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Field and laboratory studies of the fate and enantiomeric enrichment of venlafaxine and O-desmethylvenlafaxine under aerobic and anaerobic conditions

机译:有氧和无氧条件下文拉法辛和O-去甲基文拉法辛的命运和对映体富集的现场和实验室研究

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摘要

The stereoselectivity of R,S-venlafaxine and its metabolites R,S-O-desmethylvenlafaxine, N-des-methylvenlafaxine, O,N-didesmethylvenlafaxine, N,N-didesmethylvenlafaxine and tridesmethylvenlafax-ine was studied in three processes: (ⅰ) anaerobic and aerobic laboratory scale tests; (ⅱ) six wastewater treatment plants (WWTPs) operating under different conditions; and (ⅲ) a variety of wastewater treatments including conventional activated sludge, natural attenuation along a receiving river stream and storage in operational and seasonal reservoirs. In the laboratory and field studies, the degradation of the venlafaxine yielded O-desmethylvenalfaxine as the dominant metabolite under aerobic and anaerobic conditions. Venlafaxine was almost exclusively converted to O-desmethylvenlafaxine under anaerobic conditions, but only a fraction of the drug was transformed to O-desmethylvenlafaxine under aerobic conditions. Degradation of venlafaxine involved only small stereoisomeric selectivity. In contrast, the degradation of O-desmethylvenlafaxine yielded remarkable S to R enrichment under aerobic conditions but none under anaerobic conditions. Determination of venlafaxine and its metabolites in the WWTPs agreed well with the stereoselectivity observed in the laboratory studies. Our results suggest that the levels of the drug and its metabolites and the stereoisomeric enrichment of the metabolite and its parent drug can be used for source tracking and for discrimination between domestic and nondomestic wastewater pollution. This was indeed demonstrated in the investigations carried out at the Jerusalem WWTP.
机译:R,S-文拉法辛及其代谢产物R,SO-去甲基文拉法辛,N-去甲基文拉法辛,O,N-二甲基甲文拉法辛,N,N-二甲基甲文拉法辛和三甲基甲基文拉法辛的立体选择性在以下三个过程中进行了研究:(studied)厌氧和好氧实验室规模测试; (ⅱ)六个在不同条件下运作的废水处理厂; (ⅲ)各种废水处理,包括常规活性污泥,沿接收河水自然衰减以及在运营中和季节性水库中的存储。在实验室和现场研究中,在需氧和厌氧条件下,文拉法辛的降解产生了O-去甲基venalfaxine作为主要代谢产物。在厌氧条件下,文拉法辛几乎全部转化为O-去甲基文拉法辛,但在需氧条件下,只有一部分药物转化为O-去甲基文拉法辛。文拉法辛的降解仅涉及小的立体异构体选择性。相比之下,O-去甲基文拉法辛的降解在有氧条件下产生显着的S到R富集,而在厌氧条件下则没有。废水处理厂中文拉法辛及其代谢产物的测定与实验室研究中观察到的立体选择性非常吻合。我们的结果表明,该药物及其代谢物的水平以及代谢物及其母体药物的立体异构体富集可用于来源跟踪和区分家庭和非家庭废水污染。耶路撒冷污水处理厂进行的调查确实表明了这一点。

著录项

  • 来源
    《Chemosphere》 |2012年第1期|p.98-105|共8页
  • 作者单位

    Casali Institute of Applied Chemistry, Institute of Chemistry, EdmondJ. Safra Campus, The Hebrew University, Jerusalem 91904, Israel,Israeli Water Authority, HamasgerSt. 14, POB 20365, Tel Aviv 61203, Israel;

    Israeli Water Authority, HamasgerSt. 14, POB 20365, Tel Aviv 61203, Israel;

    Israeli Water Authority, HamasgerSt. 14, POB 20365, Tel Aviv 61203, Israel;

    Casali Institute of Applied Chemistry, Institute of Chemistry, EdmondJ. Safra Campus, The Hebrew University, Jerusalem 91904, Israel,Institute of Waste Management and Contaminated Site Treatment, Dresden University of Technology, D-01796 Pirna, Germany;

    Casali Institute of Applied Chemistry, Institute of Chemistry, EdmondJ. Safra Campus, The Hebrew University, Jerusalem 91904, Israel;

    The Geological Survey of Israel, 30 Malkhey Israel St., Jerusalem, Israel;

    Casali Institute of Applied Chemistry, Institute of Chemistry, EdmondJ. Safra Campus, The Hebrew University, Jerusalem 91904, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    stereoselectivity; wastewater treatment; venlafaxine; micropollutants; anaerobic; aerobic;

    机译:立体选择性废水处理;文拉法辛微量污染物厌氧有氧运动;

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