Taguchi, Hiroyuki (2024): Air pollutions and its control governance in Chinese provinces in post-COVID-19 era: panel estimations of provincial environmental Kuznets curves.
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Abstract
China’s rapid industrialization and urbanization in recent decades have deteriorated its air environmental quality. This study focuses on air pollutions in terms of CO, NO2, O3, PM2.5, PM10, and SO2 in Chinese provinces. Although the heterogeneity of environmental Kuznets curves (EKCs) from Chinese provinces has been studied, the positions of provincial EKCs (which reflect the province-specific pollution effects not affected by the provincial income levels) have not been investigated to date. Therefore, through a factor analysis of the heterogeneity of provincial pollutions under the EKC framework, we investigate how the governance shortage for pollution control contributes to the provincial pollution levels. We found that the governance shortage for pollution control accounted for about 50-70% of the province-specific air pollution levels. Our results indicate that China still has a much policy space to mitigate air pollutions. Particularly, in the Post-COVID-19 Era when industrial activities are recovered, pollution-control governance would be vital to make China’s economic growth sustainable.
Item Type: | MPRA Paper |
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Original Title: | Air pollutions and its control governance in Chinese provinces in post-COVID-19 era: panel estimations of provincial environmental Kuznets curves |
Language: | English |
Keywords: | air pollutions, pollution-control governance, Chinese provinces, environmental Kuznets curve |
Subjects: | O - Economic Development, Innovation, Technological Change, and Growth > O5 - Economywide Country Studies > O53 - Asia including Middle East Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q53 - Air Pollution ; Water Pollution ; Noise ; Hazardous Waste ; Solid Waste ; Recycling Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q58 - Government Policy |
Item ID: | 121488 |
Depositing User: | Dr. Hiroyuki Taguchi |
Date Deposited: | 17 Jul 2024 07:00 |
Last Modified: | 17 Jul 2024 07:00 |
References: | Brajer, V., Mead, R.W., and Xiao, F. 2011. Searching for an Environmental Kuznets Curve in China's air pollution. China Economic Review, 22: 383–397. Chang, H.Y., Wang, W., Yu, J. 2021. Revisiting the environmental Kuznets curve in China: A spatial dynamic panel data approach. Energy Economics, 104: 105600. Chen, L., and Chen, S. 2015. The Estimation of Environmental Kuznets Curve in China: Nonparametric Panel Approach. Computational Economics, 46:405–420. Cui, L., Hunt, A., and Morley, B. 2021. The Effectiveness of Environmental Spending in China and the Environmental Kuznets Curve. Sustainability, 13: 12141. Dasgupta, S., Laplante, B., Wang, H., and Wheeler, D. 2002. Confronting the Environmental Kuznets Curve. Journal of Economic Perspectives, 16(1): 147–168. Dinda, S. 2004. Environmental Kuznets Curve hypothesis: a survey. Ecological Economics, 49: 431–455. Fan, G., Ma, G., and Wang, X. 2019. Institutional reform and economic growth of China: 40-year progress toward marketization. Acta Oeconomica, 69(s1): 7–20. Grossman, G., and Krueger, A. 1995. Economic growth and the environment. Quarterly Journal of Economics, 112: 353–378. Hausman, J. 1978. Specification tests in econometrics. Econometrica, 46: 1251–1271. Im, K.S., Pesaran, M.H., and Shin, Y. 2003. Testing for unit roots in heterogeneous panels. Journal of Econometrics, 115: 53–74. Jayanthakumaran, K., and Liu, Y. 2012. Openness and the Environmental Kuznets Curve: Evidence from China. Economic Modelling, 29: 566–576. Kareem, F.O., Martinez-Zarzoso, I., and Brümmer, B. 2016. Fitting the Gravity Model When Zero Trade Flows are Frequent: A Comparison of Estimation Techniques Using Africa's Trade Data. Global Food Discussion Papers, No. 77. Levin, A., Lin, C.F., and Chu, C. 2002. Unit root tests in panel data: Asymptotic and finite-sample properties. Journal of