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首页> 外文期刊>The Science of the Total Environment >Complex mixtures of dissolved pesticides show potential aquatic toxicity in a synoptic study of Midwestern U.S. streams
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Complex mixtures of dissolved pesticides show potential aquatic toxicity in a synoptic study of Midwestern U.S. streams

机译:在美国中西部河流的天气概况研究中,复杂的溶解农药混合物显示出潜在的水生毒性。

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摘要

Aquatic organisms in streams are exposed to pesticide mixtures that vary in composition over time in response to changes in flow conditions, pesticide inputs to the stream, and pesticide fate and degradation within the stream. To characterize mixtures of dissolved-phase pesticides and degradates in Midwestern streams, a synoptic study was conducted at 100 streams during May-August 2013. In weekly water samples, 94 pesticides and 89 degradates were detected, with a median of 25 compounds detected per sample and 54 detected per site. In a screening-level assessment using aquatic-life benchmarks and the Pesticide Toxicity Index (PTI), potential effects on fish were unlikely in most streams. For invertebrates, potential chronic toxicity was predicted in 53% of streams, punctuated in 12% of streams by acutely toxic exposures. For aquatic plants, acute but likely reversible effects on biomass were predicted in 75% of streams, with potential longer-term effects on plant communities in 9% of streams. Relatively few pesticides in water-atrazine, acetochlor, metolachlor, imidadoprid, fipronil, organ-ophosphate insecticides, and carbendazim-were predicted to be major contributors to potential toxicity. Agricultural streams had the highest potential for effects on plants, especially in May-June, corresponding to high spring-flush herbicide concentrations. Urban streams had higher detection frequencies and concentrations of insecticides and most fungicides than in agricultural streams, and higher potential for invertebrate toxicity, which peaked during July-August. Toxicity-screening predictions for invertebrates were supported by quantile regressions showing significant associations for the Benthic Invertebrate-PTI and imidadoprid concentrations with invertebrate community metrics for MSQA streams, and by mesocosm toxicity testing with imidacloprid showing effects on invertebrate communities at environmentally relevant concentrations. This study documents the most complex pesticide mixtures yet reported in discrete water samples in the U.S. and, using multiple lines of evidence, predicts that pesticides were potentially toxic to nontarget aquatic life in about half of the sampled streams.
机译:溪流中的水生生物暴露于农药混合物中,该混合物随时间的变化,溪流中农药的输入以及溪流中农药的命运和降解而随时间而变化。为了表征中西部河流中溶解相农药和降解物的混合物,在2013年5月至8月对100条河流进行了天气概要研究。在每周的水样中,检测到94种农药和89种降解物,每个样品中位数为25种化合物每个站点检测到54个。在使用水生生物基准和农药毒性指数(PTI)进行的筛查级评估中,大多数溪流对鱼类的潜在影响不太可能。对于无脊椎动物,预计有53%的溪流具有潜在的慢性毒性,而由于剧毒的暴露,在12%的溪流中可能会造成慢性毒性。对于水生植物,预计在75%的溪流中对生物量有急性但可能是可逆的影响,而在9%的溪流中可能对植物群落产生长期影响。预测水at去津,乙草胺,甲草胺,吡虫啉,氟虫腈,有机磷杀虫剂和多菌灵中的农药相对较少,它们是潜在毒性的主要起因。农业水流对植物的影响最大,特别是在5月至6月,这与春季抽水除草剂的高浓度相对应。与农业河流相比,城市河流的杀虫剂和大多数杀真菌剂的检测频率和浓度更高,无脊椎动物毒性的潜力也更高,在7月至8月达到峰值。无脊椎动物的毒性筛查预测得到分位数回归的支持,该回归表明底栖无脊椎动物PTI和吡虫啉的浓度与MSQA流的无脊椎动物群落指标显着相关,并通过吡虫啉的介观毒性试验显示了在环境相关浓度下对无脊椎动物群落的影响。这项研究记录了美国离散水样品中迄今报告的最复杂的农药混合物,并使用多种证据预测,在大约一半的采样溪流中,农药对非目标水生生物具有潜在毒性。

著录项

  • 来源
    《The Science of the Total Environment 》 |2018年第1期| 1469-1488| 共20页
  • 作者单位

    US. Geological Survey, California Water Science Center. Placer Hall, 6000 J Street, Sacramento, CA 95819, USA;

    US. Geological Survey, Washington Water Science Center, 934 Broadway, Suite 300, Tacoma, WA 98402, USA;

    US Geological Survey, Fort Collins Science Center, 2150 Centre Avenue, Building C, Fort Collins. CO 80526, USA;

    US. Geological Survey, Oregon Water Science Center, 2130 SW 5th Avenue, Portland, OR 97201, USA;

    US. Geological Survey, California Water Science Center. Placer Hall, 6000 J Street, Sacramento, CA 95819, USA;

    US. Geological Survey, Indiana-Kentucky Water Science Center, 5957 Lakeside Boulevard, Indianapolis, IN 46278, USA;

    US. Geological Survey, Texas Water Science Center, 1505 Ferguson Lane, Austin, TX 78754, USA;

    US. Geological Survey, Texas Water Science Center, 1505 Ferguson Lane, Austin, TX 78754, USA;

    US. Geological Survey, Indiana-Kentucky Water Science Center, 5957 Lakeside Boulevard, Indianapolis, IN 46278, USA;

    US Geological Survey, National Water Quality Laboratory, P.O. Box 25585, Denver, CO 80225-0585, USA;

    US. Geological Survey, California Water Science Center. Placer Hall, 6000 J Street, Sacramento, CA 95819, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stressor; Degradate; Invertebrate toxicity; Screening assessment; Benchmark; Pesticide Toxicity Index;

    机译:压力源;降解无脊椎动物的毒性;筛选评估;基准;农药毒性指数;

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