Citation: | LUO Wei-qun, JIANG Zhong-cheng, YANG Qi-yong, et al. 2018: The features of soil erosion and soil leakage in karst peak-cluster areas of Southwest China. Journal of Groundwater Science and Engineering, 6(1): 18-30. doi: 10.19637/j.cnki.2305-7068.2018.01.003 |
Jones R J. 1965. Aspects of the biological weathering of Limestone pavement. Procee-dings of the Geologists Association, 76(4): 421-434 .
|
PENG J, YANG M D. 2001. On the present soil erosion situation of Huajiang karst gorge in Guizhou Province. Journal of Mountain Science, 19(6):511-515 .
|
ZHANG X B, WANG S J. 2016. A discussion on the definition of soil leaking in a karst catch-ment. Carsologica Sinica. 35(5):602-603 .
|
LI Y S, WANG GX, et al. 2007. 137Cs Trace technique to study soil erosion at alpine meadow of Tibetan Plateau. Journal of Mountain Science, 25(1):114-121 .
|
WEN A B, ZHANG X B, et al. 2003. Study on sedimentation delivery ratio in upper longchuan river of Yungui Plateau Region. Journal of Soil Water Conservation, 17(4): 139-141 .
|
LV M H, WANG HY, CAI Y L. 2007. General review of soil erosion in the karst area of Southwest China. Progress in Geography, 26(2):87-96 .
|
ZHANG X B, WANG S J, et al. 2007. Soil creeping in weathering crusts of carbonate rocks and underground soil losses on karst slopes. Earth and Environment, 35(3):202- 206 .
|
LI J, XIONG K N. 2011. Particle analysis of soil in karst caves and its significance for water and soil erosion. Journal of Guizhou Normal University, 29(2):16-18 .
|
Gosden M S. 1968. Peat deposits of scar close, ingle borough, York-shire. Journal of Ecology, 56(2):345-353 .
|
LI Y B, WANG S J, LI R L. 2004. Some soil features of karst ecosystem. Ecology and Environment, 13(3):434-438 .
|
HE Yong-bin, ZHANG Xin-bao, WEN An-bang. 2009. Discussion on karst soil erosion mechanism in karst mountain area in southwest China. Ecology & Environmental Sciences, 18(6):2393-2398 .
|
ZHANG H J. 2000. Principle of soil erosion. Beijing: China Forestry Press, 267-280 .
|
Lowrance R J, McIntyre S, Lance C. 1988. Erosion and deposition in a field/forest system estimated using cesium-137 activity. Journal of Soil and Water Conservation, 43(2):195- 199 .
|
LI Z G, ZHANG G H, et al. 2005. Soil and water loss test and investigation. Beijing: China Water Conservancy and Hydropower, 144-155 .
|
YANG H, CHANG Q, et al. 1998. Quantitative model of soil erosion rates using 137Cs for uncultivated soil. Soil Science, 163(3):248- 257.
|
ZHANG Z W, FU W L, et al. 2007. Study on soil erosion of different degrees in karst region by using cesium-137 technique. Journal of Mountain Science, 25(3):302-308 .
|
TANG Q, BAO Y H, et al. 2011. New soil erosion monitoring methods and techniques. Science of Soil and Water Conservation, 9(2):11-18 .
|
LONG L, XIONG K, et al. 2005. On the soil erosion and control in Huajiang karst gorge of Guizhou Province. Journal of Guizhou Normal University (Natural Science), 23(3): 13-18 .
|
ZHANG X B, BAI X Y. 2011. Application of a 137Cs fingerprinting technique for interpreting responses of sediment deposition of a karst depression to deforestation in the Guizhou Plateau, China. Sci China Earth Sci, 54(3):431-437 .
|
YUAN Dao-xian. 1997. On the environmental and geologic problems of karst mountains in the Southwest China. Research and Development of World Science and Technology, 19(5): 41-43 .
|
ZHANG S H, LI SEN, et al. 2007. 137Cs distribution and its reference inventory in rocky desertification land in North Guangdong. Research of Soil & Water Conservation, 14(6):370-373 .
