Yang Yu, Lian Xin-Ying, Jiang Yong-Hai, Xi Bei-Dou, He Xiao-Song
State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing.
State Environmental Protection Key Laboratory of Simulation and Control of Groundwater Pollution, Beijing, China.
Integr Environ Assess Manag. 2017 Nov;13(6):1052-1059. doi: 10.1002/ieam.1950. Epub 2017 Jun 24.
Agricultural regions are a significant source of groundwater pesticide pollution. To ensure that agricultural regions with a significantly high risk of groundwater pesticide contamination are properly managed, a risk-based ranking method related to groundwater pesticide contamination is needed. In the present paper, a risk-based prioritization method for the classification of groundwater pesticide pollution from agricultural regions was established. The method encompasses 3 phases, including indicator selection, characterization, and classification. In the risk ranking index system employed here, 17 indicators involving the physicochemical properties, environmental behavior characteristics, pesticide application methods, and inherent vulnerability of groundwater in the agricultural region were selected. The boundary of each indicator was determined using K-means cluster analysis based on a survey of a typical agricultural region and the physical and chemical properties of 300 typical pesticides. The total risk characterization was calculated by multiplying the risk value of each indicator, which could effectively avoid the subjectivity of index weight calculation and identify the main factors associated with the risk. The results indicated that the risk for groundwater pesticide contamination from agriculture in a region could be ranked into 4 classes from low to high risk. This method was applied to an agricultural region in Jiangsu Province, China, and it showed that this region had a relatively high risk for groundwater contamination from pesticides, and that the pesticide application method was the primary factor contributing to the relatively high risk. The risk ranking method was determined to be feasible, valid, and able to provide reference data related to the risk management of groundwater pesticide pollution from agricultural regions. Integr Environ Assess Manag 2017;13:1052-1059. © 2017 SETAC.
农业地区是地下水农药污染的重要来源。为确保对地下水农药污染风险极高的农业地区进行妥善管理,需要一种基于风险的地下水农药污染排名方法。本文建立了一种基于风险的农业地区地下水农药污染分类优先排序方法。该方法包括3个阶段,即指标选择、特征描述和分类。在此采用的风险排名指标体系中,选取了17个指标,涉及农业地区地下水的物理化学性质、环境行为特征、农药施用方法及固有脆弱性。基于对一个典型农业地区的调查以及300种典型农药的物理化学性质,采用K均值聚类分析确定了每个指标的边界。通过将各指标的风险值相乘计算总风险特征,可有效避免指标权重计算的主观性,并识别与风险相关的主要因素。结果表明,一个地区农业造成的地下水农药污染风险可从低到高分为4类。该方法应用于中国江苏省的一个农业地区,结果表明该地区农药对地下水污染的风险相对较高,且农药施用方法是导致该较高风险的主要因素。该风险排名方法被确定为可行、有效,能够为农业地区地下水农药污染风险管理提供相关参考数据。《综合环境评估与管理》2017年;13:1052 - 1059。© 2017 SETAC。