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Insight into the binding properties of carbamazepine onto dissolved organic matter using spectroscopic techniques during grassy swale treatment

机译:在草地沼泽治疗期间,在光谱技术中欣赏到溶解有机物质上的咔啉脂的结合特性

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摘要

Carbamazepine (CBZ) is a worldwide anti-epileptic drug, whose fate and migration can be greatly influenced by contact with dissolved organic matter (DOM). The properties of DOM in road runoff can be greatly changed by grassy swale (GS) treatment, which influences the complexation of CBZ with DOM. Spectroscopic techniques were employed to explore the different binding properties between CBZ and DOM, and to understand the migration and biogeochemistry of CBZ. The two-dimensional correlation spectroscopy (2D-COS)demonstrated that effluent DOM displayed more binding sites for CBZ than influent DOM, and the binding sequencing of CBZ with DOM fluorophores can be greatly influenced by GS treatment. The results also suggest that protein-like materials exhibit higher log K-M values than other fluorescent components, indicating that fluorescent protein-like materials play a crucial role in the biogeochemical behavior of CBZ. Meanwhile, the log K-M values showed a remarkable increase after GS treatment. GS treatment can also remove most fluorescent DOM, reducing the risk of CBZ in the water environment.
机译:Carbamazepine(CBZ)是全球抗癫痫药物,其命运和迁移可以通过与溶解的有机物(DOM)接触而受到大量影响。由草地(GS)处理可以大大改变道路径流的DOM属性,这影响CBZ与DOM的络合。采用光谱技术探讨CBZ和DOM之间的不同结合特性,并了解CBZ的迁移和生物地球化学。二维相关光谱(2D-COS)证明了流出物DOM对CBZ的更多结合位点而不是流入的DOM,并且CBZ与DOM荧光团的结合测序可以受到GS治疗的大量影响。结果还表明,蛋白质状材料表现出比其他荧光成分更高的Log K-M值,表明荧光蛋白样材料在CBZ的生物地理学行为中起着至关重要的作用。同时,LOG K-M值显示GS处理后显着增加。 GS治疗还可以去除大多数荧光DOM,降低水环境中CBZ的风险。

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