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Evaluation of land use and water quality in an agricultural watershed in the USA indicates multiple sources of bacterial impairment

机译:对美国一个农业流域的土地利用和水质进行的评估表明,细菌损害的多种来源

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摘要

Pathogens are the number one cause of impairments of assessed rivers and streams in the USA and pose a significant human health hazard. The Dry Run Creek Watershed in Northeast Iowa has been designated as impaired by the State of Iowa because of high levels of Escherichia coli bacteria. To investigate the nature of this impairment, land use and stream bank assessments were coupled with comprehensive water quality monitoring. Physical, chemical, and biological parameters were measured at 13 different sites in the watershed, including pH, temperature, conductivity, dissolved oxygen, turbidity, total Kjeldahl nitrogen, ammonia-N, nitrate+nitrite-N, total phosphorus, and E. coli. In addition, benthic macroinvertebrate communities were analyzed at seven sites, and optical brightener tests were performed late in the season. Results identified segments of the watershed that were more prominent contributors of E. coli, and correlations were observed between levels of E. coli and several chemical parameters, including ammonia-N, total Kjeldahl nitrogen, and total phosphorus. Interestingly, distinct sites emerged as more prominent contributors of these elements during rain vs. non-rain events, suggesting different types of sources. Both the amount of rainfall and the time elapsed between the rain event and the sampling influenced E. coli levels during wet weather conditions. Nitrate+nitrite-N displayed a unique response to rain events compared with the other parameters, suggesting a different delivery route. Analyses of benthic macroinvertebrate communities were consistent with pollution trends. Collectively, these data suggest distinct agriculturally related E. coli contributions, as well as specific areas and practices for water quality improvement strategies. This study can serve as a resource for evaluating agricultural watersheds that are impaired for bacteria.
机译:病原体是美国评估的河流和溪流受损的第一大原因,对人类健康构成重大危害。由于高水平的大肠杆菌细菌,爱荷华州已将受损的爱荷华州干流溪流域定为受损地区。为了调查这种损害的性质,将土地利用和河岸评估与全面的水质监测相结合。在流域的13个不同位置测量了物理,化学和生物学参数,包括pH值,温度,电导率,溶解氧,浊度,凯氏总氮,氨氮,硝酸盐+亚硝酸盐-N,总磷和大肠杆菌。 。此外,在七个地点对底栖大型无脊椎动物群落进行了分析,并在季节后期进行了荧光增白剂测试。结果确定了流域中最主要的大肠杆菌组成部分,并观察到大肠杆菌水平与若干化学参数之间的相关性,其中包括氨氮,凯氏总氮和总磷。有趣的是,在雨天与非雨天相比,不同的地点成为这些元素的主要贡献者,这表明了不同类型的污染源。在潮湿天气条件下,降雨量和降雨事件与采样之间经过的时间都会影响大肠杆菌水平。与其他参数相比,硝酸盐+亚硝酸盐-N对降雨事件表现出独特的响应,表明了不同的传递途径。底栖大型无脊椎动物群落的分析与污染趋势一致。总的来说,这些数据表明了与农业有关的大肠杆菌的独特贡献,以及水质改善策略的特定领域和实践。这项研究可以作为评估受细菌损害的农业流域的资源。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2013年第12期|10395-10420|共26页
  • 作者单位

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

    Iowa State University Extension and Outreach, 2150 Beardshear Hall, Ames, IA 50010, USA;

    Iowa Department of Natural Resources, 109 Trowbridge Hall, Iowa City, IA 52242, USA;

    Iowa State University Extension and Outreach, 2150 Beardshear Hall, Ames, IA 50010, USA;

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

    Department of Biology, Luther College, 700 College Dr, Decorah, IA 52101, USA;

  • 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

    Water quality; E. coli; Livestock; Nitrogen; Phosphorus; Benthic macroinvertebrates;

    机译:水质;大肠杆菌;家畜;氮;磷;底栖大型无脊椎动物;

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