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用于生态系统风险评估的地理参考建模环境:农业主导流域中的有机磷农药

A geo-referenced modeling environment for ecosystem risk assessment: organophosphate pesticides in an agriculturally dominated watershed.

作者信息

Luo Yuzhou, Zhang Minghua

机构信息

Wenzhou Medical College, Wenzhou 325035, China.

出版信息

J Environ Qual. 2009 Feb 25;38(2):664-74. doi: 10.2134/jeq2008.0216. Print 2009 Mar-Apr.

Abstract

A geo-referenced modeling system was developed in this study to investigate the spatiotemporal variability of pesticide distributions and associated ecosystem risks. In the modeling system, pesticide fate and transport processes in soil-canopy system were simulated at field scale by the pesticide root zone model (PRZM). Edge-of-field mass fluxes were up-scaled with a spatially distributed flow-routing model to predict pesticide contaminations in surface water. The developed model was applied to the field conditions of the Orestimba Creek watershed, an agriculturally-dominated area in California's Central Valley during 1990 through 2006, with the organophosphate insecticides diazinon and chlorpyrifos as test agents. High concentrations of dissolved pesticides were predicted at the watershed outlet during the irrigation season of April through November, due to the intensive pesticide use and low stream flow. Concentration violations, according to the California aquatic life criteria, were observed for diazinon before 2001, and for chlorpyrifos during the entire simulation period. Predicted pesticide exposure levels showed potential adverse effects on certain genera of sensitive aquatic invertebrates in the ecosystem of the Orestimba Creek. Modeling assessments were conducted to identify the factors governing spatial patterns and seasonal trends on pesticide distribution and contamination potentials to the studied aquatic ecosystem. Areas with high pesticide yields to surface water were indicated for future research and additional studies focused on monitoring and mitigation efforts within the watershed. Improved irrigation techniques and management practices were also suggested to reduce the violations of pesticide concentrations during irrigation seasons.

摘要

本研究开发了一种地理参考建模系统,以调查农药分布的时空变异性及相关的生态系统风险。在该建模系统中,通过农药根区模型(PRZM)在田间尺度模拟了土壤-冠层系统中农药的归宿和迁移过程。利用空间分布式水流路径模型对田间边缘质量通量进行尺度放大,以预测地表水中的农药污染情况。所开发的模型应用于奥雷斯廷巴溪流域的田间条件,该流域是加利福尼亚中央谷地以农业为主的地区,研究时段为1990年至2006年,以有机磷杀虫剂二嗪农和毒死蜱作为测试药剂。由于农药使用强度大且溪流流量低,预计在4月至11月的灌溉季节,流域出口处溶解农药的浓度会很高。根据加利福尼亚水生生物标准,在2001年之前观察到二嗪农存在浓度超标情况,在整个模拟期内毒死蜱也存在浓度超标情况。预测的农药暴露水平显示,对奥雷斯廷巴溪生态系统中某些敏感水生无脊椎动物属具有潜在不利影响。进行了建模评估,以确定控制农药分布的空间格局和季节趋势以及对所研究水生生态系统污染潜力的因素。指出了地表水农药产量高的区域以供未来研究,并开展了更多侧重于流域内监测和缓解措施的研究。还建议改进灌溉技术和管理措施,以减少灌溉季节农药浓度超标情况。

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