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Long-term temperature and sea-level rise stabilization before and beyond 2100

Estimating the additional climate mitigation contribution from China’s recent 2060 carbon neutrality pledge

Bibliographic Data

ID15545993
AuthorsJiewei Chen (University of Chinese Academy of Sciences), Huijuan Cui (0000-0003-2900-0461, Institute of Geographic Sciences and Natural Resources Research, corresponding author), Yangyang Xu (0000-0002-3383-4349, Texas A&M University, corresponding author), Quansheng Ge (0000-0001-8712-8565, Institute of Geographic Sciences and Natural Resources Research)
Year2021
Volume16
Issue7
Pages074032-074032
Publication date2021-06-18
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ac0cac
OpenAlexW3173639683
LanguageEN
Citations received5
References cited39

As the largest emitter in the world, China recently pledged to reach a carbon peak before 2030 and carbon neutrality before 2060, which could accelerate the progress of mitigating negative climate change effects. In this study, we used the Minimum Complexity Earth Simulator and a semi-empirical statistical model to quantify the global mean temperature and sea-level rise (SLR) response under a suite of emission pathways that are constructed to cover various carbon peak and carbon neutrality years in China. The results show that China will require a carbon emission reduction rate of no less than 6%/year and a growth rate of more than 10%/year for carbon capture capacity to achieve carbon neutrality by 2060. Carbon peak years and peak emissions contribute significantly to mitigating climate change in the near term, while carbon neutrality years are more influential in the long term. Mitigation due to recent China’s pledge alone will contribute a 0.16 °C–0.21 °C avoided warming at 2100 and also lessen the cumulative warming above 1.5 °C level. When accompanied by coordinated international efforts to reach global carbon neutrality before 2070, the 2 °C target can be achieved. However, the 1.5 °C target requires additional efforts, such as global scale adoption of negative emission technology for CO 2 , as well as a deep cut in non-CO 2 GHG emissions. Collectively, the efforts of adopting negative emission technolgy and curbing all greenhouse gas emissions will reduce global warming by 0.9 °C −1.2 °C at 2100, and also reduce SLR by 49–59 cm in 2200, compared to a baseline mitigation pathway already aiming at 2 °C. Our findings suggest that while China’s ambitious carbon-neutral pledge contributes to Paris Agreement’s targets, additional major efforts will be needed, such as reaching an earlier and lower CO 2 emission peak, developing negative emission technology for CO 2 , and cutting other non-CO 2 GHGs such as N 2 O, CH 4 , O 3 , and HFCs

Atmospheric sciences · Carbon fibers · Carbon neutrality · China · Climate change · Climate change mitigation · Climate model · Climatology · Economics · Environmental protection · Geography · Global temperature · Global warming · Greenhouse gas · Natural resource economics · Pledge · Political science · Representative Concentration Pathways · Atmospheric and Environmental Gas Dynamics · Atmospheric Ozone and Climate · Climate variability and models · Computer Science · Environmental Science · Ecology

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Unique citing works5
Citations per year1,67
Citation span2023 - 2026 (4)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 5
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