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Occurrence and Spatiotemporal Dynamics of Pharmaceuticals in a Temperate-Region Wastewater Effluent-Dominated Stream: Variable Inputs and Differential Attenuation Yield Evolving Complex Exposure Mixtures

机译:温度区废水流出物流占地物流中药物的发生和时空动态:可变输入和差分衰减产量不断发展的复杂暴露混合物

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摘要

Effluent-dominated streams are becoming increasingly common in temperate regions and generate complex pharmaceutical mixture exposure conditions that may impact aquatic organisms via drug-drug interactions. Here, we quantified spatiotemporal pharmaceutical exposure concentrations and composition mixture dynamics during baseflow conditions at four sites in a temperate-region effluent-dominated stream (upstream, at, and progressively downstream from effluent discharge). Samples were analyzed monthly for 1 year for 109 pharmaceuticals/degradates using a comprehensive U.S. Geological Survey analytical method and biweekly for 2 years focused on 14 most common pharmaceuticals/degradates. We observed a strong chemical gradient with pharmaceuticals only sporadically detected upstream from the effluent. Seventy-four individual pharmaceuticals/degradates were detected, spanning 5 orders of magnitude from 0.28 to 13 500 ng/L, with 38 compounds detected in >50% of samples. "Biweekly" compounds represented 77 ± 8% of the overall pharmaceutical concentration. The antidiabetic drug metformin consistently had the highest concentration with limited in-stream attenuation. The antihistamine drug fexofenadine inputs were greater during warm- than cool-season conditions but also attenuated faster. Differential attenuation of individual pharmaceuticals (i.e., high = citaiopram; low = metformin) contributed to complex mixture evolution along the stream reach. This research demonstrates that variable inputs over multiple years and differential in-stream attenuation of individual compounds generate evolving complex mixture exposure conditions for biota, with implications for interactive effects.
机译:在温带地区越来越常见流出物占状物流,并产生可能通过药物 - 药物相互作用影响水生生物的复杂药物混合物暴露条件。在此,我们在温度区流出物束缚物流(从排出物排出的上游,逐渐下游)的四个位点,在碱基流动条件下量化了时尚药物暴露浓度和组合物混合物动力学。每月分析样品为109药物/降解,使用全面的美国地质调查分析方法和2年,以14个最常见的药物/降解为单三周。我们观察了具有药物的强大化学梯度,只能散发出来的来自流出物的上游。检测到七十四种单独的药物/降解,跨越0.28至13 500 ng / L的5个级,38个化合物以> 50%的样品中检测到。 “双周”化合物代表了总药物浓度的77±8%。抗糖尿病药物二甲双胍始终具有最高的浓度,具有有限的流动衰减。抗炎药FexofeNadine输入在暖液的条件下更大,但也更快地减弱。单个药物的差异衰减(即,高= CitaIopram; Low =二甲双胍)有助于沿着流达到的复杂混合演变。该研究表明,多年来的可变输入和各种化合物的差异血流衰减产生了生物群的综合混合物暴露条件,具有对交互式效应的影响。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第20期|12967-12978|共12页
  • 作者单位

    Department of Civil & Environmental Engineering University of Iowa Iowa City Iowa 52242 United States IIHR-Hydroscience & Engineering 100 C. Maxwell Stanley Hydraulics Laboratory Iowa City Iowa 52242 United States;

    U.S. Geological Survey Central Midwest Water Science Center Iowa City Iowa 52240 United States;

    University of Wisconsin-Milwaukee School of Freshwater Sciences Milwaukee Wisconsin 53204 United States;

    U.S. Geological Survey Leetown Science Center Kearneysville West Virginia 25430 United States;

    US. Geological Survey Central Midwest Water Science Center Iowa City Iowa 52240 United States;

    Department of Civil & Environmental Engineering University of Iowa Iowa City Iowa 52242 United States IIHR-Hydroscience & Engineering 100 C. Maxwell Stanley Hydraulics Laboratory Iowa City Iowa 52242 United States;

  • 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
  • 关键词

  • 入库时间 2022-08-18 22:37:05
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