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An LCA-Based Environmental Performance of Rice Production for Developing a Sustainable Agri-Food System in Malaysia

机译:基于LCA的水稻生产环境绩效,在马来西亚开发可持续农业食品系统

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摘要

This study aims to assess the environmental impacts of conventional and organic rice cultivations and proposes a sustainable conceptual framework of rice fanning based on the life cycle assessment (LCA) approach. A cradle-to-gate LCA was performed by using the ReCiPe 2016 method and SimaPro 8.5 software. The functional unit was one ton of rice grains harvested. Primary data were obtained from the farmer, while secondary data were collected from Ecoinvent 3.0, the Agri Footprint 3.0 database and the literature. The total characterization factors for global wanning potential (GWP), water consumption potential (WCP) and fossil fuel depletion potential (FFP) were 457.89 kg CO_2-eq, 98.18 m3 and 84.56 kg oil-eq, respectively, at the midpoint level for conventional rice, while the impacts for organic rice were 140.55 kg CO_2-eq, 29.45 m~3 and 22.25 kg oil-eq, respectively. At the endpoint level, the total characterization factors for human health damage (HH), ecosystem damage (ED) and resource availability (RA) for conventional rice were 9.63 × 10~(-4) DALY, 5.54 × 10~(-6) species.year and 30.98 Dollar, respectively, while for organic rice, the impacts were 2.60 × 10~(-4) DALY, 2.28 × 10~(-6) species, year and 8.44 Dollar, respectively. Rice cultivation impacted the environment, particularly in relation to three impact categories: GWP, WCP and FFP. The cultivation phase of rice production was the main contributor to environmental impacts due to the production and application of fertilizer and pesticides. It can be concluded that the application of LCA in agricultural sector is able to provide information and responses for policy makers in understanding the potential environmental impacts at various spatial levels.
机译:本研究旨在评估常规和有机水稻种植的环境影响,并提出基于生命周期评估(LCA)方法的水稻扇形可持续概念框架。通过使用配方2016方法和SimaPro 8.5软件进行摇篮到门LCA。功能单位是收获的一吨米粒。从农民获得主要数据,而次要数据从EcoInvent 3.0收集,Agri占地面积3.0数据库和文献。全球瓦宁电位(GWP),耗水电位(WCP)和化石燃料耗尽电位(FFP)的总表征因子分别在常规的中点水平下分别为457.89kg CO_2-EQ,98.18m 3和84.56千克油。米饭,而有机水稻的影响分别为140.55千克CO_2-EQ,29.45 m〜3和22.25千克油。在终点级别,用于常规水稻的人体健康损伤(HH),生态系统损伤(ED)和资源可用性(RA)的总表征因素为9.63×10〜(-4)达利,5.54×10〜(-6)物种.YEAR分别为30.98美元,同时为有机稻,影响为2.60×10〜(-4)达利,2.28×10〜(-6)种,年和8.44美元。水稻种植对环境影响,特别是三个影响类别:GWP,WCP和FFP。由于肥料和农药的生产和应用,水稻产量的培养阶段是环境影响的主要原因。可以得出结论,LCA在农业部门的应用能够为政策制定者提供信息和反应,以了解各种空间水平的潜在环境影响。

著录项

  • 来源
    《Environmental Management》 |2021年第1期|146-161|共16页
  • 作者单位

    Department of Earth Sciences and Environment Faculty of Science and Technology Universiti Kebangsaan Malaysia 43600 Bangi Selangor Malaysia;

    Department of Earth Sciences and Environment Faculty of Science and Technology Universiti Kebangsaan Malaysia 43600 Bangi Selangor Malaysia Centre for Tropical Climate Change System Institute of Climate Change Universiti Kebangsaan Malaysia. 43600 Bangi Selangor Malaysia;

    Department of Earth Sciences and Environment Faculty of Science and Technology Universiti Kebangsaan Malaysia 43600 Bangi Selangor Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Life cycle assessment; Rice production; Organic farming; Conventional farming; Sustainability;

    机译:生命周期评估;稻米生产;有机耕作;常规农业;可持续性;

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