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Spatially and Temporally Explicit Life Cycle Environmental Impacts of Soybean Production in the U.S. Midwest

机译:美国中西部地区大豆生产的时空显性生命周期环境影响

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摘要

Understanding spatially and temporally explicit life cycle environmental impacts is critical for designing sustainable supply chains for biofuel and animal sectors. However, annual life cycle environmental impacts of crop production at county scale across mutiple years are lacking. To address this knowledge gap, this study used a combination of Environmental Policy Integrated Climate and process-based life cycle assessment models to quantify life cycle global warming (GWP), eutrophication (EU) and acidification (AD) impacts of soybean production in nearly 1000 Midwest counties yr~(-1) over 9 years. Sequentially, a machine learning approach was applied to identify the top influential factors among soil, climate, and farming practices, which drive the spatial and temporal heterogeneity of life cycle environmental impacts. The results indicated that significant variations existed in life cycle GWP, EU, and AD among counties and across years. Life cycle GWP impacts ranged from -11.4 to 22.0 kg CO_2-eq kg soybean"1, whereas life cycle EU and AD impacts varied by factors of 302 and 44, respectively. Nitrogen application rates, temperature in March and soil texture were the top influencing factors for life cycle GWP impacts. In contrast, soil organic content and nitrogen application rate were the top influencing factors for life cycle EU and AD impacts.
机译:了解空间和时间上明确的生命周期环境影响对于设计生物燃料和动物部门的可持续供应链至关重要。但是,缺乏跨多个年份的县级农作物的年度生命周期环境影响。为了解决这一知识鸿沟,本研究结合了环境政策综合气候和基于过程的生命周期评估模型,以量化近1000年中大豆生产的生命周期对全球变暖(GWP),富营养化(EU)和酸化(AD)的影响中西部县yr〜(-1)超过9年。因此,应用了机器学习方法来确定土壤,气候和耕作方式之间的主要影响因素,这些因素会影响生命周期环境影响的时空异质性。结果表明,各县之间以及跨年份的生命周期GWP,EU和AD存在显着差异。生命周期GWP影响范围是-11.4至22.0 kg CO_2-eq kg大豆“ 1,而生命周期EU和AD影响分别变化了302和44倍。氮素施用量,3月的温度和土壤质地是影响最大的因素。生命周期全球升温潜能值影响的因素;相反,土壤有机物含量和氮素施用量是影响生命周期欧盟和公元影响的主要因素。

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  • 来源
    《Environmental Science & Technology》 |2020年第8期|4758-4768|共11页
  • 作者单位

    Department of Environmental Health Sciences University at Albany State University of New York One University Place Rensselaer New York 12144 United States;

    Joint Global Change Research Institute Pacific Northwest National Laboratory College Park Maryland 20740 United States Earth System Sciences Interdisciplinary Center College Park Maryland 20740 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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