RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2018, Vol. 27 >> Issue (07): 1410-.doi: 10.11870/cjlyzyyhj201807016

Previous Articles     Next Articles

Spatial Pattern Reconstruction of Soil Organic Carbon Storage Based on CAMarkov#br# —— A Case Study in PanYangtze River Delta

ZHOU Jie, ZHANG Xueru, MU Fengyun, ZHAO Ruiyi, ZHOU Wei, LI Mengmei   

  1. (Collage of Architecture and Urban Planning of Chongqing Jiaotong University, Chongqing 400074, China)
  • Online:2018-07-20 Published:2018-11-09

Abstract: According to the national and international theories and the actual situation of PanYangtze River Delta, the authors select ten driving factors as the leading forces of land use change, such as elevation, slope aspect, slope grade, GDP, population, temperature, rainfall, river distance, urban distance and coastline distance. Firstly, the study accomplish the maps of land suitability by Logistic analysis based on above factors. With the application of CAMarkov model, the land use pattern of six periods in 2000, 1995, 1990, 1985, 1980 and 1975 is simulated. Secondly, the paper uses the method of full number detection to test the accuracy test for simulation results. Lastly, the paper calculate the soil organic carbon storage in PanYangtze River Delta. On the basis, we reconstruct the historical spatial pattern of soil organic carbon storage in research area. There are several important findings: ①CAMarkov model is feasible for historical land use simulation owing to the model simulation accuracy is 8873%. ②The history of soil organic carbon storage in the PanYangtze River Delta was significantly higher than 2010, and it was increasing progressively from now to historical periods; soil organic carbon reserves were as 32351Pg, 32419.Pg, 32476Pg, 32518Pg and 32553Pg in 1995, 1990, 1985, 1980 and 1975, respectively. ③The spatial pattern of soil organic carbon storage in the Yangtze River Delta was high in the north, low in the south, the land use types were closely related to the soil organic carbon reserves, and the organic carbon reserves in urban builtup areas were lower than those in other areas, the increase of soil organic carbon storage mainly appeared in its high value area, land use types were closely related to the soil organic carbon reserves, and the organic carbon reserves in urban builtup areas were lower than those in other areas, the increase of soil organic carbon storage mainly appeared in its high value area. ④The increase of cultivated land and forestland area and the decrease of construction land area led to the increase of organic carbon storage from 1995 to 1975. The spatial pattern of soil organic carbon storage in historical period can be effectively reconstructed based on the CAMarkov model.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] LUO Zhuan-xi, ZHANG Yuan, ZHENG Bing-hui, FU Guo,LU Zhao-hua. ANALYSIS OF AQUATIC ENVIRONMENTAL CHARACTERS IN THREE GORGES RESERVOIR OF CHINA AT EARLY RESERVING STAGE[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2005, 14(6): 781 -784 .
[2] LI Jia-lin,XU Ji-qing,TONG Yi-qin,YANG Xiao-ping,ZHANG Dian-fa. ANALYSIS ON THE CHANGE OF LAND USE AND COVER SPATIAL PATTERN IN COASTAL PLAIN OF SOUTH HANGZHOUWAN BAY[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2005, 14(6): 709 -713 .
[3] YANG Zhirong| Wu Cifang,JIN Xiangmu, YAO Qiuping. COMPARATIVE STUDY ON URBAN LAND USE ECONOMIC BENEFIT BASED ON DEA[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2009, 18(1): 14 .
[4] GUO Wei-Hua, WANG Zhu. DIATOM CHANGES IN THE OUTLET AREA OF JIALING RIVER IN SPRING DURING STORING WATER TO 175 METER (ELEVATION) IN THE THREE GORGES〖[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2010, 19(z1): 101 .
[5] MA Li, JIA Li-Zhong, LI Yun-Dong, YANG Lin-Zhang, TUN Dian-Meng, CHENG Xun-Jiang. INVESTIGATION OF LAND RESOURCES,ECONOMIC STATUS AND SATISFACTION LEVEL OF RESETTLERS IN RESETTLEMENT REGION OF HEAD PART OF THE THREE GORGES RESERVOIR[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2011, 20(1): 21 .
[6] WANG Xiuxin1,2,ZHU Qijiang2,LIANG Zongjin1. INFLUENCE OF VEGETATION COVERAGE SPATIOTEMPORAL VARIANCE ON LAND SURFACE THERMAL FIELD IN UPPER REACHES OF THE LIJIANG RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2011, 20(12): 1502 .
[7] WANG Yi. COMPREHENSIVE EVALUATION OF COMPLEX SYSTEM OF LOWCARBON ECONOMY IN CHINA BASED ON THE CATASTROPHE PROGRESSION METHOD [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2012, 21(05): 525 .
[8] JIN Yan1,2| CHE Yue1,2| YANG Kai1. ZONING OF RIVER NETWORK PROTECTION BASED ON MINIMUM CUMULATIVE RESISTANCE MODEL[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2013, 22(01): 8 .
[9] LI Pingxing|SUN Wei. PATTERN AND DRIVING MECHNISMS OF URBAN EXPANSION OF 
SOUTHERN JIANGSU PROVINCE SINCE REFORM AND OPENING UP
[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2013, 22(12): 1529 .
[10] ZHANG Xiao-yu, ZHANG An-lu. SMALL-SCALE SPATIAL PATTERNS OF FARMLAND CONVERSION BASED ON AUTOCORRELATION ANALYSIS IN WUHAN CITY[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2015, 24(05): 781 -788 .