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首页> 外文期刊>The International Journal of Life Cycle Assessment >Are large-scale dams environmentally detrimental? Life-cycle environmental consequences of mega-hydropower plants in Myanmar
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Are large-scale dams environmentally detrimental? Life-cycle environmental consequences of mega-hydropower plants in Myanmar

机译:是大型水坝是否环保损害?缅甸兆水电植物的生命周期环境后果

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摘要

Purpose Rivers control biophysical processes that underpin essential ecosystem services. Myanmar's rivers provide great opportunities for increasing energy supply at low costs from hydropower plants and make important contributions to the national economy. However, associated environmental impacts, as well as input and output flows of hydropower developments, remain less well understood. In this paper, we report on an investigation of the overall environmental effects of five hydropower plants in Myanmar, using a life-cycle impact assessment (LCIA) approach. The primary objective of the paper is to generate detailed life-cycle inventory data and quantify the environmental impacts of the existing five hydropower plants in Myanmar.Material and method This paper reports on a "cradle to grave" LCIA for five hydropower plants in which environmental impacts associated with construction, operation and maintenance, transportation, and decommissioning of large-scale hydropower plants in Myanmar were systematically assessed.Results Construction, transportation, operation and maintenance phases are most sensitive to global warming, mineral resource depletion, acidification, freshwater aquatic ecotoxicity, human toxicity and photochemical ozone creation. There is heterogeneity in hydropower plants' effects on the environment, based on the size of the power plant.Conclusion Strategic selection of hydropower projects is suggested to enhance resilience in environmentally sensitive areas. It is concluded that more comprehensive and rigorous environmental and social impact assessment (ESIA) is needed, not only for mega-dams but also for the smaller-scale hydropower plants.
机译:目的河流控制基础生态系统服务的生物物理过程。缅甸的河流为水电站提高能源供应提供了巨大的机会,为国民经济提供了重要贡献。然而,相关的环境影响以及水电发展的投入和输出流量仍然不太了解。在本文中,我们使用生命周期影响评估(LCIA)方法报告了缅甸五种水电植物整体环境影响的调查。本文的主要目的是产生详细的生命周期库存数据,并量化现有的五水电站在缅甸现有的五水电站的环境影响。这篇论文报告了一个环境的五个水电站的“摇篮到坟墓”LCIA系统地评估了与缅甸大型水电站的建设,运营和维护,运输和退役相关的影响。结果建设,运输,运营和维持阶段对全球变暖,矿产资源耗尽,酸化,淡水生态毒性最敏感,人类毒性和光化学臭氧的创作。基于电厂的大小,水电站对环境的影响有异质性。建议改善水电项目的战略选择,增强环境敏感区域的抵御能力。得出结论,需要更全面和严格的环境和社会影响评估(ESIA),不仅适用于巨型水坝,而且需要为较小的水电站。

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  • 来源
    《The International Journal of Life Cycle Assessment 》 |2020年第9期| 1749-1766| 共18页
  • 作者单位

    Harvard Univ Fac Arts & Sci Asia Ctr CGIS South 1730 Cambridge St Cambridge MA 02138 USA|Int Islamic Univ Malaysia Fac Engn Dept Biotechnol Engn Jalan Gombak Kuala Lumpur 53100 Malaysia;

    Univ Liverpool Environm Assessment & Management Res Ctr Sch Environm Sci Liverpool L69 7ZQ Merseyside England|North West Univ Fac Nat & Agr Sci Res Unit Environm Sci & Management Potchefstroom South Africa;

    Int Islamic Univ Malaysia Fac Engn Dept Biotechnol Engn Jalan Gombak Kuala Lumpur 53100 Malaysia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Renewable energy; Hydropower; Myanmar; LCIA; Environment; Mega-dams;

    机译:可再生能源;水电;缅甸;LCIA;环境;巨型水坝;

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