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Detection of methylquinoline transformation products in microcosm experiments and in tar oil contaminated groundwater using LC-NMR

机译:使用LC-NMR在微观实验和焦油污染的地下水中检测甲基喹啉转化产物

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摘要

N-heterocyclic compounds are known pollutants at tar oil contaminated sites. Here we report the degradation of methyl-, and hydroxy-methyl-substituted quinolines under nitrate-, sulfate- and iron-reducing conditions in microcosms with aquifer material of a former coke manufacturing site. Comparison of degradation potential and rate under different redox conditions revealed highest degradation activities under sulfate-reducing conditions, the prevailing conditions in the field. Metabolites of methylquinolines, with the exception of 2-methylquinolines, were formed in high amounts in the microcosms and could be identified by ~1H NMR spectroscopy as 2(1H)-quinolinone analogues. 4-Methyl-, 6-methyl-, and 7-methyl-3,4-dihydro-2(1H)-quinolinone, the hydrogenated metabolites in the degradation of quinoline compounds, were identified by high resolution LC-MS. Metabolites of methylquinolines showed persistence, although for the first time a transformation of 4-methylquinoline and its metabolite 4-methyl-2(1H)-quinolinone is described. The relevance of the identified metabolites is supported by the detection of a broad spectrum of them in groundwater of the field site using LC-NMR technique. LC-NMR allowed the differentiation of isomers and identification without reference compounds. A variety of methylated 2(1H)-quinolinones, as well as methyl-3,4-dihydro-2(1H)-quinolinone isomers were not identified before in groundwater.
机译:N-杂环化合物是焦油污染现场的已知污染物。在这里,我们报告了在缩微条件下,硝酸盐,硫酸盐和铁的还原条件下,用以前的焦炭生产基地的含水层材料降解了甲基和羟基甲基取代的喹啉。比较不同氧化还原条件下的降解潜力和降解速率表明,在硫酸盐还原条件下(本领域的主要条件),降解活性最高。除2-甲基喹啉外,甲基喹啉的代谢产物在微观世界中大量形成,可通过〜1H NMR光谱鉴定为2(1H)-喹啉酮类似物。通过高分辨率LC-MS鉴定了4-甲基-,6-甲基-和7-甲基-3,4-二氢-2(1H)-喹啉酮,它们是喹啉化合物降解中的氢化代谢物。甲基喹啉的代谢物具有持久性,尽管首次描述了4-甲基喹啉及其代谢物4-甲基-2(1H)-喹啉酮的转化。通过使用LC-NMR技术在野外地下水中检测到广泛的代谢产物,可以支持鉴定出的代谢产物的相关性。 LC-NMR允许异构体的区分和鉴定,无需参考化合物。以前没有在地下水中鉴定出各种甲基化的2(1H)-喹啉酮以及3,4-二氢-2(1H)-喹啉酮甲基异构体。

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