Econometrics, 108: 1–24. Li, X., Yan, X., An, Q., Chen, K., and Shen, Z. 2016. The coordination between China’s economic growth and environmental emission from the Environmental Kuznets Curve viewpoint. Natural Hazards, 83: 233–252. Liu, X., Heilig, G.K., Chen, J., and Mikko Heino, M. 2007. Interactions between economic growth and environmental quality in Shenzhen, China's first special economic zone. Ecological Economics, 62: 559–570. Lopez, R. 1994. The environment as a factor of production: the effects of economic growth and trade liberalization, Journal of Environmental Economics and Management, 27(2): 163–184. Pedroni, P. 2004. Panel Cointegration; Asymptotic and Finite Sample Properties of Pooled Time Series Tests with an Application to the PPP Hypothesis. Econometric Theory, 20: 597–625. MacBean, A. 2007. China’s environment: problems and policies. The World Economy, 30(2): 195–362. Moriwaki, S., and Shimizu, M. 2023. A simultaneous investigation of the environmental Kuznets curve for the agricultural and industrial sectors in China. Journal of the Asia Pacific Economy, 28(1): 133–155. Mukhopadhyay, K., and Chakraborty, D. 2005. Is liberalization of trade good for the environment? Evidence from India. Asia-Pacific Development Journal, 12(1): 109-136. Sarkodie, S.A., and Strezov, V. 2019. A review on Environmental Kuznets Curve hypothesis using bibliometric and meta-analysis. Science of the Total Environment, 649: 128–145. Selden, T.M., and Song, D. 1994. Environmental quality and development: is there a Kuznets Curve for air pollution emissions? Journal of Environmental Economics and Management, 27: 147–162. Shen, J. 2006. A simultaneous estimation of Environmental Kuznets Curve: Evidence from China. China Economic Review, 17: 383–394. Silva, J.M.C.S., and Tenreyro, S. 2006. The log of gravity. The Review of Economics and Statistics, 88: 641–658. Song, M.L., Zhang, W., and Wang, S.H. 2013. Inflection point of environmental Kuznets curve in Mainland China. Energy Policy, 57: 14–20. Song, T., Zheng, T., and Tong, L. 2008. An empirical test of the environmental Kuznets curve in China: A panel cointegration approach. China Economic Review, 19: 381–392. Song, W., Ye, C., Liu, Y., and Cheng, W. 2021. Do China’s Urban–Environmental Quality and Economic Growth Conform to the Environmental Kuznets Curve? International Journal of Environment Research and Public Health, 18: 13420. Stokey, N. L. 1998. Are there limits to growth? International Economic Review, 39: 1–31. Taguchi, H., and Murofushi, H. 2010. Evidence on the interjurisdictional competition for polluted industries within China. Environment and Development Economics, 15(3): 363–378, Taguchi, H. 2012. Environmental Kuznets Curve in Asia: The Case of SO2 and CO2 Emissions. Asia-Pacific Development Journal, 19(2): 77–92. Wang, Y., Han, R., and Kubota, J. 2016. Is there an Environmental Kuznets Curve for SO2 emissions? A semi-parametric panel data analysis for China. Renewable and Sustainable Energy Reviews, 54: 1182–1188. World Bank 1992. Development and the Environment, World Development Report. Washington, D.C.: Oxford University Press. World Bank 2022. China: Country Climate and Development Report, World Development Report. Washington, D.C.: World Bank. Wu, X., and Gao, M. 2021. Effects of different environmental regulations and their heterogeneity on air pollution control in China. Journal of Regulatory Economics, 60:140–166. Xu, B., Zhong, R., Liu, D., and Liu, Y. 2021. Investigating the impact of energy consumption and nitrogen fertilizer on NOx emissions in China based on the environmental Kuznets curve. Environment, Development and Sustainability, 23:17590–17605. Yan, J., Lu, W., Xu, X., and Lian, J. 2023. Empirical Study of the Environmental Kuznets Curve in China Based on Provincial Panel Data. Sustainability, 15: 5225. Zheng, S., Yi, H., and Li, H. 2015. The impacts of provincial energy and environmental policies on air pollution control in China. Renewable and Sustainable Energy Reviews, 49: 386–394. |
URI: | https://mpra.ub.uni-muenchen.de/id/eprint/121488 |