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Real-world NOx emissions from heavy-duty diesel, natural gas, and diesel hybrid electric vehicles of different vocations on California roadways

机译:大型柴油,天然气和柴油混合动力电动汽车的现实世界NOX排放在加州巷道上的不同职业

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摘要

This study assessed the real-world nitrogen oxide (NOx) emissions from 50 heavy-duty vehicles of different vocations and engine technologies using portable emissions measurement systems (PEMS). This is one of the most comprehensive in-use emissions studies conducted to date, which played a key role in the development of CARB's (California Air Recourses Board) updated EMission FACtor (EMFAC) model, especially for natural gas vehicles. In-use emissions testing was performed on school and transit buses, refuse haulers, goods movement vehicles, and delivery vehicles while were driven over their normal operating routes in the South Coast Air Basin. Engine technologies included diesel engines with and without selective catalytic reduction (SCR) systems, compressed natural gas (CNG) engines and liquified petroleum gas (LPG) engines, and SCR-equipped diesel hybrid electric vehicles. For most vehicles, the in-use NOx emissions were higher than the certification standards for the engine. Diesel vehicles generally showed higher brake-specific NOx emissions compared to the CNG vehicles. NOx emissions were strongly dependent on the SCR temperature, with SCR temperatures below 200 °C resulting in elevate brake-specific NOx. The 0.02 g/bhp-hr certified CNG vehicles showed the largest reductions in NOx emissions. The diesel hybrid electric vehicles showed important distance-specific NOx benefits compared to the conventional diesel vehicles, but higher emissions compared to the CNG and LPG vehicles. Overall, average NOx reductions were 75%, 94%, 65%, 79%, respectively, for the 0.2 CNG, 0.02 CNG, diesel hybrid electric, and LPG vehicles compared to diesel vehicles, due in part to some diesel vehicles with particularly high emissions, indicating that the widespread implementation of advanced technology and alternative fuel vehicles could provide important NOx reductions and a path for meeting air quality targets in California and elsewhere.
机译:本研究评估了使用便携式排放测量系统(PEMS)的50个重型车辆的实际氮氧化物(NOx)排放和发动机技术的排放。这是迄今为止的最全面的进入排放研究之一,这在Carb(加利福尼亚州空调板)更新的排放因子(EMFAC)模型中发挥了关键作用,特别是对于天然气汽车。在使用的排放式测试中,在学校和运输公交车上进行,垃圾箱,货运车辆和运输车辆在南海岸空气盆地的正常运营路线上被驱动。发动机技术包括柴油发动机,无需选择催化还原(SCR)系统,压缩天然气(CNG)发动机和液化石油气(LPG)发动机,以及配备的SCR的柴油混合动力电动车辆。对于大多数车辆,使用的NOx排放量高于发动机的认证标准。与CNG车辆相比,柴油车辆通常表现出更高的制动特异性NOx排放。 NOx排放强烈依赖于SCR温度,SCR温度低于200℃,导致升高的制动特定NOx。 0.02克/ BHP-HR认证的CNG车辆显示NOx排放量最大。与传统的柴油车辆相比,柴油混合动力电动汽车与传统的柴油车辆相比表现出重要的特异性NOx益处,而是与CNG和LPG车辆相比的排放较高。总体而言,与柴油车辆相比,平均NOx减少分别为75%,94%,65%,79%,分别为0.2 CNG,0.02 CNG,柴油混合电动电动和LPG车辆,部分原因是一些具有特别高的柴油车辆排放表明,先进技术和替代燃料汽车的广泛实施可以提供重要的NOx减少和在加利福尼亚和其他地方满足空气质量目标的路径。

著录项

  • 来源
    《Science of the total environment》 |2021年第25期|147224.1-147224.11|共11页
  • 作者单位

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA;

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA Department of Chemical and Environmental Engineering Bourns College of Engineering University of California Riverside CA 92521 USA;

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA Department of Chemical and Environmental Engineering Bourns College of Engineering University of California Riverside CA 92521 USA;

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA;

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA Department of Chemical and Environmental Engineering Bourns College of Engineering University of California Riverside CA 92521 USA;

    South Coast Air Quality Management District 21865 Copley Dr Diamond Bar CA 91765 USA;

    South Coast Air Quality Management District 21865 Copley Dr Diamond Bar CA 91765 USA;

    infoWedge 4903 Alondra Ct El Dorado Hills CA 95762 USA;

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA Department of Chemical and Environmental Engineering Bourns College of Engineering University of California Riverside CA 92521 USA;

    University of California Bourns College of Engineering Center for Environmental Research and Technology (CE-CERT) 1084 Columbia Avenue Riverside CA 92507 USA Department of Chemical and Environmental Engineering Bourns College of Engineering University of California Riverside CA 92521 USA;

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

    NOx emissions; Selective catalytic reduction; Natural gas vehicles; Diesel hybrid electric trucks; PEMS;

    机译:nox排放;选择性催化还原;天然气车辆;柴油混合动力电动卡车;PEMS.;

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