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Deep decarbonization pathways in the building sector

China’s NDC and the Paris agreement

Bibliographic Data

ID15547716
AuthorsRui Xing (0000-0002-2424-8487, University of Alberta, corresponding author), Tatsuya Hanaoka (0000-0002-8384-7383, National Institute for Environmental Studies), Toshihiko Masui (0000-0003-0497-1368, National Institute for Environmental Studies)
Year2021
Volume16
Issue4
Pages044054-044054
Publication date2021-01-26
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/abe008
OpenAlexW3124017184
LanguageEN
Citations received2
References cited18

China’s economic growth has been largely relying on the consumption of coal. The country has realized that its economic development has to be free from dependence on fossil fuels. On 30 June 2015, China submitted its ‘Nationally Determined Contribution (NDC)’ in preparation for the Conference of Parties 21 (COP21). One of the important actions in China’s NDC is to lower carbon dioxide (CO 2 ) emissions per unit of GDP by 60% to 65% from 2005 levels by 2030. This study examines the efforts from China’s building sector (i.e. urban residential, rural residential and service) in achieving the CO 2 reduction target stated in China’s NDC. Furthermore, this study also explores the post-NDC era and looks into the opportunities towards deep decarbonization in the building sector by mid-century for contributing to the Paris agreement. The study covers 31 provincial regions of mainland China anddisparities of climate and socioeconomic indicators across regions are fully considered. We use a bottom-up cost optimization model called AIM/Enduse to evaluate the CO 2 reduction potential brought by efficient technologies in China’s building sector. Five scenarios are designed to illustrate the emission pathways through 2050. The results show that, when energy constraint and emission target is introduced in mitigation scenarios, new generation biomass contribute a lot to emission reduction. Reduction potential in the nearly zero emission scenario is mainly from the urban residential sector, and to achieve deep decarbonization by 2050, it is important to bring a significant reduction of per-capita energy consumption in addition to ci improvement both in urban and rural households. Co-benefit analysis suggests that air pollutants can also be significantly reduced by deep decarbonization policies

Agricultural economics · Business · China · Constraint (computer-aided design · Consumption (sociology · Economics · Environmental economics · Geography · Mainland China · Natural resource economics · Per capita · Population · Unit (ring theory · Air Quality and Health Impacts · Climate Change Policy and Economics · Engineering · Environmental Impact and Sustainability · Environmental Science

  • Uncovering the indoor health co-benefits of rural residential energy transition in Northern China

    Open Access•Xiao Wu, Yilong Xiao et al.•Sustainable Production and…•2026

  • Deep learning and dynamic simulation based progressive decarbonization roadmap in the building sector in Jiangsu Province

    Open Access•Shouxin Zhang, Meiping Wang et al.•Sustainable Cities and Society•2025

  • An impact assessment of sustainable technologies for the Chinese urban residential sector at provincial level

    Open Access•Rui Xing, Tatsuya Hanaoka et al.•Environmental Research Letters•2015

  • A proposal for a new scenario framework to support research and assessment in different climate research communities

    Open Access•Detlef P Van Vuuren, Keywan Riahi et al.•Global Environmental Change•2011

Unique citing works2
Citations per year2
Citation span2025 - 2026 (2)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 2

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