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Transformation of Illicit Drugs and Pharmaceuticals in Sewer Sediments

机译:下水道沉积物中非法药物和药物的转型

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摘要

In-sewer stability of human excreted biomarkers is a critical factor of wastewater-based epidemiology in back-estimating illicit drug and pharmaceutical use in the community. Biomarker stability has been investigated in sewers with the presence of biofilms, but the understanding in sewer sediments is still lacking. This study for the first time employed a laboratory sediment reactor to measure 18 illicit drug and pharmaceutical biomarkers under gravity sewer environments with the presence of sediments. Biomarkers exhibited various stability patterns due to transformation processes occurring in the bulk wastewater and sediments. The attenuation of a biomarker by sediments is driven by complex processes involving biodegradation, diffusion, and sorption, which is directly proportional to the ratio of sediment surface area against wastewater volume. The sediment-driven transformation coefficients of biomarkers are higher than the accordingly biofilm-mediated rates because of stronger microbial activities in sediments. Additionally, the stability of most biomarkers was insensitive to the natural pH variation in sewers, except for a few compounds (e.g., methadone, ketamine, and paracetamol) susceptible to pH changes. In general, this study delineates the stability data of various biomarkers in gravity sewers with sediments, which are novel and long-missing information for wastewater-based epidemiology and improve the reliability of back-estimation in complex sewer networks.
机译:人排泄的生物标志物的下水道稳定性是废水基流行病学的临界因素在妇女的反估计非法药物和药物用途中的废水流行病学。在下水道中研究了生物标志物稳定性,存在生物膜的存在,但下水道沉积物的理解仍然缺乏。本研究首次采用实验室沉积物反应器来测量18个非法药物和药物生物标志物,在重力下水道环境下存在沉积物。由于在散装废水和沉积物中发生的转化过程,生物标志物表现出各种稳定性模式。沉积物衰减沉积物是由涉及生物降解,扩散和吸附的复杂方法的驱动,其与沉积物表面积与废水体积的比例成正比。由于沉积物中的微生物活性较强,沉积物驱动的生物标志物的转化系数高于相应的生物膜介导的速率。另外,除了易于pH变化的少量化合物(例如,美沙酮,氯胺酮和扑热胺)之外,大多数生物标志物的稳定性对下水道的天然pH变异不敏感。一般而言,本研究描绘了具有沉积物的重心下水道中各种生物标志物的稳定性数据,这是基于废水的流行病学的新颖和长缺失的信息,提高复杂下水道网络中的回估计的可靠性。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|13056-13065|共10页
  • 作者单位

    Advanced Water Management Centre The University of Queensland St Lucia QLD 4072 Australia;

    Queensland Alliance for Environmental Health Sciences The University of Queensland Brisbane QLD 4102 Australia College of Chemistry and Environmental Engineering Shenzhen University Shenzhen 518060 China;

    Queensland Alliance for Environmental Health Sciences The University of Queensland Brisbane QLD 4102 Australia;

    Queensland Alliance for Environmental Health Sciences The University of Queensland Brisbane QLD 4102 Australia;

    Advanced Water Management Centre The University of Queensland St Lucia QLD 4072 Australia;

    Advanced Water Management Centre The University of Queensland St Lucia QLD 4072 Australia School of Civil Mining and Environmental Engineering and Illawarra Health and Medical Research Institute (IHMRI) University of Wollongong Wollongong NSW 2522 Australia;

  • 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
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