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Research on the relationship between urban public infrastructure, CO2 emission and economic growth in China

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  • Yuanyuan Hao

    (Dankook University)

  • Hong Chong Cho

    (Dankook University)

Abstract

The main purpose of this study is to analyze the relationship between urban public infrastructure, CO2 emissions and economic growth in China for the period 1990–2019 using the Dynamic Conditional Correlation Multivariate GARCH model (DCC-MGARCH) and Autoregressive Distributed Lagged Model (ARDL). According to the estimated results of the DCC-MGARCH, there is a positive influential effect among the economic growth, urban public infrastructure and CO2 emissions, while there is a negative influential effect between the urban public infrastructure and CO2 emissions, but the duration of volatility between the urban public infrastructure and CO2 emissions is relatively weak. Among such relationships, the conditional correlation also shows there is an effect in S-shape between the urban public infrastructure and economic growth, but the trend variation between the urban public infrastructure and CO2 emissions shows an inverted “U-shape” of Environmental Kuznets Curve Theory. The results of the ARDL-Bounds test show that there are long-term co-integration relationships and short-term dynamic correlation among all models. Also, the results of error correction terms show that the speed deviating economic growth and CO2 emissions from the long-term equilibrium and CO2 emissions deviating from the long-term equilibrium is larger than that of the urban public infrastructure, which indicates that the relationship between the economic growth and CO2 emissions is relatively strong.

Suggested Citation

  • Yuanyuan Hao & Hong Chong Cho, 2022. "Research on the relationship between urban public infrastructure, CO2 emission and economic growth in China," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 24(5), pages 7361-7376, May.
  • Handle: RePEc:spr:endesu:v:24:y:2022:i:5:d:10.1007_s10668-021-01750-0
    DOI: 10.1007/s10668-021-01750-0
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    References listed on IDEAS

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    1. Martínez-Zarzoso, Inmaculada & Maruotti, Antonello, 2011. "The impact of urbanization on CO2 emissions: Evidence from developing countries," Ecological Economics, Elsevier, vol. 70(7), pages 1344-1353, May.
    2. Ghosh, Sajal & Kanjilal, Kakali, 2014. "Long-term equilibrium relationship between urbanization, energy consumption and economic activity: Empirical evidence from India," Energy, Elsevier, vol. 66(C), pages 324-331.
    3. Ichinose, Daisuke & Yamamoto, Masashi & Yoshida, Yuichiro, 2015. "The decoupling of and affluence discharge under spatial correlation: do richer communities discharge more waste? – CORRIGENDUM," Environment and Development Economics, Cambridge University Press, vol. 20(2), pages 282-282, April.
    4. Sharma, Susan Sunila, 2011. "Determinants of carbon dioxide emissions: Empirical evidence from 69 countries," Applied Energy, Elsevier, vol. 88(1), pages 376-382, January.
    5. Ichinose, Daisuke & Yamamoto, Masashi & Yoshida, Yuichiro, 2015. "The decoupling of affluence and waste discharge under spatial correlation: Do richer communities discharge more waste?," Environment and Development Economics, Cambridge University Press, vol. 20(2), pages 161-184, April.
    6. Ala-Mantila, Sanna & Heinonen, Jukka & Junnila, Seppo, 2014. "Relationship between urbanization, direct and indirect greenhouse gas emissions, and expenditures: A multivariate analysis," Ecological Economics, Elsevier, vol. 104(C), pages 129-139.
    7. Paresh Kumar Narayan, 2005. "The saving and investment nexus for China: evidence from cointegration tests," Applied Economics, Taylor & Francis Journals, vol. 37(17), pages 1979-1990.
    8. M. Hashem Pesaran & Yongcheol Shin & Richard J. Smith, 2001. "Bounds testing approaches to the analysis of level relationships," Journal of Applied Econometrics, John Wiley & Sons, Ltd., vol. 16(3), pages 289-326.
    9. Sharif Hossain, Md., 2011. "Panel estimation for CO2 emissions, energy consumption, economic growth, trade openness and urbanization of newly industrialized countries," Energy Policy, Elsevier, vol. 39(11), pages 6991-6999.
    10. Tomoaki Nakatani & Timo Terasvirta, 2009. "Testing for volatility interactions in the Constant Conditional Correlation GARCH model," Econometrics Journal, Royal Economic Society, vol. 12(1), pages 147-163, March.
    11. Andrew Jorgenson & Daniel Auerbach & Brett Clark, 2014. "The (De-) carbonization of urbanization, 1960–2010," Climatic Change, Springer, vol. 127(3), pages 561-575, December.
    12. Md. Qamruzzaman & Jianguo Wei, 2018. "Financial Innovation, Stock Market Development, and Economic Growth: An Application of ARDL Model," IJFS, MDPI, vol. 6(3), pages 1-30, August.
    13. Soytas, Ugur & Sari, Ramazan & Ewing, Bradley T., 2007. "Energy consumption, income, and carbon emissions in the United States," Ecological Economics, Elsevier, vol. 62(3-4), pages 482-489, May.
    14. Poumanyvong, Phetkeo & Kaneko, Shinji, 2010. "Does urbanization lead to less energy use and lower CO2 emissions? A cross-country analysis," Ecological Economics, Elsevier, vol. 70(2), pages 434-444, December.
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    Cited by:

    1. Yuanyuan Hao, 2023. "The dynamic relationship between trade openness, foreign direct investment, capital formation, and industrial economic growth in China: new evidence from ARDL bounds testing approach," Palgrave Communications, Palgrave Macmillan, vol. 10(1), pages 1-11, December.
    2. Haider Mahmood & Maham Furqan & Muhammad Shahid Hassan & Soumen Rej, 2023. "The Environmental Kuznets Curve (EKC) Hypothesis in China: A Review," Sustainability, MDPI, vol. 15(7), pages 1-32, April.
    3. Mortaza Ojaghlou & Erginbay Ugurlu & Marta Kadłubek & Eleftherios Thalassinos, 2023. "Economic Activities and Management Issues for the Environment: An Environmental Kuznets Curve (EKC) and STIRPAT Analysis in Turkey," Resources, MDPI, vol. 12(5), pages 1-14, April.

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