest substances known to man, was recently identified as wastewater borne micropollutant in surface waters. Therefore, photodegradation experiments and electrochemical degradation were performed to identify abiotic and putative biotic transformation products (TPs). Indirect rather than direct photodegradation proved to be important for denatonium removal by solar irradiation and produced seven TPs. Amide hydrolysis, hydroxylation, N-dealkylation, and N-dearylation were revealed as the main mechanisms. Anodic oxidation of denatonium was related to the formation of overall ten products and despite considerable different yields, all TPs from indirect photodegradation were mimicked electrochemically. Among them, lidocaine was the only TP detected after conventional wastewater treatment and in surface waters. The occurrence of lidocaine was however associated with its application as local anesthetic rather than to a degradation of denatonium. The absence of additional products suggests that denatonium degradation is negligible under environmental conditions, supporting the previously described persistent nature of this compound. Advanced water treatment techniques however have the potential to degrade denatonium. About 74% of the initial denatonium load was removed from wastewater during pilot-scale ozonation. The degradation of denatonium was accompanied here with the formation of at least two polar products, which are passing unchanged through a sand filter after ozonation. Both substances have completely unknown (toxicological) properties and this study seems to be the first report about their structures in general, as none of them was found in any of the large compound libraries (e.g. PubChem). (C) 2019 Elsevier B.V. All rights reserved.
机译:最近鉴定为男人所知的糖最佳的物质之一的Denatonium被鉴定为表面水域中的废水传播微孔。因此,进行光降解实验和电化学降解以鉴定非生物和推定的生物转化产物(TPS)。间接而不是直接光降解被证明对太阳照射并产生了七种TPS的二氮去除。酰胺水解,羟基化,正释烷基化和N-脂肪化被揭示为主要机制。 Denatonium的阳极氧化与整体十种产品的形成有关,尽管产率相当大,但间接光降解的所有TPS都被电化学模仿。其中,利多卡因是常规废水处理和表面水域后唯一检测到的TP。然而,利多卡因的发生与其应用作为局部麻醉剂而不是降解Denatonium。没有额外的产品表明,在环境条件下,Denatanium降解可忽略不计,支持此前描述该化合物的持续性质。然而,先进的水处理技术有可能降解Denatonium。在试验型臭氧处理过程中,从废水中除去约74%的初始二氮载量。在此伴随到至少两种极性产物的形成,其在臭氧后通过砂过滤器形成至少两种极性产物。这两种物质都有完全未知(毒理学)性质,这项研究似乎是一般的第一个关于它们结构的报告,因为它们中的任何一个大型复合文库(例如Pubchem)都不存在。 (c)2019 Elsevier B.v.保留所有权利。

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