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柑橘农场地下环境中嗪草酮迁移与归宿模型的比较

Comparison of models of simazine transport and fate in the subsurface environment in a citrus farm.

作者信息

Chang Ni-Bin, Srilakshmi K R, Parvathinathan G

机构信息

Department of Civil and Environmental Engineering, University of Central Florida, Orlando FL 32816, USA.

出版信息

J Environ Manage. 2008 Jan;86(1):27-43. doi: 10.1016/j.jenvman.2006.11.020. Epub 2007 Jan 22.

Abstract

Contamination of groundwater by agrochemicals is now widely recognized as an extremely important environmental problem. Modern agricultural practices involve the combined use of irrigation with the application of large amounts of agrochemicals to maximize crop yield. Due to flood irrigation and natural runoff, agricultural activities might generate soil, surface water and groundwater contamination problems and leaching of pesticides. Modeling of the transport and fate of pesticides, such as simazine, may help understand the long-term potential risk to the subsurface environment. This paper illustrates a comparative study via the use of three different pesticide transport simulation models and the applicability of those models in determining the groundwater vulnerability to pesticides contamination in a citrus orchard located at the Lower Rio Grande Valley (LRGV). The three models used in the study are the pesticide root zone model-3 (PRZM-3), the pesticide analytical model (PESTAN) and integrated pesticide transport modeling (IPTM). The concentration values obtained from all three models are in agreement, and they show a decreasing trend from the surface through the vadose zone. The problem is how to use this information and, specifically, how to combine the testimony of a number of experts into a single useful judgment. With the aid of the fuzzy multiattribute decision making method, PRZM-3 is deemed as the most promising one for such precision farming applications.

摘要

农用化学品对地下水的污染如今已被广泛认为是一个极其重要的环境问题。现代农业实践包括将灌溉与大量农用化学品的施用相结合,以实现作物产量最大化。由于漫灌和自然径流,农业活动可能会产生土壤、地表水和地下水污染问题以及农药的淋溶。对农药(如西玛津)的迁移和归宿进行建模,可能有助于了解对地下环境的长期潜在风险。本文通过使用三种不同的农药迁移模拟模型以及这些模型在确定位于下里奥格兰德河谷(LRGV)的柑橘园中地下水对农药污染的脆弱性方面的适用性,进行了一项比较研究。该研究中使用的三种模型分别是农药根区模型 - 3(PRZM - 3)、农药分析模型(PESTAN)和综合农药迁移建模(IPTM)。从所有三种模型获得的浓度值是一致的,并且它们显示出从地表到包气带呈下降趋势。问题在于如何利用这些信息,特别是如何将多位专家的意见整合为一个有用的单一判断。借助模糊多属性决策方法,PRZM - 3被认为是此类精准农业应用中最有前景的模型。

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