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卡马西平及其代谢物在废水中的情况:分析中的陷阱及在德国和葡萄牙的出现。

Carbamazepine and its metabolites in wastewater: Analytical pitfalls and occurrence in Germany and Portugal.

机构信息

Helmholtz Centre for Environmental Research - UFZ, Department for Effect-Directed Analysis, Permoserstrasse 15, D-04318 Leipzig, Germany.

Helmholtz Centre for Environmental Research - UFZ, Department for Effect-Directed Analysis, Permoserstrasse 15, D-04318 Leipzig, Germany.

出版信息

Water Res. 2014 Jun 15;57:104-14. doi: 10.1016/j.watres.2014.03.022. Epub 2014 Mar 19.

Abstract

The occurrence of carbamazepine (CBZ) and its metabolites in German and Portuguese wastewater was investigated. A total of 46 samples from influent and effluent wastewater were analyzed by liquid-chromatography (LC) tandem mass spectrometry. The five metabolites 10,11-dihydro-10,11-dihydroxy-CBZ (DiOH-CBZ), 10,11-dihydro-10-hydroxy-CBZ (10-OH-CBZ), 10,11-epoxy-10,11-dihydro-CBZ, 2-hydroxy-CBZ and 3-hydroxy-CBZ were very persistent with little to no removal during wastewater treatment. The highest concentrations were found for CBZ, DiOH-CBZ, and 10-OH-CBZ, with up to 5.0, 4.8 and 1.1 μg/L, respectively. Furthermore, the related pharmaceutical oxcarbazepine and the metabolites 9-hydroxymethyl-10-carbamoylacridan, 1-hydroxy-CBZ (1-OH-CBZ) and 4-hydroxy-CBZ (4-OH-CBZ) were detected. Explicit care was taken to achieve a good chromatographic separation of the numerous isomers that were difficult to distinguish by mass spectrometry alone. A phenylether stationary phase provided the best separation. In combination with high resolution mass spectrometry and hydrogen-deuterium exchange, this LC column enabled us to identify 1-OH-CBZ and 4-OH-CBZ in wastewater for the first time.

摘要

研究了卡马西平(CBZ)及其代谢物在德葡废水中的存在情况。通过液相色谱(LC)串联质谱法对 46 份进水和出水废水样本进行了分析。五种代谢物 10,11-二氢-10,11-二羟基-CBZ(DiOH-CBZ)、10,11-二氢-10-羟基-CBZ(10-OH-CBZ)、10,11-环氧-10,11-二氢-CBZ、2-羟基-CBZ 和 3-羟基-CBZ 在废水处理过程中几乎没有去除,具有很强的持久性。发现 CBZ、DiOH-CBZ 和 10-OH-CBZ 的浓度最高,分别高达 5.0、4.8 和 1.1μg/L。此外,还检测到相关药物奥卡西平和代谢物 9-羟甲基-10-甲酰氨基吖啶、1-羟基-CBZ(1-OH-CBZ)和 4-羟基-CBZ(4-OH-CBZ)。在实现众多异构体的良好色谱分离方面,我们特别注意,这些异构体仅通过质谱法很难区分。苯基醚固定相提供了最佳的分离效果。结合高分辨率质谱和氘氢交换,该 LC 柱使我们首次能够在废水中鉴定出 1-OH-CBZ 和 4-OH-CBZ。

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