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The impact of reducing car weight on global emissions: the future fleet in Great Britain

机译:减轻汽车重量对全球排放的影响:英国未来的车队

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摘要

Current European policies define targets for future direct emissions of new car sales that foster a fast transition to electric drivetrain technologies. However, these targets do not consider the emissions produced in electricity generation and material production, and therefore fail to incentivise car manufacturers to consider the benefits of vehicle weight reduction. In this paper, we examine the potential benefits of limiting the average weight and altering the material composition of new cars in terms of global greenhouse gas emissions produced during the use phase, electricity generation and material production. We anticipate the emissions savings for the future car fleet in Great Britain until 2050 for various alternative futures, using a dynamic material flow analysis of ferrous metals and aluminium, and considering an evolving demand for car use. The results suggest that fostering vehicle weight reduction could produce greater cumulative emissions savings by 2050 than those obtained by incentivising a fast transition to electric drivetrains, unless there is an extreme decarbonization of the electricity grid. Savings promoted by weight reduction are immediate and do not depend on the pace of decarbonization of the electricity grid. Weight reduction may produce the greatest savings when mild steel in the car body is replaced with high-strength steel.This article is part of the themed issue ‘Material demand reduction’.
机译:欧洲现行政策为未来新车销售的直接排放确定了目标,以促进向电动传动系统技术的快速过渡。但是,这些目标没有考虑到发电和材料生产中产生的排放,因此无法激励汽车制造商考虑减轻汽车重量的好处。在本文中,我们从使用阶段,发电和材料生产过程中产生的全球温室气体排放量出发,研究了限制平均重量和改变新车材料成分的潜在好处。我们使用黑色金属和铝的动态物料流分析,并考虑不断变化的汽车使用需求,预计到2050年英国的各种替代期货将为未来的英国车队节省排放量。结果表明,到2050年,与鼓励快速过渡到电力传动系统相比,鼓励减轻汽车重量可以节省更多的累积排放量,除非电网极端脱碳。减轻重量所带来的节省是立竿见影的,而不取决于电网脱碳的速度。当用高强度钢代替车身中的低碳钢时,减轻重量可能会带来最大的节省。本文是“降低材料需求”主题的一部分。

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