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Relationships of soil organic carbon with its active and non-active components under different land use types in the middle reaches of Heihe River, China.

ZHANG Jun-hua1,2, LI Guo-dong1,2, WANG Yan-song1,2, NAN Zhong-ren3, ZHAO Li-ping4   

  1. (1Institute of Natural Resources and Environmental Science Research, Henan University, Kaifeng 475004, Henan, China; 2College of Environment and Planning of Henan University, Kaifeng 475004, Henan, China; 3College of Resource and Environmental Sciences, Landzhou University, Lanzhou 730000, China; 4Guangdong University of Business Studies, Guangzhou 510320, China)
  • Online:2012-12-18 Published:2012-12-18

Abstract: Taking the seven typical land use types (paddy field, dry land, medium coverage grassland, saline-alkali field, bare land, desert, and sandlot) in the middle reaches of Heihe River as test objects, this paper studied the relationships of soil organic carbon content with its components. In the 0-100 cm soil profile, the contents of soil total organic carbon (TOC), active organic carbon (AOC), and nonactive organic carbon (NOC) decreased with increasing depth. The soil TOC, AOC, and NOC contents differed with land use type. Land use change induced the increase or decrease of soil organic carbon content. The tillage in paddy field was an available way to increase the contents of soil TOC, AOC, and NOC. After land use change, soil NOC rather than AOC contributed more to soil TOC content. For the same land use types, soil AOC and NOC contents increased together with increasing soil TOC content, and the NOC content increased faster than the AOC content. The soil TOC content corresponding to the crossing point of the variation trend lines of soil AOC and NOC contents could be considered as the boundary point of TOC accumulation or loss, and the saturation capacities of soil AOC and NOC could be obtained by the variation trend lines of the AOC and NOC.