[1] Ang B W, 2005. The LMDI approach to decomposition analysis: a practical guide. Energy Policy, 33: 867-871. doi: 10.1016/j. enpol.2003.10.010
[2] Ang B W, Liu F L, Chew E P, 2003. Perfect decomposition tech-niques in energy and environmental analysis. Energy Policy, 31: 1561-1566.
[3] Ang B W, Zhang F, Choi K, 1998. Factorizing changes in energy and environmental indicators through decomposition. Energy, 23(6): 489-495.
[4] Chen Yanbin, Chen Cai, 2011. Characteristics of industrial structure evolution of Jilin Province since reform and opening up. Geography and Geo-Information Science, 27(5): 55-59. (in Chinese)
[5] Dong J, Zhang X, 2010. Decomposition of carbon emissions and low carbon strategies for industrial sector energy consumption in China. Resources Science, 32(10): 1856-1862. (in Chinese)
[6] Du L M, Wei C, Cai S H, 2012. Economic development and carbon dioxide emissions in China: Provincial panel data analysis. China Economic Review, 23: 371-384. doi: 10. 1016/j. chieco.2012.02.004
[7] Guo Chaoxian, 2010. Decomposition of China's carbon emis-sions: based on LMID method. China Population, Resources and Environment, 20(12): 4-9. (in Chinese)
[8] Hasanbeigi A, Price L, Fino-chen C et al., 2013. Retrospective and prospective decomposition analysis of Chinese manufacturing energy use and policy implications. Energy Policy, 63: 562-574. doi:  10.1016/j.enpol.2013.08.067
[9] IPCC (Intergovernmental Panel on Climate Change), 2006. IPCC Guidelines for National Greenhouse Gas Inventories. Japan: Institute for Global Environmental Strategies.
[10] Jilin Statistical Bureau, 2005-2014. Jilin Statistical Yearbook 2004-2013. Beijing: China Statistics Press.
[11] Li Guoping, Yuan Yuan, 2014. Impact of regional development on carbon emission: empirical evidence across countries. Chinese Geographical Science, 24(5): 499-510. doi: 10. 1007/s11769-014-0710-5
[12] Li Shaoping, Wang Qian, Liu Yang, 2013. Empirical study of the influencing factors of industrial carbon emission in the north-east old industrial base based on LMDI model. Journal of China University of Petroleum (Edition of Social Sciences), 29(4): 18-22. (in Chinese)
[13] Liu L C, Fan Y, Wu G et al., 2007. Using LMDI method to ana-lyze the change of China's industrial CO2 emissions from final fuel use: an empirical analysis. Energy Policy, 35: 5892-5900. doi:  10.1016/j.enpol.2007.07.010
[14] Liu Qingchun, Kong Lingqun, An Zeyang, 2014. Decomposition analysis of energy: related carbon emissions from China manufacturing. China Population, Resources and Environ-ment, 24(S2): 14-18. (in Chinese)
[15] National Bureau of Statistics, 2005-2011. China Statistical Yearbook 2004-2010. Beijing: China Statistics Press.
[16] Pan Xiongfeng, Shu Tao, Xu Dawei, 2011. On the changes in the carbon emission intensity of China's manufacturing industry and its factors decomposition. China Population, Resources and Environment, 21(5): 101-105. (in Chinese)
[17] Shang Hongyun, Jiang Ping, 2009. The structure decomposition analysis of factors influencing energy consumption change in China. Resources Science, 31(2): 214-223. (in Chinese)
[18] Tian Lei, Tang Jie, Huang Lusi et al., 2014 Decomposition anal-ysis of CO2 emission intensity of Jilin industry using LMDI. Ecological Economy, 30: 40-46. (in Chinese)
[19] Wang Junsong, He Canfei, 2010. Energy consumption, economic growth and CO2 emissions in China: analysis based on LMDI method. Resources and Environment in the Yangtze Basin, 19(1): 18-23. (in Chinese)
[20] Wang Liping, Zhang Haibo, Liu Yun, 2014a. An empirical analy-sis of influence factors of carbon emissions in China based on EBA Model. Scientia Geographica Sinica, 34(1): 47-53. (in Chinese)
[21] Wang Shaohua, Yu Weiyang, Zhang Wei, 2014b. Contribution analysis of energy structure or energy efficiency to carbon in-tensity in manufacturing based on panel data. Environmental Engineering, 32(9): 167-171. (in Chinese)
[22] Zhang Dan, Zheng Haifeng, Ren Zhibin et al., 2015. Effects of forest type and urbanization on carbon storage of urban forests in Changchun, Northeast China. Chinese Geographical Science, 25(2): 147-158. doi:  10.1007/s11769-015-0743-4
[23] Zhang Huimin, Wei Qiang, Tong Lianjun, 2013. The empirical analysis of industrial development and energy consumption in Jilin Province. Acta Geographica Sinica, 68(12): 1678-1688. (in Chinese)
[24] Zhang Yaxin, Zhang Pingyu, 2011. Assessment on the developing level of low carbon economy of Jilin Province. Journal of Arid Land Resources and Environment, 25(6): 43-48. (in Chinese)
[25] Zhao Y, Ke J, Ni C C et al., 2014. A comparative study of energy consumption and efficiency of Japanese and Chinese manu-facturing industry. Energy Policy, 70: 45-56. doi: 10.1016/j. enpol.2014.02.034