References:
[1] Wang, W. J., Chen, Z. L. Research on the allocation scheme of initial carbon quota in provincial regions of China: Based on the perspective of responsibility and goal, fairness and efficiency [J]. Management World, 2019, 35(3): 81-98.
     [2] Zhou, P., Wang, M. Carbon dioxide emissions allocation: A review [J]. Ecological Economics, 2016, 125: 47-59.
     [3] Qian, H. Q., Wu, L. B., Ren, F. Z. From “spurring a willing horse” to efficiency driven: A study of China’s regional CO2 emission permit allocation [J]. Economic Research Journal, 2019, (3): 86-102.
     [4] Feng, D., Yu, B. L., Hadachin, T., et al. Drivers of carbon emission intensity change in China [J]. Resources, Conservation & Recycling, 2018, 129: 187-201.
     [5] Junna, Y., Bin, S., Yu, L. Multiplicative structural decomposition and attribution analysis of carbon emission intensity in China, 2002–2012 [J]. Journal of Cleaner Production, 2018, 198: 195-207.
     [6] Chen, C., Zhao, T., Yuan, R., et al. A spatial-temporal decomposition analysis of China’ s carbon intensity from the economic perspective [J]. Journal of Cleaner Production, 2019, 215: 557-569.
     [7] Ye, B., Jiang, J. J., Li, C., et al. Quantification and driving force analysis of provincial-level carbon emissions in China [J]. Applied Energy, 2017, 198: 223-238.
     [8] Lu, W. B., Qiu, T. T., Du, L. A study on influence factors of carbon emissions under different economic growth stages in China [J]. Economic Research Journal, 2013, 48(4): 106-118.
     [9] Sun, Y. Z., Shen, L., Zhong, S., et al. Driving force analysis of carbon emission changes in China [J]. Resources Science, 2017, 39(12): 2265-2274.
     [10] Pan, J. H., Zhang, L. F. Research on the regional variation of carbon productivity in China [J]. China Industrial Economics, 2011(5): 47-57.
     [11] Mielnik, O., Goldemberg, J. The Evolution of the “Carbonization Index” in developing countries [J]. Energy Policy, 1999, 27 (5): 307-308.
     [12] Ma, D. L., Chen, Z. C., Wang, L. Spatial econometrics research on inter-provincial carbon emissions efficiency in China [J]. China Population, Resources and Environment, 2015, 25(1): 67-77.
     [13] Yang, Z., Chen, L. X., Luo T. Marginal cost of emission reduction and regional differences [J]. Journal of Management Sciences in China, 2019, 22(2): 1-21
     [14] Wang, W. W., Li, M., Zhang, M. Study on the changes of the decoupling indicator between energy - related CO2, emission and GDP in China [J]. Energy, 2017, 128: 11-18.
     [15] Huang, R., Liu, C. X. Analysis of the impact of China's participation in global climate governance [J]. Geographical Research, 2017, 36(11): 2213-2224.
     [16] IPCC/OECD. 2006 IPCC Guidelines for National Green-house Gas Inventories [OL]. https://www.ipcc-nggip. iges.or.jp/public/2006gl/pdf/2_Volume2/V2_2_Ch2_Stationary_Combustion.pdf, 2019-08-02.
     [17] Diakoulaki, D., Mandaraka, M. Decomposition analysis for assessing the progress in decoupling industrial growth from CO2 emissions in the EU manufacturing sector [J]. Energy Economics, 2007, 29(4): 636-664.
     [18] Ang, B. W. LMDI decomposition approach: A guide for implementation [J]. Energy Policy, 2015, 86: 233-238.