|
HE Q L, Walling D E. 1997. The distribution of fallout 137Cs and 210Pb in undisturbed and cultivated soils. Applied Radiation & Isotopes, 48(5):677-690 .
|
BAI X Y. 2011. Assessment of sediment and erosion rates by using the caesium-137 technique in a Chinese polygonal karst depression. Environmental Earth Sciences, 64(8): 2151-2158 .
|
FU W L, ZHANG Z W, et al. 2007. Study on characteristics of soil erosion on karst hillslope. Journal of Soil & Water Conservation, 21(5):38-41 .
|
WEI X P, YUAN D X, XIE S Y. 2010. Study on soil erosion and loss on slope in karst mountain valley area of chongqing valley with 137Cs and soil nutrient elements. Journal of Soil & Water Conservation, 24(6):16-18 .
|
BAI Z G, WAN G J. 1998. Study on watershed erosion rate and its environmental effects in Guizhou Karst region. Journal of Soil Water Conservation, 4(1):1-8 .
|
Collins A L, Walling D E, et al. 2001. Using 137Cs measurements to quantify soil erosion and redistribution rates for areas under different land use in the Upper Kaleya River basin, southern Zambia. Geoderma, 104(3-4): 299-323 .
|
ZHANG X B, HE X B, et al. 2006. Soil erosion rates under different land scale conditions. Bulletin of Soil and Water Conversion, 26(2): 69-71 .
|
YAN D C, WEN A B, et al. 2008. The distribution of 137Cs in hilly upland soil on the Qianzhong Karst Plateau. Earth & Environment, 36(4): 342-347 .
|
WANG J, CAI X F, et al. 2010. Laboratory simulation on soil erosion under different bedrock outcrop rate in Southwest karst area, China. Carsologica Sinica, 29(1):1-5 .
|
JIANG Zhong-cheng. 1996. An analysis on formation of the Karst Fengcong depressions in china. Beijing: Environmental Geology: Proceedings of the 30th International Geological Congress, China, (24):106-113 .
|
ZHANG X B, WANG S J, et al. 2010. Characteristics of water loss and soil erosion and some scientific problems on karst rocky desertification in Southwest China karst area. Carsologica Sinica, 29(3):274-279 .
|
JIANG Z C, LUO W Q, et al. 2014b. The leakage of water and soil in the karst peak cluster depression and its prevention and treatment. Acta Geoscientica Sinica, 35(5):535-542 .
|
FENG T, CHEN H S, et al. 2011. 137Cs profile distribution character and its implication for soil erosion on Karst slopes of northwest Guangxi. Chinese Journal of Applied Ecology, 22(3): 593-599 .
|
CAO J H, LU S L, et al. 2011. Process of soil and water loss and its control measures in karst regions, Southwestern China. Science of Soil & Water Conservation, 9(2): 52-56 .
|
TANG Y Q, ZHANG X H, et al. 2010. The mechanism of underground leakage of soil in karst rocky desertification areas-A case in Chenqi small watershed, Puding, Guizhou Province. Carsologica Sinica, 29(2):121-127 .
|
PENG T, YANG T, et al. 2009. Monitoring results of soil loss in karst slopes. Earth and Environment, 37(2):126-130 .
|
Bell M, Limbrey S. 1982. Archaeological aspects of woodland ecology. BAR International Series, 29:115-127 .
|
ZHENG Y C, WANG S J. 2002. Soil geochemistry characteristics of 137Cs and its theory of tracing soil erosion. Journal of Soil and Water Conservation, 16(2):57-60 .
|
WANG Y B, WANG G X, et al. 2008. Erosion rates evaluated by the 137Cs technique in the high altitude area of the Qinghai-Tibet plateau of China. Environmental Geology, 53(8): 1743-1749 .
|
Zapata F. 2003. The use of environmental radio nuclides as tracers in soil erosion and sedimentation investigations: Recent advances and future developments. Soil & Tillage Research, 69(1-2):3-13 .
|
LI H, ZHANG X B, et al. 2010. Study on sediment deposition in a peak-cluster depression catchment using 137Cs technique in Karst hilly area, NW Guangxi. Journal of Sediment Research, 2(1):17-24 .
