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长途卡车电动化带来的健康和气候影响。

Health and Climate Impacts from Long-Haul Truck Electrification.

机构信息

School of Economics and Management, Beihang University, Beijing, China.

Energy Analysis and Environmental Impacts Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

Environ Sci Technol. 2021 Jul 6;55(13):8514-8523. doi: 10.1021/acs.est.1c01273. Epub 2021 Jun 14.

Abstract

Long-haul truck electrification has attracted nascent policy support, but the potential health and climate impacts remain uncertain. Here, we developed an integrated assessment approach with high spatial-temporal (km and hourly) resolution to characterize the causal chain from truck operation to charging loads, electricity grid response, changes in emissions and atmospheric concentrations, and the resulting health and climate impacts across the United States. Compared to future diesel trucks, electrified trucking's net health benefits are concentrated only along the West Coast with a business-as-usual electricity grid. However, with an 80%-renewable electricity grid, most regions would experience net health benefits, and the economic value of avoided climate and health damages exceeds $5 billion annually, an 80% reduction relative to future diesel trucks. Electric trucks with larger batteries may increase health and climate impacts due to additional trips needed to compensate for the payload penalty, but a 2× improvement in the battery specific energy (to ∼320 Wh/kg) could eliminate the additional trips.

摘要

长途卡车电动化已经引起了初步的政策支持,但潜在的健康和气候影响仍不确定。在这里,我们开发了一种具有高时空分辨率(公里和小时)的综合评估方法,以描述从卡车运行到充电负荷、电网响应、排放和大气浓度变化以及对美国各地健康和气候影响的因果链。与未来的柴油卡车相比,电动卡车的净健康效益仅集中在西海岸的常规电网地区。然而,随着 80%可再生电力的电网,大多数地区将经历净健康效益,避免气候和健康损害的经济价值每年超过 50 亿美元,相对于未来的柴油卡车减少了 80%。由于需要额外的行程来弥补有效载荷的损失,因此更大电池的电动卡车可能会增加健康和气候的影响,但电池比能量(约 320Wh/kg)提高两倍可能会消除额外的行程。

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