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Use of the Chiral Pharmaceutical Propranolol to Identify Sewage Discharges into Surface Waters

机译:使用手性药物普萘洛尔确定排入地表水中的污水

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摘要

The discharge of relatively small volumes of untreated sewage is a source of wastewater-derived contaminants in surface waters that is often ignored because it is difficult to discriminate from wastewater effluent.To identify raw sewage discharges,we analyzed the two enantiomers of the popular chiral pharmaceutical,propranolol,after deriviti-zation to convert the enantiomers to diastereomers.The enantiomeric fraction(the ratio of the concentration of one of its isomers to the total concentration)of propranolol in the influent of five wastewater treatment plants was 0.50 +-0.02,while after secondary treatment it was 0.42 or less.In a laboratory study designed to simulate an activated sludge municipal wastewater treatment system,the enantiomeric fraction of propranolol decreased from 0.5 to 0.43 as the compound underwent biotransformation.In a similar system designed to simulate an effluent-dominanted surface water,the enantiomeric fraction of propranolol remained constant as it underwent biotransformation.Analysis of samples from surface waters with known or suspected discharges of untreated sewage contained propranolol with an enantiomeric fraction of approximately 0.50 whereas surface waters with large discharges of wastewater effluent contained propranolol with enantiomeric fractions similar to those observed in wastewater effluent.Measurement of enantiomers of propranolol may be useful in detecting and documenting contaminants related to leaking sewers and combined sewer overflows.
机译:相对少量未经处理的污水的排放是地表水中废水衍生的污染物的来源,由于难以与废水排放区分开来,因此经常被忽略。为确定原污水的排放,我们分析了手性药物的两种对映异构体普萘洛尔在衍生化后将对映异构体转化为非对映异构体。五家废水处理厂进水中普萘洛尔的对映体分数(一种异构体的浓度与总浓度之比)为0.50 + -0.02,而经过二次处理后,其值为0.42或更小。在旨在模拟活性污泥市政废水处理系统的实验室研究中,随着该化合物进行生物转化,普萘洛尔的对映体含量从0.5降低至0.43。在类似的模拟废水处理系统中,在地表水占主导地位的情况下,普萘洛尔的对映体分数在温度升高时保持恒定对未经处理污水已知或疑似排放的地表水样品进行分析,其普萘洛尔的对映体分数约为0.50,而废水排放量大的地表水中的普萘洛尔对映体分数与废水中所观察到的对映体分数相似。普萘洛尔的对映异构体可用于检测和记录与下水道泄漏和下水道合并溢流有关的污染物。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第23期|p.9244-9252|共9页
  • 作者

    LORIEN J.FONO; DAVID L.SEDLAK;

  • 作者单位

    Department of Civil and Environmental Engineering,University of California at Berkeley,Berkeley,California 94720;

    Department of Civil and Environmental Engineering,University of California at Berkeley,Berkeley,California 94720;

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

  • 入库时间 2022-08-17 14:08:09

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