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江苏省土壤有机碳空间差异性以及影响因素研究
作者姓名:CHUAI Xiao-Wei  HUANG Xian-Jin  WANG Wan-Jing  ZHANG Mei  LAI Li  LIAO Qi-Lin
作者单位:School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China);Land Development and Consolidation Technology Engineering Center of Jiangsu Province, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China);Department of Urban and Resource Sciences, Jinling College, Nanjing University, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China);Jiangsu information Center, Nanjing 210013 (China);Geological Survey of Jiangsu Province, Nanjing 210018 (China)
基金项目:Supported by the National Social Science Foundation of China (Nos. 10ZD & M030);the Non-Profit Industry Financial Program of the Ministry of Land and Resources of China (No. 200811033);the Foundation of Philosophy and Social Sciences Research of Jiangsu Higher Education Institutions,China (No. 2010ZDAXM008);the Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions,China
摘    要:Soil organic carbon (SOC) plays a key role in the global carbon cycle.In this study,we used statistical and geostatistical methods to characterize and compare the spatial heterogeneity of SOC in soils of Jiangsu Province,China,and investigate the factors that influence it,such as topography,soil type,and land use.Our study was based on 24 186 soil samples obtained from the surface soil layer (0-0.2 m) and covering the entire area of the province.Interpolated values of SOC density in the surface layer,obtained by kriging based on a spherical model,ranged between 3.25 and 32.43 kg m 3.The highest SOC densities tended to occur in the Taihu Plain,Lixia River Plain,along the Yangtze River,and in high-elevation hilly areas such as those in northern and southwest Jiangsu,while the lowest values were found in the coastal plain.Elevation,slope,soil type,and land use type significantly affected SOC densities.Steeper slope tended to result in SOC decline.Correlation between elevation and SOC densities was positive in the hill areas but negative in the low plain areas,probably due to the effect of different land cover types,temperature,and soil fertility.High SOC densities were usually found in limestone and paddy soils and low densities in coastal saline soils and alluvial soils,indicating that high clay and silt contents in the soils could lead to an increase,and high sand content to a decrease in the accumulation of SOC.SOC densities were sensitive to land use and usually increased in towns,woodland,paddy land,and shallow water areas,which were strongly affected by industrial and human activities,covered with highly productive vegetation,or subject to long-term use of organic fertilizers or flooding conditions.

关 键 词:industrial  and  human  activities  land  cover  land  use  soil  type  topography
收稿时间:21 November 2011

Spatial variability of soil organic carbon and related factors in Jiangsu Province, China
CHUAI Xiao-Wei,HUANG Xian-Jin,WANG Wan-Jing,ZHANG Mei,LAI Li,LIAO Qi-Lin.Spatial variability of soil organic carbon and related factors in Jiangsu Province, China[J].Pedosphere,2012,22(3):404-414.
Authors:CHUAI Xiao-Wei  HUANG Xian-Jin  WANG Wan-Jing  ZHANG Mei  LAI Li and LIAO Qi-Lin
Institution:School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210093 (China); Land Development and Consolidation Technology Engineering Center of Jiangsu Province, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210094 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210095 (China); Department of Urban and Resource Sciences, Jinling College, Nanjing University, Nanjing 210093 (China);School of Geographic & Oceanographic Sciences, Nanjing University, Nanjing 210096 (China); Jiangsu information Center, Nanjing 210013 (China);Geological Survey of Jiangsu Province, Nanjing 210018 (China)
Abstract:Soil organic carbon (SOC) plays a key role in the global carbon cycle. In this study, we used statistical and geostatistical methods to characterize and compare the spatial heterogeneity of SOC in soils of Jiangsu Province, China, and investigate the factors that influence it, such as topography, soil type and land use. Our study was based on 24 186 soil samples obtained from the surface soil layer (0--0.2 m) and covering the entire area of the province. Interpolated values of SOC density in the surface layer, obtained by kriging based on a spherical model, ranged between 3.25--32.43 kg m-3. The highest SOC densities tended to occur in the Taihu Plain, Lixia River Plain, along the Yangtze River, and in high-elevation hilly areas such as those in northern and southwest Jiangsu, while the lowest values were found in the coastal plain. Elevation, slope, soil type, and land use type significantly affected SOC densities. Steeper slope tended to result in SOC decline. Correlation between elevation and SOC densities was positive in the hill areas but negative in the low plain areas, probably due to the effect of different land cover types, temperature, and soil fertility. High SOC densities were usually found in limestone and paddy soils and low densities in coastal saline soils and alluvial soils, indicating that high clay and silt contents in the soils could lead to an increase, and high sand content to a decrease in the accumulation of SOC. SOC densities were sensitive to land use and usually increased in towns, woodland, paddy land, and shallow water areas, which were strongly affected by industrial and human activities, covered with highly productive vegetation, or subject to long-term use of organic fertilizers or flooding conditions.
Keywords:industrial and human activities  land cover  land use  soil type  topography
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