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Decarbonizing China's Urban Agglomerations

Bibliographic Data

ID3775366
AuthorsShaojian Wang (0000-0001-9082-8562, Sun Yat-sen University), Chuanglin Fang (0000-0001-6043-8491, Chinese Academy of Sciences), Laixiang Sun (0000-0002-7784-7942, University of Maryland, College Park), Yongxian Su (0000-0003-2114-628X, Guangzhou Institute of Geography), Xiuzhi Chen (0009-0003-5688-2997, Chinese Academy of Sciences), Chunshan Zhou (0000-0002-0621-3563, Sun Yat-sen University), K Feng (0000-0001-5139-444X, University of Maryland, College Park), Klaus Hubacek (0000-0003-2561-6090, Masaryk University)
Year2019
Volume109
Issue1
Pages266-285
Publication date2019-01-02
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueAnnals of the American Association of Geographers (JOURNAL)
Journal identifiersISSN: 2469-4452 • E-ISSN: 2469-4460
PublisherInforma UK Limited (PUBLISHER • GB)
DOI10.1080/24694452.2018.1484683
OpenAlexW2894549911
LanguageEN
Citations received8
References cited60

China’s urban agglomerations contribute 64 percent to China’s energy-related CO2 emissions and thus play a vital role in determining the future of climate change. There is little information available about city-level energy consumption and CO2 emissions; thus, we employ spatiotemporal modeling using Defense Meteorological Satellite Program/Operational Line-scan System (DMSP/OLS) nighttime light imagery. Our findings show that such agglomerations have in fact experienced a remarkable decline in CO2 emission intensity—from 0.43 t/thousand yuan to 0.20 t/thousand yuan between 1995 and 2013, which constitutes an average annual decline of 4.34 percent. Despite still very high CO2 intensities in western China, a convergence of CO2 intensities across the country has occurred over the last few decades. Using panel regression modeling, we analyze differences in the decline of CO2 emission intensities due to regional differences in socioeconomic variables such as economic growth, population, economic structure, population density, and characteristics of urbanization. Factors that have hampered the decline of CO2 intensities are the ongoing industrialization that demands the increase in the production of heavy industry, in infrastructure investment, and in housing stock. Key Words: CO2 emission intensity, nighttime light imagery, spatiotemporal modeling, urban agglomerations.中国的城市集聚, 生产了中国与能源相关的二氧化碳排放的百分之六十四, 因此在决定气候变迁的未来方面扮演了重要角色。但城市层级的能源消耗和二氧化碳排放的可及信息却相当稀少;因此我们运用时空模式化, 该模式化使用防卫气象卫星计画/线形扫描系统(DMSP/OLS)的夜间光影像。我们的研究发现显示, 这些集聚其实经历了二氧化碳排放密集度的明显减少——从1995年的0.43吨/千元到2013年的0.2吨/千元, 每年平均降低百分之四点三四。尽管中国西部的二氧化碳密度仍相当高, 过去数十年来仍发生了全国二氧化碳密度的聚合。我们运用面板迴归模型, 分析因诸如经济成长、人口、经济结构、人口密度与城市化特徵等社会经济变因的区域差异所导致的二氧化碳排放密度降低的差异。阻碍二氧化碳密度降低的因素是需要增加重工业生产、基础建设投资以及房地产需求的持续工业化。 关键词:二氧化碳排放密度, 夜间光影像, 时空模式化, 城市集聚。Las aglomeraciones urbanas de China contribuyen el 64 por ciento de las emisiones chinas de CO2 relacionadas con energía, para así desempeñar un papel vital en la determinación futura del cambio climático. Hay poca información disponible acerca del consumo de energía a nivel de ciudad y de las emisiones de CO2; entonces, empleamos modelado espaciotemporal usando imágenes de luminosidad nocturna del Programa Satelital Meteorológico de la Defensa/Sistema Operacional de Escaneo en Línea (DMSP/OLS). Nuestros hallazgos muestran que de hecho tales aglomeraciones han experimentado una notable disminución en la intensidad de la emisión de CO2 ––de 0.43t/miles de yuanes a 0.20t/miles yuanes entre 1995 y 2013, lo cual constituye una declinación promedio anual de 4.34 por ciento. Pese a las intensidades de CO2 en China occidental todavía demasiado altas, una convergencia de intensidades del CO2 a través del país ha ocurrido durante las pasadas pocas décadas. Usando modelado de regresión de panel, analizamos las diferencias de la declinación de las intensidades en la emisión de CO2 debidas a diferencias regionales en variables socioeconómicas tales como crecimiento económico, población, estructura económica, densidad de población y características de la urbanización. Los factores que han dificultado la declinación en las intensidades del CO2 son la industrialización en marcha que demanda incremento en la producción de la industria pesada, en inversiones para infraestructura y en el inventario de vivienda

