LI Xin-qiao, ZHANG Yan-fang. Space Differentiation Characteristics and Driving Factors of Industuial Carbon Emissions in Xi'an City[J]. Bulletin of Soiland Water Conservation, 2014, 33(5): 226-231.
DOI:
LI Xin-qiao, ZHANG Yan-fang. Space Differentiation Characteristics and Driving Factors of Industuial Carbon Emissions in Xi'an City[J]. Bulletin of Soiland Water Conservation, 2014, 33(5): 226-231. DOI: 10.13961/j.cnki.stbctb.2014.05.048.
Space Differentiation Characteristics and Driving Factors of Industuial Carbon Emissions in Xi'an City
Applying the data of industrial energy consumption from 1997 to 2011
the data of energy consumption per unit of GDP in districts or counties of Xi'an City in 2010 were estimated
and the model to analyze the carbon emissions driving factors was built by using STIRPAT model. The results show that all kinds of carbon emissions presented generally
an increasing trend during 1997-2011. Carbon emissions
carbon emissions output and per capita carbon emissions and carbon emissions per unit area of land presented significant regional differences in each district or county. Moran index showed that the spatial correlation of carbon emissions in each district or county was positive correlation
and the spatial distribution feature of carbon emissions was that:the district or county with higher carbon emissions tended to aggregate to the one's of the higher
the district or county of lower carbon emissions tended to aggregate to the one's of the lower. The STIRPAT model showed that:the influence degree of economic development
population scale
industrial structure and technical level on carbon emissions was different. Moreover
economic development played the decisive role on increasing carbon emissions
but the industrial structure optimization had inhibitory effect on the increasing of carbon emissions.
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references
Hammond G P, Norman J B. Decomposition analysis of energy-related carbon emissions from UK Manufa-cturing[J]. Energy, 2012,41(1):220-227.
Benhelal E, Zahedi G, Shamsaei E, et al. Global strategies and potentials to curb CO
2
emissions in cement industry[J]. Journal of Cleaner Production, 2013,51(7):142-161.
Jan Deja, Alicja Uliasz-Bochenczyk, Eugeniusz Mokrzycki.CO
2
emissions from Polish cement industry[J].International Journal of Greenhouse Gas Control, 2010,4(4):583-588.
Martin K, Enevoldsen, Anders V. Decoupling of industrial energy consumption and CO
2
emissions in energy intensive industries in Scandinavia[J]. Energy Economics, 2007,29(4):665-692.
Tang Decai, Song Ping, Zhong Fengxia, et al. Research on evaluation index system of low-carbon manu-facturing industry[J].Energy Procedia, 2012(16):541-546.
Zhang Fuwei, Guo Ying, Chen Xiaoping. Research on China's power sector carbon emissions trading, mec-hanism[J]. Energy Procedia, 2011(12):127-132.
Tian Lixin, Jin Rulei. Theoretical exploration of carbon emissions dynamic evolutionary system and evoluti-onary scenario analysis[J]. Energy, 2012,40(1):376-386.
IPCC.2006 IPCC guidelines for national green house gas inventories:VolumeⅡ[EB/OL]. Japan:the Institute for Global Environmental Strategies[2008-07-20].http//www.ipcc.ch/ipcc reports/Methodology-reports.htm.
York R, Rosa E A, Dietz T. STIRPAT, IPAT and IMPACT:analytic tools for unpacking the driving forces of environmental impacts[J].Ecological Economics, 2003,46(3):351-365.