Effects of Endogenous Factors on Regional Land-Use Carbon Emissions Based on the Grossman Decomposition Model: A Case Study of Zhejiang Province, China

被引:0
作者
Cifang Wu
Guan Li
Wenze Yue
Rucheng Lu
Zhangwei Lu
Heyuan You
机构
[1] Zhejiang University,Institute of Land Science and Property Management
[2] Zhejiang University,Land Academy for National Development
[3] Guangxi Teachers Education University,School of Land Resources and Surveying
[4] Zhejiang Agriculture and Forestry University,College of Environmental and Resource Sciences
[5] Zhejiang University of Finance and Economics,School of Urban
来源
Environmental Management | 2015年 / 55卷
关键词
Land use; Carbon emissions; Grossman decomposition model; Zhejiang Province;
D O I
暂无
中图分类号
学科分类号
摘要
The impact of land-use change on greenhouse gas emissions has become a core issue in current studies on global change and carbon cycle. However, a comprehensive evaluation of the effects of land-use changes on carbon emissions is very necessary. This paper attempted to apply the Grossman decomposition model to estimate the scale, structural, and management effects of land-use carbon emissions based on final energy consumption by establishing the relationship between the types of land use and carbon emissions in energy consumption. It was shown that land-use carbon emissions increase from 169.5624 million tons in 2000 to 637.0984 million tons in 2010, with an annual average growth rate of 14.15 %. Meanwhile, land-use carbon intensity increased from 17.59 t/ha in 2000 to 64.42 t/ha in 2010, with an average annual growth rate of 13.86 %. The results indicated that rapid industrialization and urbanization in Zhejiang Province promptly increased urban land and industrial land, which consequently affected land-use extensive emissions. The structural and management effects did not mitigate land-use carbon emissions. By contrast, both factors evidently affected the growth of carbon emissions because of the rigid demands of energy-intensive land-use types and the absence of land management. Results called for the policy implications of optimizing land-use structures and strengthening land-use management.
引用
收藏
页码:467 / 478
页数:11
相关论文
共 184 条
[1]  
Achard F(2004)Improved estimates of net carbon emissions from land cover change in the tropics for the 1990s Glob Biogeochem Cy 18 GB2008-1095
[2]  
Eva HD(1995)Decomposition methodology in industrial energy demand analysis Energy 20 1081-73
[3]  
Mayaux P(1997)Decomposition of aggregate energy and gas emission intensities for industry: a refined Divisia index method Energy J 18 59-92
[4]  
Stibig HJ(1994)Decomposition of industrial energy consumption: some methodological and application issues Energy Econ 16 83-305
[5]  
Belward A(1999)Inter-regional comparisons of energy-related CO Energy 24 297-495
[6]  
Ang BW(1998) emissions using the decomposition technique Energy 23 489-389
[7]  
Ang BW(2013)Factorizing changes in energy and environmental indicators through decomposition Biofuels Bioprod Biorefin 7 115-18870
[8]  
Choi KH(1999)Future GHG emissions more efficiently controlled by land-use policies than by bioenergy sustainability criteria J Soil Water Conserv 54 382-686
[9]  
Ang B(2007)Carbon sequestration in soils Proc Natl Acad Sci USA 104 18866-1504
[10]  
Lee S(1999)Contributions to accelerating atmospheric CO2 growth from economic activity, carbon intensity, and efficiency of natural sinks Ambio 28 682-14261