ISSN 1006-3021 CN11-3474/P
Published bimonthly started in 1979
典型岩溶断陷盆地溶蚀速率对海拔高度和土地利用方式的响应
  
关键词:karst dissolution rate  land use types  altitude  influence factors  karst faulted basin
基金项目:国家重点研发计划课题(编号: 2016YFC0502506);广西重点研发计划项目(编号: 桂科AB110004);基本科研业务费专项经费(编号: JYYWF20182003)
作者单位E-mail
柯静 中国地质科学院岩溶地质研究所, 自然资源部岩溶生态系统与石漠化治理重点实验室,自然资源部/广西岩溶动力学重点实验室 ke_jingst@163.com 
邓艳 中国地质科学院岩溶地质研究所, 自然资源部岩溶生态系统与石漠化治理重点实验室,自然资源部/广西岩溶动力学重点实验室 dydesk@karst.ac.cn 
岳祥飞 中国地质科学院岩溶地质研究所, 自然资源部岩溶生态系统与石漠化治理重点实验室,自然资源部/广西岩溶动力学重点实验室  
梁锦桃 中国地质科学院岩溶地质研究所, 自然资源部岩溶生态系统与石漠化治理重点实验室,自然资源部/广西岩溶动力学重点实验室
桂林理工大学环境科学与工程学院 
 
李旭尧 中国地质科学院岩溶地质研究所, 自然资源部岩溶生态系统与石漠化治理重点实验室,自然资源部/广西岩溶动力学重点实验室
桂林理工大学环境科学与工程学院 
 
曹建华 中国地质科学院岩溶地质研究所, 自然资源部岩溶生态系统与石漠化治理重点实验室,自然资源部/广西岩溶动力学重点实验室  
吴松 桂林理工大学环境科学与工程学院  
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摘要:
The Response of the Karst Dissolution Rate to Altitude and Land Use Types in Typical Karst Faulted Basin
      This research aims at revealing the response of the karst dissolution rate to altitude and land use types in typical karst faulted basin and exploring the effects of soil factors on karst dissolution rate. In this study, six different land use types (abandoned cultivated land, grassland, shrub land, pine forest land, cypress forest land, other forest land) with different altitudes (Zhongshan area, Pingba area and Valley area) were chosen in Xiaojiang River Basin of Yunnan Province as a case study to investigate karst dissolution in typical karst faulted basin. Standard dissolution test, correlation analysis, regression analysis and other statistical methods were used to compare the karst dissolution rates under different land use types, altitudes and soil depths, then determine the influence factors. The results show that the average karst dissolution rate of 0–60 cm under the soil was in order of pine forest land ((3.98±0.41) mg·cm–2·a–1) > grassland ((3.59±0.45) mg·cm–2·a–1) > abandoned cultivated land ((3.16±0.42) mg·cm–2·a–1) > shrub land ((2.90±0.44) mg·cm–2·a–1) > other forest land ((2.21±0.18) mg·cm–2·a–1) > cypress forest land ((2.16±0.28) mg·cm–2·a–1); from 5 cm to 60 cm under the soil, the average karst dissolution rate increased sequentially. And the karst dissolution rate had a very significant positive correlation with altitude (R=0.328, p<0.01). According to the preliminary estimation results of karst carbon sink in the study area, the average karst carbon sink intensity was 12.80 tCO2·km–2·a–1; the annual carbon sinks under the forest land, cultivated land and grassland totaled 11 613.11 tCO2·a–1, which was about 0.38% of the annual karst carbon sink in the Pearl River Basin. For the influence factors, the karst dissolution rate under each land use was different due to the different main control factors; Precipitation and soil organic matter were the main controlling factors for the karst dissolution rate with altitude; the soil moisture and soil CO2 were the main controlling factors affecting the karst dissolution rate in different soil depths. The research results can provide reference for regional rocky desertification control, ecological restoration and carbon sink research.
KE Jing,DENG Yan,YUE Xiang-fei,LIANG Jin-tao,LI Xu-yao,CAO Jian-hua,WU Song.2021.The Response of the Karst Dissolution Rate to Altitude and Land Use Types in Typical Karst Faulted Basin[J].Acta Geoscientica Sinica,42(3):407-416.
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