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Correlations between land use and stream nitrate-nitrite concentrations in the Yahara River Watershed in south-central Wisconsin

机译:威斯康星州南 - 中部亚哈拉河流域土地利用与硝酸盐 - 亚硝酸盐浓度的相关性

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摘要

To better inform land management decisions, we explored relationships between land use data and stream nitrate-nitrite (NO_3NO_2) concentration data in the Yahara River Watershed (YRW) in south-central Wisconsin, USA. Three metrics were used to evaluate the extent of different land uses in the watershed: (1) the area percentage of each land use in both the watershed and in a range of riparian zone widths, (2) the area factor, which refers to the ratio of the area of woodland, recreational, open and vacant subdivided land, or wetlands in the riparian zone (6.1-213.4 m widths) to agricultural areas in the rest of watershed, which indicates the buffering capacity of the riparian zone, and (3) the inverse-distance-weighted (IDW) area percentage with proximity to sub-watershed outlet and to stream, which characterizes spatial arrangement in the watershed by assigning a higher weight to patches closer to the outlet or stream and a lower weight to those farther away. We found significant, positive correlations between the extent of agricultural areas and stream NO_3NO_2 concentrations. NO_3NO_2 concentrations were highly correlated to area factor metrics for all riparian zone widths such that as area factor decreased, NO_3NO_2 concentrations increased. There was also a marked increase in NO_3NO_2 concentrations at a threshold of approximately 60% agricultural area with IDW proximity to stream. Wetland area percentage in the entire watershed and IDW wetland area percentage with proximity to stream were negatively correlated to stream NO_3NO_2 concentrations. Compared to the simple area percentage metric, area factor and IDW wetland area percentage with proximity to stream were better indicators of stream NO_3NO_2 concentrations. Results from this study indicate that, in addition to land use area percentage, spatial distributions of land uses should be considered when managing watersheds. This study also demonstrates the value of citizen-based sampling data and reveals opportunities to improve the utility of such data.
机译:为了更好地通知土地管理决策,我们探讨了美国威斯康星州威斯康星州威斯康星州亚哈拉河流域(YRW)的土地利用数据和硝酸盐 - 亚硝酸盐(NO_3NO_2)浓度数据之间的关系。三项指标用于评估流域中不同土地使用的程度:(1)各土地的面积百分比在流域和一系列河岸区宽度,(2)面积因子,这是指的林地面积的比例,休闲,公开和空置的近处土地,或河岸地区的湿地(6.1-213.4米宽)到流域的其余部分,这表明了河岸区的缓冲能力,以及(3 )通过将更高的重量分配到较近出口或流的贴片和较低的贴片,具有邻近的副流域出口和流的逆距离(IDW)面积百分比,其特征在于分散到流域中的空间布置。离开。我们发现农业领域的程度和流NO_3NO_2浓度之间存在显着的正相关性。 NO_3NO_2浓度与所有河岸区宽度的面积因子度量高度相关,使得作为区域因子降低,NO_3NO_2浓度增加。 NO_3NO_2浓度的显着增加,阈值约为60%的农业区域,以IDW靠近流。湿地面积在整个流域和IDW湿地面积百分比,靠近流的百分比与流无关,与流NO_3NO_2浓度负相关。与简单的面积百分比度量,区域因子和IDW湿地面积百分比具有邻近流的百分比,是流NO_3NO_2浓度的更好指标。本研究结果表明,除了土地利用面积百分比外,应在管理流域时考虑土地使用的空间分布。本研究还展示了基于公民的采样数据的价值,并揭示了改善这些数据的效用的机会。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第2期|111535.1-111535.10|共10页
  • 作者单位

    Biological Systems Engineering Department University of Wisconsin-Madison 460 Henry Mall Madison WI 53706 USA;

    Biological Systems Engineering Department University of Wisconsin-Madison 460 Henry Mall Madison WI 53706 USA Department of Soil Science University of Wisconsin-Madison 1525 Observatory Drive Madison WI 53706 USA;

    Biological Systems Engineering Department University of Wisconsin-Madison 460 Henry Mall Madison WI 53706 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nitrate; Water quality; Agriculture; Wetland; Yahara river watershed;

    机译:硝酸盐;水质;农业;湿地;亚哈拉河流域;

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