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到2050年实现碳中和社会的材料效率和循环利用目标。

Material Efficiency and Circularity Goals to Achieve a Carbon-Neutral Society by 2050.

作者信息

Hata Sho, Nansai Keisuke, Shigetomi Yosuke, Kito Minami, Nakajima Kenichi

机构信息

Social Systems Division, National Institute for Environmental Studies, 16-2 Onogawa, Tsukuba 305-8506, Japan.

Graduate School of Frontier Sciences, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba 277-8563, Japan.

出版信息

Environ Sci Technol. 2025 Apr 1;59(12):6025-6036. doi: 10.1021/acs.est.4c08719. Epub 2025 Mar 20.

Abstract

Decarbonizing materials production presents a major challenge to achieving a carbon-neutral society. The current carbon-neutral roadmap for materials generally assumes an uncertain dissemination of innovative production technologies, making the changes in material flows required for a carbon-neutral society unclear. This study introduces three material reduction scenarios and an input-output optimization model to explore material flows in Japan for achieving carbon neutrality by 2050 without disseminating innovative technologies. The results indicate that Japanese carbon emissions could reach neutrality by 2050 if the country can manage a yearly material reduction of 4% together with the decarbonization of electricity generation. To achieve this, the material efficiency of consumption must increase nearly 4-fold, and the material circulation rate must be doubled. Achieving such a rapid improvement in material efficiency and circularity is as challenging as the early large-scale deployment of material decarbonization technologies. Therefore, the critical choice in the remaining years is whether to bet heavily on innovative material decarbonization or prioritize technologies and policies accelerating material efficiency.

摘要

材料生产脱碳是实现碳中和社会面临的一项重大挑战。当前材料领域的碳中和路线图通常假定创新生产技术的推广情况不确定,这使得碳中和社会所需的物质流变化不明朗。本研究引入了三种材料减量情景和一个投入产出优化模型,以探索在不推广创新技术的情况下,日本为实现2050年碳中和的物质流情况。结果表明,如果日本能够实现每年4%的材料减量以及发电脱碳,那么到2050年日本的碳排放可以达到中和。要实现这一点,消费的材料效率必须提高近4倍,材料循环率必须翻倍。在材料效率和循环利用方面实现如此快速的提升与早期大规模部署材料脱碳技术一样具有挑战性。因此,在未来几年的关键选择是,是大力押注于创新材料脱碳,还是优先发展加速材料效率提升的技术和政策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f7f/11966779/77273fb11f93/es4c08719_0001.jpg

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