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Life-cycle comparison of greenhouse gas emissions and water consumption for coal and shale gas fired power generation in China

机译:中国燃煤和页岩气发电的温室气体排放量与用水量的生命周期比较

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摘要

China has the world's largest shale gas reserves, which might enable it to pursue a new pathway for electricity generation. This study employed hybrid LCI (life cycle inventory) models to quantify the ETW (extraction-to-wire) GHG (greenhouse gas) emissions and water consumption per kWh of coal- and shale gas-fired electricity in China. Results suggest that a coal-to-shale gas shift and upgrading coal-fired power generation technologies could provide pathways to less GHG and water intensive power in China. Compared to different coal-fired generation technologies, the ETW GHG emissions intensity of gas-fired CC (combined cycle) technology is 530 g CO(2)e/kWh, which is 38-45% less than China's present coal-fired electricity. Gas-fired CT (combustion turbine) technology has the lowest ETW water consumption intensity at 960 g/kWh, which is 34-60% lower than China's present coal-fired electricity. The GHG-water tradeoff of the two gas-fired power generation technologies suggests that gas-fired power generation technologies should be selected based on regional-specific water resource availabilities and electricity demand fluctuations in China. However, the low price of coal-fired electricity, high cost of shale gas production, insufficient pipeline infrastructures, and multiple consumers of shale gas resources may serve as barriers to a coal-to-shale gas shift in China's power sector in the near term. (C) 2015 Elsevier Ltd. All rights reserved.
机译:中国拥有世界上最大的页岩气储量,这可能使其能够走上一条新的发电道路。这项研究采用混合生命周期清单模型(LCI)对中国的煤电和页岩气发电的每千瓦时ETW(提取到电线)GHG(温室气体)排放和水消耗进行了量化。结果表明,从煤到页岩气转换和升级燃煤发电技术可以为中国减少温室气体和水耗大的电力提供途径。与不同的燃煤发电技术相比,燃气CC(联合循环)技术的ETW温室气体排放强度为530 g CO(2)e / kWh,比中国目前的燃煤电力低38-45%。燃气CT(燃气轮机)技术的ETW耗水强度最低,为960 g / kWh,比中国目前的燃煤电力低34-60%。两种燃气发电技术在温室气体与水之间的权衡表明,应根据中国特定地区的水资源利用率和电力需求波动来选择燃气发电技术。然而,燃煤电价低廉,页岩气生产成本高,管道基础设施不足以及页岩气资源的众多消费者可能在短期内成为中国电力行业煤改气的障碍。 。 (C)2015 Elsevier Ltd.保留所有权利。

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  • 来源
    《Energy》 |2015年第15期|335-343|共9页
  • 作者单位

    Cent Univ Finance & Econ, Sch Management Sci & Engn, Beijing 100081, Peoples R China;

    Northwestern Univ, Robert R McCormick Sch Engn & Appl Sci, Evanston, IL 60208 USA;

    Univ Florida, ME Rinker Sr Sch Bldg Construct, Gainesville, FL 32611 USA;

    Northwestern Univ, Robert R McCormick Sch Engn & Appl Sci, Evanston, IL 60208 USA;

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

    Coal; Shale gas; Electric power generation; Life cycle assessment;

    机译:煤炭;页岩气;电力发电;生命周期评估;

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