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Environmental and Economic Trade-Offs of City Vehicle Fleet Electrification and Photovoltaic Installation in the U.S. PJM Interconnection

机译:美国PJM互联中城市车辆车队电气化和光伏安装的环境和经济权衡

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摘要

Several cities are considering both photovoltaic (PV) generation and electric vehicles (EVs). A city evaluating a transition to an EV fleet has different decision criteria than private actors. This paper conducts a life cycle assessment and cost-benefit analysis for city vehicle fleet electrification decisions, using Pittsburgh, PA as a case study. The analysis includes several electric-grid scenarios and assesses the installation of distributed PV at city-owned parking facilities. Costs were included while comparing vehicle options, as were the emissions and externality costs of GHGs, SO_2, and NO_x. from direct and upstream effects. For the vehicles under consideration for Pittsburgh's fleet, BEVs were always found to have lower GHG emissions than Hybrids. Lowering external costs with fleet electrification, however, was found to be dependent on a rapid transition to a cleaner grid. A peak capacity of about 6000 kW of PV is possible on Pittsburgh city-owned parking facilities. This capacity would produce greater than 30 times the yearly energy needs of the city's municipal vehicle fleet. However, the PV canopy structures over parking spaces potentially make systems costs prohibitive. This study provides a method for cities, counties, and other stakeholders to evaluate the potential benefits and costs of EVs and PV generation.
机译:几个城市正在考虑使用光伏(PV)发电和电动汽车(EV)。评估向电动车队过渡的城市与私人行为者具有不同的决策标准。本文以宾夕法尼亚州匹兹堡为例,对城市车辆车队电气化决策进行了生命周期评估和成本效益分析。该分析包括几种电网情景,并评估了城市拥有的停车设施中分布式光伏的安装情况。在比较车辆选择时包括了成本,包括温室气体,SO_2和NO_x的排放和外部成本。直接和上游的影响。对于匹兹堡车队正在考虑的车辆,BEV始终被发现比混合动力汽车具有更低的温室气体排放量。然而,发现通过车队电气化降低外部成本取决于快速过渡到更清洁的电网。匹兹堡市拥有的停车设施可能会达到约6000 kW的峰值光伏容量。这种能力将产生超过该市市政车辆车队每年能源需求的30倍的能力。但是,停车位上方的PV天篷结构可能会使系统成本过高。这项研究为城市,县和其他利益相关者提供了一种评估电动汽车和光伏发电的潜在收益和成本的方法。

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  • 来源
    《Environmental Science & Technology》 |2020年第1期|380-389|共10页
  • 作者

  • 作者单位

    Department of Public Policy Rochester Institute of Technology 1 Lomb Memorial Drive Rochester New York 14623 United States;

    Civil and Environmental Engineering Carnegie Mellon University 5000 Forbes Avenue Pittsburgh Pennsylvania 15213 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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