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Multi‐scenario simulation on reducing CO 2 emissions from China's major manufacturing industries targeting 2060

Sheng Zhou; Alun Gu; Qing Tong; Yuefeng Guo; Xinyang Wei
Journal of Industrial Ecology · Vol. 26, Issue 3 · pp. 850-861 · 2022

Abstract

CO 2 emissions from industrial processes are the main components of global greenhouse gas emissions. Based on analyzing the industrial activity level, technological progress, raw material substitution, and CO 2 recycling ratio from the cement, aluminum, ammonia, steel, lime, and ferroalloy industries, this paper considers three scenarios, namely, national determined contribution (NDC), carbon mitigation scenario (CMS), and deep mitigation scenario (DMS), and systematically explores the CO 2 emissions from future industrial processes as well as relevant cumulative emissions, emission sources, mitigation potentials, and mitigation sources in China. The results demonstrate that CO 2 emissions of the six main industrial processes can be continuously and significantly reduced in China. In the scenarios, compared with the 2020 level (1448 million metric tons of CO 2 ), the CO 2 emissions can be reduced by 71%, 82%, and 94%, respectively, in 2060, mainly owing to the reduction of the activity level, the adjustment of the product structure and the application of carbon capture and storage (CCS) under the DMS scenario. This paper provides several major policy implications to reduce the CO 2 emissions through adjusting the industrial structure and current lifestyles, improving the durability of industrial products and the management and technical levels, increasing the substitution ratio of low‐carbon raw materials in industrial production, supporting innovative low‐carbon technologies, the establishment and operation of the carbon market and carbon pricing mechanism, and further promoting the current “leader” system of energy‐intensive industries.

Bibliographic Information

JournalJournal of Industrial Ecology
PublisherSpringer
Publication Date2022-06-01
Publication Year2022
Volume26
Issue3
Pages850-861
Document TypeJournal Article
Print ISSN1088-1980
eISSN1530-9290
DOI10.1111/jiec.13233

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/44498
Publisher PageOpen Publisher Page
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