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一个具有生命周期碳足迹的电动移动循环经济,以实现气候适应性碳中和转型。

An electricity-driven mobility circular economy with lifecycle carbon footprints for climate-adaptive carbon neutrality transformation.

作者信息

Song Aoye, Dan Zhaohui, Zheng Siqian, Zhou Yuekuan

机构信息

Sustainable Energy and Environment Thrust, Function Hub, The Hong Kong University of Science and Technology (Guangzhou), Nansha, Guangzhou, Guangdong, China.

Division of Emerging Interdisciplinary Areas, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR, China.

出版信息

Nat Commun. 2024 Jul 13;15(1):5905. doi: 10.1038/s41467-024-49868-9.

Abstract

Under the carbon neutrality targets and sustainable development goals, emergingly increasing needs for batteries are in buildings and electric vehicles. However, embodied carbon emissions impose dialectical viewpoints on whether the electrochemical battery is environmentally friendly or not. In this research, a community with energy paradigm shifting towards decentralization, renewable and sustainability is studied, with multi-directional Vehicle-to-Everything (V2X) and lifecycle battery circular economy. Approaches are proposed to quantify the lifecycle carbon intensity of batteries. Afterwards, pathways for zero-carbon transformation are proposed to guide the economic feasibility of energy, social and governance investment behaviors. Results show that lifecycle zero-carbon battery can be achieved under energy paradigm shifting to positive, V2X interaction, battery cascade utilization and battery circular economy in various climate regions. This study proposes an approach for lifecycle battery carbon intensity quantification for sustainable pathways transition on zero-carbon batteries and carbon-neutral communities.

摘要

在碳中和目标和可持续发展目标下,建筑和电动汽车对电池的需求急剧增加。然而,隐含碳排放对电化学电池是否环保提出了辩证的观点。本研究以一个能源范式向分散化、可再生和可持续性转变的社区为研究对象,探讨了多向车与万物(V2X)及电池全生命周期循环经济。提出了量化电池全生命周期碳强度的方法。随后,提出了零碳转型路径,以指导能源、社会和治理投资行为的经济可行性。结果表明,在能源范式转向积极、V2X交互、电池梯次利用和电池循环经济的情况下,不同气候区域均可实现全生命周期零碳电池。本研究提出了一种电池全生命周期碳强度量化方法,以实现零碳电池和碳中和社区的可持续路径转型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9707/11246450/0b92e3ba539c/41467_2024_49868_Fig1_HTML.jpg

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