China · Economic geography · Economic growth · Economics · Geography · Population · Urban agglomeration · Urbanization · Air Quality and Health Impacts · Demography · Impact of Light on Environment and Health · Urban Transport and Accessibility

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    Open Access•Hongxu Guo, Zihan Xie et al.•International Journal of…•2021

  • Impact of urbanization on ecosystem health in Chinese urban agglomerations

    Open Access•Wanxu Chen, Guanzheng Wang et al.•Environmental Impact Assessment…•2023

  • How technological progress affects the carbon emission efficiency? Evidence from national panel quantile regression

    Open Access•Zihan Xie, Rong Wu et al.•Journal of Cleaner Production•2021

  • Impact and mechanisms of high-speed rail construction on carbon emissions

    Open Access•Jiabei Zhou, Shuang Gao et al.•Applied Geography•2024

  • The spillover effects of digital technology innovation on carbon emissions in urban agglomerations

    Open Access•Shuoshuo Li, Ziyuan Zhang et al.•Sustainable Cities and Society•2025

  • Spatial Inequality and Shared Accessibility in the Fifteen-Minute Community Life Circle

    Yue Li, Li Yue et al.•Annals of the American…•2026

  • Carbon Abatement Effect of Low-Carbon City Pilot Policy

    Shuang Gao, Shaojian Wang•Annals of the American…•2024

  • Using Zipf's Law to Optimize Urban Spatial Layouts in an Urban Agglomeration Area

    Yifan Wang, Jianjun Lyu et al.•Annals of the American…•2024

  • Changing urban forms and carbon dioxide emissions in China

    Open Access•Chuanglin Fang, Shaojian Wang et al.•Applied Energy•2015

  • Causal interactions between CO2 emissions, FDI, and economic growth

    Open Access•Anis Omri, Duy Khang Nguyễn et al.•Economic Modelling•2014

  • Examining the impacts of socioeconomic factors, urban form, and transportation networks on CO2 emissions in China’s megacities

    Open Access•Shaojian Wang, Xiaoping Liu et al.•Applied Energy•2017

  • Dynamics, space, and regional inequality in provincial China

    Open Access•Felix Haifeng Liao, Felix H F Liao et al.•Applied Geography•2012

  • The impact of economic growth, industrial structure and urbanization on carbon emission intensity in China

    Open Access•Yue‐Jun Zhang, Yue-Jun Zhang et al.•Natural Hazards•2014

  • Outsourcing CO 2 within China

    Open Access•K Feng, Steven J Davis et al.•Proceedings of the National…•2013

  • Does Size Matter? Scaling of CO2 Emissions and U.S. Urban Areas

    Open Access•Michail Fragkias, J Lobo et al.•PLoS ONE•2013

  • Urbanisation, energy consumption, and carbon dioxide emissions in China

    Open Access•Shaojian Wang, Chuanglin Fang et al.•Applied Energy•2014

  • Some Tests of Specification for Panel Data

    Manuel Arellano, Stephen Bond•The Review of Economic Studies•1991

  • Impact of Population Growth

    Open Access•P R Ehrlich, John P Holdren•Science•1971

  • Analyzing Drivers of Regional Carbon Dioxide Emissions for China

    Open Access•K Feng, Yim Ling Siu et al.•Journal of Industrial Ecology•2012

  • Pattern changes in determinants of Chinese emissions

    Open Access•Zhifu Mi, Jing Meng et al.•Environmental Research Letters•2017

  • Carbon footprints of cities and other human settlements in the UK

    Open Access•Jan C Minx, Jan Minx et al.•Environmental Research Letters•2013

  • STIRPAT, Ipat and ImPact

    Open Access•Richard York, Eugene A Rosa et al.•Ecological Economics•2003

  • Lifestyles, technology and CO2 emissions in China

    Open Access•K Feng, Klaus Hubacek et al.•Ecological Economics•2009

  • Changes in carbon intensity in China

    Open Access•Ying Fan, Lan-Cui Liu et al.•Ecological Economics•2007

  • The drivers of Chinese CO2 emissions from 1980 to 2030

    Open Access•Dabo Guan, Klaus Hubacek et al.•Global Environmental Change•2008

  • Simulating Urban Form and Energy Consumption in the Pearl River Delta Under Different Development Strategies

    Yimin Chen, Xia Li et al.•Annals of the Association of…•2013

  • Coupling Simulation and Optimization to Solve Planning Problems in a Fast-Developing Area

    Xia Li, Xun Shi et al.•Annals of the Association of…•2011

  • Environmentally Significant Consumption

    Geoffrey Mcnicoll, National Research Council•Population and Development Review•1998

Unique citing works8
Citations per year1,6
Citation span2021 - 2026 (6)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 6
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