The Nitrogen Footprint Tool Network: A Multi-Institution Program To Reduce Nitrogen Pollution.

Elizabeth A Castner, Allison M Leach, Neil Leary, Jill Baron, Jana E Compton, James N Galloway, Meredith G Hastings, Jacob Kimiecik, Jonathan Lantz-Trissel, Elizabeth de la Reguera, Rebecca Ryals
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引用次数: 21

Abstract

Anthropogenic sources of reactive nitrogen have local and global impacts on air and water quality and detrimental effects on human and ecosystem health. This article uses the Nitrogen Footprint Tool (NFT) to determine the amount of nitrogen (N) released as a result of institutional consumption. The sectors accounted for include food (consumption and upstream production), energy, transportation, fertilizer, research animals, and agricultural research. The NFT is then used for scenario analysis to manage and track reductions, which are driven by the consumption behaviors of both the institution itself and its constituent individuals. In this article, the first seven completed institution nitrogen footprint results are presented. The Nitrogen Footprint Tool Network aims to develop footprints for many institutions to encourage widespread upper-level management strategies that will create significant reductions in reactive nitrogen released to the environment. Energy use and food purchases are the two largest sectors contributing to institution nitrogen footprints. Ongoing efforts by institutions to reduce greenhouse gas emissions also help to reduce the nitrogen footprint, but the impact of food production on nitrogen pollution has not been directly addressed by the higher education sustainability community. The Nitrogen Footprint Tool Network found that institutions could reduce their nitrogen footprints by optimizing food purchasing to reduce consumption of animal products and minimize food waste, as well as by reducing dependence on fossil fuels for energy.

Abstract Image

Abstract Image

氮足迹工具网络:减少氮污染的多机构计划。
活性氮的人为来源对空气和水质产生局部和全球影响,并对人类和生态系统健康产生有害影响。本文使用氮足迹工具(NFT)来确定由于机构消耗而释放的氮量。这些部门包括食品(消费和上游生产)、能源、运输、肥料、研究动物和农业研究。然后将NFT用于情景分析,以管理和跟踪由机构本身及其组成个体的消费行为驱动的减少。在本文中,介绍了前七个完成的机构氮足迹结果。氮足迹工具网络旨在为许多机构开发足迹,以鼓励广泛的高层管理战略,从而显著减少释放到环境中的活性氮。能源使用和食品购买是造成机构氮足迹的两个最大部门。机构减少温室气体排放的持续努力也有助于减少氮足迹,但粮食生产对氮污染的影响尚未由高等教育可持续性社区直接解决。氮足迹工具网络发现,机构可以通过优化食品采购,减少动物产品的消费,最大限度地减少食物浪费,以及减少对化石燃料的能源依赖,来减少其氮足迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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