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Nitrate Relationships between Stream Baseflow Well Water and Land Use in the Tomorrow-Waupaca Watershed

机译:明天-沃帕卡河流域的河流底流井水和土地利用之间的硝酸盐关系

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摘要

We examined the use of stream baseflow water quality as a representative measure of mean ground water quality in the Tomorrow-Waupaca Watershed in central Wisconsin and the relationship between agricultural land use and watershed water quality. From 1997 to 1999, 38 stream sites were sampled for nitrate during winter and summer baseflow conditions. Some sites have been sampled during winter baseflow conditions since 1994. The land area contributing ground water to each stream sampling site was delineated, resulting in 38 sub-basins. In addition, over 3500 test results from private wells in the watershed were compiled and mapped using a Geographic Information System (GIS). Nitrate concentrations in stream baseflow and well waters were found to have strong positive correlation in the sub-basins of second order or higher. This indicates that stream baseflow may be valid for monitoring mean ground water quality in watersheds predominantly fed by ground water, where much of the stream nitrate is believed to originate from ground water. Analysis of seasonal variation in the stream data showed that winter nitrate concentrations were higher than summer concentrations, implying that winter stream monitoring may be more critical for the assessment of overall ground water quality in the watershed. We also found that, as the amount of agricultural land increased in each sub-basin, average nitrate concentrations in the well and stream waters also increased, suggesting a connection between agricultural land use and nitrate contamination of water resources in the watershed.
机译:我们研究了使用河流底流水质作为威斯康星州中部Tomorrow-Waupaca流域平均地下水质量的代表度量,以及农业土地利用与流域水质之间的关系。从1997年到1999年,在冬季和夏季的底流条件下,对38个溪流场进行了硝酸盐采样。自1994年以来,已经在冬季底流条件下对一些场地进行了采样。划定了向每个溪流采样点贡献地下水的土地面积,形成了38个子流域。此外,使用地理信息系统(GIS)汇总并绘制了流域私人井的3500多个测试结果。在二阶或更高阶次流域中,发现河流底流和井水中的硝酸盐浓度具有很强的正相关性。这表明,在主要由地下水给水的流域中,河流底流对于监测平均地下水质量可能是有效的,据信其中大部分硝酸盐流来自地下水。河流数据的季节性变化分析表明,冬季硝酸盐浓度高于夏季浓度,这意味着冬季河流监测对于评估流域整体地下水质量可能更为关键。我们还发现,随着每个子流域农业土地数量的增加,井和溪流水中的平均硝酸盐浓度也增加了,这表明农业土地利用与流域水资源的硝酸盐污染之间存在联系。

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