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PURE: A web-based decision support system to evaluate pesticide environmental risk for sustainable pest management practices in California

机译:PURE:基于网络的决策支持系统,可评估农药环境风险,以评估加利福尼亚州的可持续虫害管理实践

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摘要

Farmers, policy makers, and other stakeholders seek tools to quantitatively assess pesticide risks for mitigating pesticide impacts on ecosystem and human health. This paper presents the Pesticide Use Risk Evaluation (PURE) decision support system (DSS) for evaluating site-specific pesticide risks to surface water, groundwater, soil, and air across pesticide active ingredient (AI), pesticide product, and field levels. The risk score is determined by the ratio of the predicted environmental concentrations (PEC) to the toxicity value for selected endpoint organism(s); except that the risk score for the air is calculated using the emission potential (EP), which is a pesticide product property for estimating potential volatile organic compound (VOC) emissions by California Environmental Protection Agency (CEPA). The risk scores range from 0 to 100, where 0 represents negligible risk while 100 means the highest risk. The procedure for calculating PEC in surface water was evaluated against monitoring data for 41 pesticide AIs, with a statistically significant correlation coefficient of r=0.82 (p< 0.001). In addition, two almond fields in the Central Valley, California were evaluated for pesticide risks as a case study, where the commonly acknowledged high-risk pesticides gained high risk scores. Simazine, one of the most frequently detected pesticides in groundwater, was scored as 74 (the moderate high risk class) to groundwater; and chlorpyrifos, one of the frequently detected pollutants in surface water, was scored as 100 (the high risk class) to surface water. In support of pesticide risk quantitative assessment and use of reduced-risk pesticide selection, the PURE-DSS can be useful to assist growers, pesticide control advisors, and environmental protection organizations in mitigating pesticide use impacts on the environment.
机译:农民,决策者和其他利益相关者寻求工具来定量评估农药风险,以减轻农药对生态系统和人类健康的影响。本文介绍了农药使用风险评估(PURE)决策支持系统(DSS),用于评估针对农药活性成分(AI),农药产品和田间水平的地表水,地下水,土壤和空气的特定农药风险。风险评分取决于所选终点生物的预测环境浓度(PEC)与毒性值的比值;除了空气的风险分数是使用排放潜能值(EP)计算的,排放潜能值是农药产品的一种属性,用于估算加利福尼亚环境保护局(CEPA)的潜在挥发性有机化合物(VOC)排放量。风险评分范围是0到100,其中0表示可忽略的风险,而100表示​​最高风险。根据41种农药AIs的监测数据评估了地表水中PEC的计算方法,其相关系数为r = 0.82(p <0.001),具有统计学意义。另外,作为案例研究,对加利福尼亚中央谷地的两个杏仁田进行了农药风险评估,其中公认的高风险农药获得了较高的风险评分。 Simazine是地下水中最常见的农药之一,其对地下水的得分为74(中度高风险等级)。毒死rif是地表水中常见的污染物之一,其地表水的得分为100(高风险类别)。为了支持农药风险定量评估和降低风险的农药选择,PURE-DSS可以帮助种植者,农药控制顾问和环保组织减轻农药使用对环境的影响。

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