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首页> 外文期刊>The Science of the Total Environment >Potential pollutant sources in a Choptank River (USA) subwatershed and the influence of land use and watershed characteristics
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Potential pollutant sources in a Choptank River (USA) subwatershed and the influence of land use and watershed characteristics

机译:美国Choptank河小流域的潜在污染物源以及土地利用和流域特征的影响

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摘要

Row-crop and poultry production have been implicated as sources of water pollution along the Choptank River, an estuary and tributary of the Chesapeake Bay. This study examined the effects of land use, subwatershed characteristics, and climatic conditions on the water quality parameters of a subwatershed in the Choptank River watershed. The catchments within the subwatershed were defined using advanced remotely-sensed data and current geographic information system processing techniques. Water and sediment samples were collected in May-October 2009 and April-June 2010 under mostly baseflow conditions and analyzed for select bacteria, nitrate-N, ammonium-N, total arsenic, total phosphorus (TP), orthophosphate (ortho-P), and particle-phase phosphorus (PP); n = 96 for all analytes except for arsenic, n = 136, and for bacteria, n = 89 (aqueous) and 62 (sediment). Detections of Enterococci and Escherichia coli concentrations were ubiquitous in this subwatershed and showed no correlation to location or land use, however larger bacterial counts were observed shortly after precipitation. Nitrate-N concentrations were not correlated with agricultural lands, which may reflect the small change in percent agriculture and/or the similarity of agronomic practices and crops produced between catchments. Concentration data suggested that ammonia emission and possible deposition to surface waters occurred and that these processes may be influenced by local agronomic practices and climatic conditions. The negative correlation of PP and arsenic concentrations with percent forest was explained by the stronger signal of the head waters and overland flow of paniculate phase analytes versus dissolved phase inputs from groundwater. Service roadways at some poultry production facilities were found to redirect runoff from the facilities to neighboring catchment areas, which affected water quality parameters. Results suggest that in this subwatershed, catchments with poultry production facilities are possible sources for arsenic and PP as compared to catchment areas where these facilities were not present.
机译:切普坦克河(切萨皮克湾的河口和支流)沿岸的水污染源涉及到农作物和家禽生产。这项研究调查了Choptank河流域的一个土地流域的土地利用,子流域特征和气候条件对子流域水质参数的影响。使用先进的遥感数据和当前的地理信息系统处理技术定义了小流域内的流域。在2009年5月至10月和2010年4月至2010年6月的大部分底流条件下收集了水和沉积物样品,并分析了所选细菌,硝酸盐氮,铵态氮,总砷,总磷(TP),正磷酸盐(ortho-P),和颗粒相磷(PP);除砷外,所有分析物的n = 96,n = 136,细菌,n = 89(水)和62(沉积物)。在该小流域普遍存在肠球菌和大肠杆菌浓度的检测,与位置或土地利用无关,但是在沉淀后不久观察到较大的细菌数。硝酸盐氮浓度与耕地无关,这可能反映了农业百分比的微小变化和/或集水区之间农作方法和农作物的相似性。浓度数据表明发生氨排放和可能沉积到地表水中,并且这些过程可能受到当地农艺实践和气候条件的影响。 PP和砷浓度与森林百分比之间的负相关关系可以通过源头水和颗粒相分析物的陆上流动相对于地下水溶解相输入的较强信号来解释。发现一些家禽生产设施的服务巷道将径流从设施转移到邻近的集水区,从而影响了水质参数。结果表明,在该小流域,与没有禽类生产设施的集水区相比,禽类生产设施的集水区可能是砷和PP的来源。

著录项

  • 来源
    《The Science of the Total Environment》 |2012年第15期|p.270-279|共10页
  • 作者单位

    Department of Civil and Environmental Engineering, University of Maryland, College Park, MD, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, MD 20705, USA;

    Department of Geography, University of Maryland, College Park, MD, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, MD 20705, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, MD 20705, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, MD 20705, USA;

    United States Geological Survey (USCS), Eastern Science Research Center, Reston, VA, USA;

    United States Department of Agriculture (USDA)-Agricultural Research Service (ARS), 10300 Baltimore Avenue, Beltsville, MD 20705, USA;

    USDA, Forest Service, Northern Research Station, Beltsville, MD, USA;

    Department of Civil and Environmental Engineering, University of Maryland, College Park, MD, USA;

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

    chesapeake bay; water quality; nutrients; arsenic; poultry production; land use;

    机译:切萨皮克湾水质;营养素砷;家禽生产;土地利用;

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