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Current and Future Environmental Balance of Small-Scale Run-of-River Hydropower

机译:小型流域水电的当前和未来环境平衡

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摘要

Globally, the hydropower (HP) sector has significant potential to increase its capacity by 2050. This study quantifies the energy and resource demands of small-scale HP projects and presents methods to reduce associated environmental impacts based on potential growth in the sector. The environmental burdens of three (50-650 kW) run-of-river HP projects were calculated using life cycle assessment (LCA). The global warming potential (GWP) for the projects to generate electricity ranged from 5.5-8.9 g CO_2 eq/ kWh, compared with 403 g CO_2 eq/kWh for UK marginal grid electricity. A sensitivity analysis accounted for alternative manufacturing processes, transportation, ecodesign considerations, and extended project lifespan. These findings were extrapolated for technically viable HP sites in Europe, with the potential to generate 7.35 TWh and offset over 2.96 Mt of CO_2 from grid electricity per annum. Incorporation of ecodesign could provide resource savings for these HP projects: avoiding 800 000 tonnes of concrete, 10 000 tonnes of steel, and 65 million vehicle miles. Small additional material and energy contributions can double a HP system lifespan, providing 39-47% reductions for all environmental impact categories. In a world of finite resources, this paper highlights the importance of HP as a resource-efficient, renewable energy system.
机译:在全球范围内,水电(HP)部门具有到2050年提高容量的巨大潜力。本研究量化了小型HP项目的能源和资源需求,并根据该部门的潜在增长提出了减少相关环境影响的方法。使用生命周期评估(LCA)计算了三个(50-650 kW)河流上游HP项目的环境负担。发电项目的全球变暖潜能值(GWP)为5.5-8.9 g CO_2当量/千瓦时,而英国的边际电网电力为403 g CO_2当量/千瓦时。敏感性分析考虑了替代制造流程,运输,生态设计考虑因素以及延长的项目寿命。这些发现是根据欧洲在技术上可行的惠普站点推断得出的,这些站点每年可能产生7.35 TWh的电能,并抵消2.96 Mt的CO_2。纳入生态设计可以为这些惠普项目节省资源:避免80万吨混凝土,1万吨钢材和6500万车辆行驶里程。少量的附加材料和能源消耗可以使HP系统的寿命增加一倍,从而为所有环境影响类别减少39-47%。在资源有限的世界中,本文强调了惠普作为资源高效,可再生能源系统的重要性。

著录项

  • 来源
    《Environmental Science & Technology》 |2015年第10期|6344-6351|共8页
  • 作者单位

    School of Environment, Natural Resources, and Geography, Bangor University, Bangor LL57 2DG, Wales;

    School of Environment, Natural Resources, and Geography, Bangor University, Bangor LL57 2DG, Wales;

    Department of Civil, Structural, and Environmental Engineering, Trinity College, Dublin, Dublin 2, Ireland;

    School of Environment, Natural Resources, and Geography, Bangor University, Bangor LL57 2DG, Wales;

  • 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
  • 中图分类
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  • 入库时间 2022-08-17 13:59:43

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