|
ZHANG X N, WANG K L, et al. 2009. Distribution of 137Cs and relative influencing factors on typical karst sloping land. Environmental Science, 30(11):3152-3158 .
|
JIANG Z C, CAO J H, et al. 2008. Current status and comprehensive countermeasures of soil erosion for Karst rocky desertification areas in the Southwestern China. Science of Soil & Water Conservation, 6(1):37-42 .
|
ZHANG Y M, XIONG KN, et al. 2003. Soil erosion of Huajiang demonstrating area in karst gorge region. Bulletin of Soil and Water Conservation. 23(2):19-22 .
|
Correchel V, Bacchi O O S, et al. 2006. Erosion rates evaluated by the 137Cs technique and direct measurements on long-term runoff plots under tropical conditions. Soil & Tillage Research, 86(2):199-208 .
|
Felipe Zapata. 2003. The use of environmental radio?nuclides as tracers in soil erosion and sedimentation investigations: Recent advances and future developments. Soil & Tillage Research, 69:3-13 .
|
Wallbrink P J, Murray A S. 1996. Determining soil loss using the inventory ratio of excess Lead-210 to Cesium-137. Soil Science Society of America Journal, 60(4):1201-1208.
|
ZHANG X B, BAI X Y, ZHOU P. 2011. Marking string method for monitoring soil loss and its application on testing soil redistribution by tillage. Soil & Water Conservation in China, 7:44-47 .
|
Brown R B, Kling G F, Cutshall N H. 1981. Agricultural erosion indicated by 137Cs redistribution: II. Estimates of erosion rates. Soil Science Society of America Journal. 45(6):1191-1197 .
|
JIANG Z C, LIAN Y Q, QIN X Q. 2014a. Rock desertification in southwest china: Impact, causes and restoration. Earth Science Review, 132(3):1-12 .
|
[1] | Guo-Qiang Yu, Qian Wang, Li-Feng Zhu, Xia Zhang, 2023: Regulation of vegetation pattern on the hydrodynamic processes of erosion on hillslope in Loess Plateau, China, Journal of Groundwater Science and Engineering, 11, 4-19. doi: 10.26599/JGSE.2023.9280002 |
[2] | Chao Song, Man Liu, Qiu-yao Dong, Lin Zhang, Pan Wang, Hong-yun Chen, Rong Ma, 2022: Variation characteristics of CO2 in a newly-excavated soil profile, Chinese Loess Plateau: Excavation-induced ancient soil organic carbon decomposition, Journal of Groundwater Science and Engineering, 10, 19-32. doi: 10.19637/j.cnki.2305-7068.2022.01.003 |
[3] | Hao ZHOU, Yong WU, Feng HUANG, Xue-fang TANG, 2021: Experimental simulation and dynamic model analysis of Cadmium (Cd) release in soil affected by rainfall leaching in a coal-mining area, Journal of Groundwater Science and Engineering, 9, 65-72. doi: 10.19637/j.cnki.2305-7068.2021.01.006 |
[4] | Ruo-xi Yuan, Gui-ling Wang, Feng Liu, Wei Zhang, Wan-li Wang, Sheng-wei Cao, 2021: Evaluation of shallow geothermal energy resources in the Beijing-Tianjin-Hebei Plain based on land use, Journal of Groundwater Science and Engineering, 9, 129-139. doi: 10.19637/j.cnki.2305-7068.2021.02.005 |
[5] | ZHAO Yue-wen, WANG Xiu-yan, LIU Chang-li, LI Bing-yan, 2020: Finite-difference model of land subsidence caused by cluster loads in Zhengzhou, China, Journal of Groundwater Science and Engineering, 8, 43-56. doi: 10.19637/j.cnki.2305-7068.2020.01.005 |
[6] | GUO Hao, QIAN Yong, YUAN Guang-xiang, WANG Chun-xiao, 2020: Research progress on the soil vapor extraction, Journal of Groundwater Science and Engineering, 8, 57-66. doi: 10.19637/j.cnki.2305-7068.2020.01.006 |
