System Modeling and Sensitivity Analysis of the Iowa Food-Water-Energy Nexus

Vishal Raul, Leifur Þ. Leifsson, A. Kaleita
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引用次数: 1

Abstract

The state of Iowa has long been recognized as a significant contributor of nitrogen loads to the Mississippi river basin. The nitrogen loads are mainly in the form of nitrates arising from high yield agriculture and animal agriculture. With excessive water flowing through the water system of Iowa, the surplus nitrogen in the soil gets carried into the Mississippi river basin and ultimately to the Gulf of Mexico, resulting in the generation of a hypoxic zone having a detrimental impact on the environment. Iowa is a leading producer of corn, soybean, animal products, and ethanol; hence, agriculture and animal agriculture are well rooted in its economy. With increasing ethanol demands, high yield agricultural practices, growing animal agriculture, and a connected economy, there is a need to understand the interdependencies of the Iowa food-energy-water (IFEW) nexus. In this work, a model of the IFEW system interdependencies is proposed and used as the basis for a computational system model, which can be used to guide decision-makers for improved policy formation to mitigate adverse impacts of the nitrogen export on the environment and economy. Global sensitivity analysis of the proposed IFEW system model reveals that the commercial nitrogen application rate for corn and corn yield are the critical parameters affecting nitrogen surplus in soil.
爱荷华州食物-水-能源关系的系统建模和敏感性分析
爱荷华州长期以来一直被认为是密西西比河流域氮负荷的重要贡献者。氮负荷主要以高产农业和畜牧业产生的硝酸盐形式存在。由于过量的水流经爱荷华州的水系,土壤中多余的氮被带入密西西比河流域,最终进入墨西哥湾,导致缺氧区产生,对环境产生有害影响。爱荷华州是玉米、大豆、动物产品和乙醇的主要产地;因此,农业和畜牧业在其经济中根深蒂固。随着乙醇需求的增加、高产农业实践、畜牧业的发展和互联经济的发展,有必要了解爱荷华州食物-能源-水(IFEW)关系的相互依赖关系。在这项工作中,提出了IFEW系统相互依赖的模型,并将其作为计算系统模型的基础,该模型可用于指导决策者改进政策制定,以减轻氮出口对环境和经济的不利影响。对IFEW系统模型的全局敏感性分析表明,玉米的商业施氮量和玉米产量是影响土壤氮过剩的关键参数。
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