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用于生物基生产的玉米-大豆农业生态系统的生命周期。

Life cycle of the corn-soybean agroecosystem for biobased production.

作者信息

Landis Amy E, Miller Shelie A, Theis Thomas L

机构信息

Institute for Environmental Science and Policy, University of Illinois at Chicago, Chicago, Illinois 60612, USA.

出版信息

Environ Sci Technol. 2007 Feb 15;41(4):1457-64. doi: 10.1021/es0606125.

Abstract

Biobased product life cycle assessments (LCAs) have focused largely on energy (fossil fuel) usage and greenhouse gas emissions during the agriculture and production stages. This paper compiles a more comprehensive life cycle inventory (LCI) for use in future bioproduct LCAs that rely on corn or soybean crops as feedstocks. The inventory includes energy, C, N, P, major pesticides, and U.S. EPA criteria air pollutants that result from processes such as fertilizer production, energy production, and on-farm chemical and equipment use. Agroecosystem material flows were modeled using a combination of GREET (the Greenhouse Gases, Regulated Emissions, and Energy Use in Transportation model), a linear fractionation model that describes P biogeochemical cycling, and Monte Carlo Analysis. Results show that the dominant air emissions resulted from crop farming, fertilizers, and on-farm nitrogen flows (e.g., N20 and NO). Seed production and irrigation provided no more than 0.002% to any of the inventory emissions or energy flows and may be neglected in future LCAs of corn or soybeans as feedstocks from the U.S. Corn Belt. Lime contributes significantly (17% of total emissions) to air emissions and should not be neglected in bioproduct LCAs.

摘要

基于生物的产品生命周期评估(LCA)主要关注农业和生产阶段的能源(化石燃料)使用和温室气体排放。本文编制了一份更全面的生命周期清单(LCI),用于未来以玉米或大豆作物为原料的生物产品LCA。该清单包括能源、碳、氮、磷、主要农药以及美国环境保护局(EPA)标准空气污染物,这些污染物来自肥料生产、能源生产以及农场化学品和设备使用等过程。农业生态系统物质流通过GREET(交通模型中的温室气体、受控排放和能源使用)、描述磷生物地球化学循环的线性分馏模型以及蒙特卡罗分析相结合的方式进行建模。结果表明,主要的空气排放来自作物种植、肥料和农场氮流(如N2O和NO)。种子生产和灌溉对清单中的任何排放或能量流的贡献均不超过0.002%,在未来以美国玉米带的玉米或大豆为原料的LCA中可忽略不计。石灰对空气排放有显著贡献(占总排放量的17%),在生物产品LCA中不应被忽视。

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