[7] | GAO Ye-xin, LIU Ji-chao, FENG Xin, ZHANG Ying-ping, ZHANG Bing, 2019: Experimental study on unsaturated soil water diffusivity in different soils in Hebei Piedmont Plain, Journal of Groundwater Science and Engineering, 7, 165-172. doi: 10.19637/j.cnki.2305-7068.2019.02.007 |
[8] | ZHANG Sheng, ZHANG Cui-yun, HE Ze, CHEN Li, YIN Mi-ying, NING Zhuo, SUN Zhen-hua, ZHEN Shi-jun, ZHANG Fa-wang, 2017: Application of bioremediation in oil contaminated soil, Journal of Groundwater Science and Engineering, 5, 116-123. |
[9] | WANG Yao, HOU Li-sheng, CAI Yun-long, 2017: Scale effects of eroded sediment transport in Wujiang River Basin, Guizhou Province, China, Journal of Groundwater Science and Engineering, 5, 182-192. |
[10] | LI Jie-biao, SU Rui, YANG Jing-zhi, ZHOU Zhi-chao, JI Rui-li, ZHANG Ming, GAO Yu-feng, 2016: Distribution characteristics of tritium in the soil in Beishan area of Gansu Province, Journal of Groundwater Science and Engineering, 4, 131-140. |
[11] | GUO Long-zhu, 2016: Study on ecological and economic effects of land and water resources allocation in Sanjiang Plain, Journal of Groundwater Science and Engineering, 4, 110-119. |
[12] | ZHANG Sheng, ZHANG Cui-yun, HE Ze, CHEN Li, ZHANG Fa-wang, YIN Mi-ying, NING Zhuo, SUN Zhen-hua, ZHEN Shi-jun, 2016: Application research of enhanced in-situ micro-ecological remediation of petroleum contaminated soil, Journal of Groundwater Science and Engineering, 4, 157-164. |
[13] | CUI Xiang-xiang, FEI Yu-hong, ZHANG Zhao-ji, LI Ya-song, 2015: Distribution and migration of lead in soil of Xiao River, Shijiazhuang, Hebei Province, Journal of Groundwater Science and Engineering, 3, 98-104. |
[14] | XU Guang-ming, QI Jian-feng, BI Pan, BAI Gao-feng, 2015: Distribution and evolution features of salinized soil in Hebei Plain, Journal of Groundwater Science and Engineering, 3, 21-29. |
[15] | CHENG Yan-pei, YUE Chen, ZHANG Jian-kang, YI Qing, WEN Xue-ru, LI Yong-chao, 2014: Influence of fluctuations of frozen soil in North Asia on groundwater and assessment on resources, Journal of Groundwater Science and Engineering, 2, 71-77. |
[16] | LIU Chun-lei, YANG Hui-feng, WANG Gui-ling, 2014: Back calculation of soil hydraulic parameters based on HYDRUS-1D, Journal of Groundwater Science and Engineering, 2, 46-53. |
[17] | GU Ming-xu, LIU Yu, HAN Chong, SHANG Lin-qun, JIANG Xian-qiao, WANG Lin-ying, 2014: Analysis of impact of outfalls on surrounding soil and groundwater environment, Journal of Groundwater Science and Engineering, 2, 54-60. |
[18] | Le SONG, Yan-pei CHENG, 2014: Optimization Research of Water-Soil Resources in Huanghua, Journal of Groundwater Science and Engineering, 2, 86-94. |
[19] | Zhao Wang, Jiansheng Shi, Zhaoji Zhang, Yuhong Fei, 2013: Organic Contamination of Soil and Goundwater in the Piedimont Plain of the Taihang Mountains, Journal of Groundwater Science and Engineering, 1, 74-81. |
[20] | Jiankang Zhang, Yanpei Cheng, Hua Dong, Qingshi Guo, Kun Liu, Fawang Zhang, 2013: Study on Ecological Environment and Sustainable Land Use Based on Satellite Remote Sensing, Journal of Groundwater Science and Engineering, 1, 89-96. |
JGSE-ScholarOne Manuscript Launched on June 1, 2024.