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Development and evaluation of GIS-based ArcPRZM-3 system for spatial modeling of groundwater vulnerability to pesticide contamination

机译:基于GIS的ArcPRZM-3系统的开发和评估,用于地下水对农药污染的脆弱性空间建模

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摘要

The objectives of this study were to develop and evaluate a GIS-based modeling system called ArcPRZM-3 for spatial modeling of pesticide leaching potential from soil surface towards groundwater. The ArcPRZM-3 was developed by coupling a commonly used FORTRAN-based Pesticide Root Zone Model version 3 (PRZM-3) with user-friendly input and output interfaces through links to GIS using customized programming. A Visual PRZM-3 interface simplifies the entry of model inputs and links to the databases of crops, soils, and pesticides. The ArcPRZM-3 produces user-friendly outputs from the PRZM-3 batch simulations in the form of tables, charts, and maps. The Visual PRZM-3 can be used to run a single simulation for site-specific studies or simultaneous multiple simulations for spatial distributed modeling. The ArcPRZM-3 was applied to simulate maximum dissolved bentazon concentration at 0.75 m soil depth for a period of 2 years. These simulation results were used to develop a health risk map for Woodruff County, Arkansas, based on the U.S. Environmental Protection Agency's Lifetime Health Advisory Level (USEPA-LHA) of bentazon in drinking water. The ArcPRZM-3 was evaluated by comparing the bentazon detection data from monitoring wells from the same area with the predicted bentazon health risk map. The results showed that 100% of the wells where bentazon was detected were within the high risk category based on the ArcPRZM-3 predictions. However, uncertainty in the ArcPRZM-3 model and the timing of groundwater well monitoring could both complicate the interpretations of the ArcPRZM-3 simulation results.
机译:这项研究的目的是开发和评估一个称为ArcPRZM-3的基于GIS的建模系统,用于从土壤表面到地下水的农药浸出潜力的空间建模。通过将基于FORTRAN的常用农药根系区域模型版本3(PRZM-3)与用户友好的输入和输出接口(通过使用定制程序的GIS链接)相结合,开发了ArcPRZM-3。 Visual PRZM-3界面简化了模型输入的输入,并链接到农作物,土壤和农药数据库。 ArcPRZM-3通过PRZM-3批处理仿真以表格,图表和地图的形式生成用户友好的输出。 Visual PRZM-3可以用于针对特定地点的研究运行单个模拟,也可以用于空间分布式建模同时运行多个模拟。将ArcPRZM-3应用于模拟0.75 m土壤深度下最大溶解苯达松浓度,为期2年。这些模拟结果用于根据美国环境保护局的饮用水中苯达松的终生健康建议水平(USEPA-LHA)为阿肯色州伍德拉夫县制定健康风险图。通过将来自同一地区的监测井中的苯达松检测数据与预测的苯达松健康风险图进行比较,对ArcPRZM-3进行了评估。结果表明,根据ArcPRZM-3的预测,检测到苯达松的井中有100%位于高风险类别。但是,ArcPRZM-3模型的不确定性和地下水井监测的时间安排可能会使ArcPRZM-3模拟结果的解释复杂化。

著录项

  • 来源
    《Computers & geosciences》 |2011年第7期|p.822-830|共9页
  • 作者单位

    College of Natural Resources, University of Wisconsin-Stevens Point. 2100 Main Street Stevens Point, WI54481-3897, USA, Department of Civil Engineering, Schulich School of Engineering, University of Calgary, 2500 University Drive NW, Calgary, Alberta, T2N 1N4 Canada;

    Department of Crop and Soil Sciences, The Pennsylvania State University, University Park, PA 16802, USA;

    College of Natural Resources, University of Wisconsin-Stevens Point. 2100 Main Street Stevens Point, WI54481-3897, USA;

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

    groundwater; pesticide; gis; arcprzm-3; przm-3; vulnerability assessment; groundwater spatial modeling;

    机译:地下水;农药;gis;arcprzm-3;przm-3;脆弱性评估;地下水空间模拟;

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