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Marginal Greenhouse Gas Emissions of Ontario's Electricity System and the Implications of Electric Vehicle Charging

机译:安大略省电力系统的边缘温室气体排放及电动车充电的影响

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摘要

To estimate greenhouse gas (GHG) emission reductions of electric vehicles (EVs) deployment, it is important to account for emissions from electricity generation. Since such emissions change according to temporal patterns of electricity generation and EV charging, this study operationalizes the concept of marginal emission factors (MEFs) and uses person-level travel activity data to simulate charging scenarios. Our study is set in the Greater Toronto and Hamilton Area in Ontario, Canada. After generating hourly MEFs using a multiple linear regression model, we estimated GHG emissions for EV charging at two EV penetration rates, 5% and 30%, and five charging scenarios: home, work and shopping, night, downtown vs suburb, and an optimal low emission charging scenario, matching charging time with the lowest available MEF. We observed that vehicle electrification substantially reduces GHG emissions, even when using MEFs that are up to seven times higher than average electricity emission factors. With Ontario's 2017 electricity generation mix, EVs achieve over 80% lower fuel cycle emissions compared with equivalent sets of gasoline vehicles. At 5% penetration, night charging nearly matches low emission charging, but night charging emissions increase with 30% EV penetration, suggesting a need for policy that can smooth out charging demand after midnight.
机译:为了估算电动汽车(EVS)部署的温室气体(GHG)减排,重要的是考虑发电的排放量。由于这种排放根据发电和EV充电的时间模式而变化,因此该研究运营了边缘排放因子(MEFS)的概念,并使用人级旅行活动数据来模拟充电方案。我们的研究设定在加拿大安大略省的大多雅托和汉密尔顿地区。在使用多个线性回归模型生成小时MEF后,我们估计了两个EV渗透率,5%和30%的EV充电的温室气体排放,以及五种充电情景:家庭,工作和购物,夜晚,市中心VS郊区以及最佳低排放充电方案,匹配充电时间与最低可用MEF。我们观察到车辆电气化显着降低了温室气体排放,即使使用高于平均电力排放因子的高达七倍的MEF。随着安大略省的2017年发电混合,与等同的汽油车辆相比,EVS实现燃料循环排放量超过80%。在5%的渗透率下,夜间充电与低排放充电差不多,但夜间充电排放量增加了30%的EV渗透,表明需要在午夜后能够平滑收费需求的政策。

著录项

  • 来源
    《Environmental Science & Technology》 |2019年第13期|7903-7912|共10页
  • 作者单位

    Univ Toronto Dept Civil & Mineral Engn 35 St George St Toronto ON M5S 1A4 Canada;

    Univ Toronto Dept Civil & Mineral Engn 35 St George St Toronto ON M5S 1A4 Canada;

    Univ Toronto Dept Civil & Mineral Engn 35 St George St Toronto ON M5S 1A4 Canada;

    Univ Toronto Dept Civil & Mineral Engn 35 St George St Toronto ON M5S 1A4 Canada;

    Univ Toronto Dept Civil & Mineral Engn 35 St George St Toronto ON M5S 1A4 Canada;

  • 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
  • 关键词

  • 入库时间 2022-08-18 22:36:55

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