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Comparative Human Toxicity Impact of Electricity Produced from Shale Gas and Coal

机译:页岩气和煤产生的电力对人类毒性的比较影响

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摘要

The human toxicity impact (HTI) of electricity produced from shale gas is lower than the HTI of electricity produced from coal, with 90% confidence using a Monte Carlo Analysis. Two different impact assessment methods estimate the HTI of shale gas electricity to be 1—2 orders of magnitude less than the HTI of coal electricity (0.016-0.024 DALY/ GWh versus 0.69-1.7 DALY/GWh). Further, an implausible shale gas scenario where all fracturing fluid and untreated produced water is discharged directly to surface water throughout the lifetime of a well also has a lower HTI than coal electricity. Particulate matter dominates the HTI for both systems, representing a much larger contribution to the overall toxicity burden than VOCs or any aquatic emission. Aquatic emissions can become larger contributors to the HTI when waste products are inadequately disposed or there are significant infrastructure or equipment failures. Large uncertainty and lack of exposure data prevent a full risk assessment; however, the results of this analysis provide a comparison of relative toxicity, which can be used to identify target areas for improvement and assess potential trade-offs with other environmental impacts.
机译:页岩气发电的人类毒性影响(HTI)低于煤炭发电的HTI,使用蒙特卡洛分析具有90%的置信度。两种不同的影响评估方法估计页岩气电力的HTI比煤炭电力的HTI小1-2个数量级(0.016-0.024 DALY / GWh与0.69-1.7 DALY / GWh)。此外,在整个生命周期内,所有压裂液和未处理的采出水都直接排放到地表水中的页岩气场景令人难以置信,它的HTI也比煤电低。颗粒物在两个系统的HTI中均占主导地位,对总毒性负担的贡献比VOC或任何水生排放物大得多。当废物处理不当或基础设施或设备出现重大故障时,水生排放物可能成为导致HTI的主要因素。较大的不确定性和缺乏暴露数据阻碍了全面的风险评估;但是,此分析的结果提供了相对毒性的比较,可用于确定需要改进的目标区域并评估与其他环境影响的潜在权衡。

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  • 来源
    《Environmental Science & Technology》 |2017年第21期|13016-13027|共12页
  • 作者单位

    Center for Sustainable Systems, School for Environment and Sustainability, University of Michigan, 440 Church Street, Ann Arbor Michigan 48109, United States,Department of Civil and Environmental Engineering, University of Michigan, 2350 Hayward Street, Ann Arbor Michigan 48109, United States;

    Center for Sustainable Systems, School for Environment and Sustainability, University of Michigan, 440 Church Street, Ann Arbor Michigan 48109, United States,Department of Civil and Environmental Engineering, University of Michigan, 2350 Hayward Street, Ann Arbor Michigan 48109, United States;

    Department of Civil and Environmental Engineering, University of Michigan, 2350 Hayward Street, Ann Arbor Michigan 48109, 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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