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Research progress and prospect of soil and water leakage in karst areas of Southwest China |
JIANG Zhongcheng1,2, LI Zhenwei3, LUO Weiqun1,2, LAN Funing1,2, WU Zeyan1,2 |
1. Institute of Karst Geology, CAGS, Karst Dynamic Key Laboratory of both Ministry of Natural Resources and Guangxi Zhuang Autonomous Region, International Karst Research Center under UNISICO, 541004, Guilin, Guangxi, China; 2. Pingguo, Guangxi Karst Ecosystem National Observation and Research Station, 531406, Pingguo, Guangxi, China; 3. Institute of Subtropical Agriculture, Chinese Academy of Sciences, 410125, Changsha, China |
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Abstract [Background] Soil and water leakage is a specific soil and water loss issue in karst areas, it is most serious in the karst area of Southwest China, and causes severe resource and environmental issues such as soil loss from farmland, rocky desertification, depression water logging and pollution to cave landscape. Because the karst structures in Southwest China are complex and soil leakage studies were begun after the 21st century, the theoretical and technologic system of soil and water leakage have not been formed. Based on systematically analyzing relative papers, this review aims to present the main research progresses, shortages, and the next research directions on soil and water leakage in the karst areas of Southwest China. [Methods] In order to accurately grasping the important research progresses and shortages, the authors took soil and water leakage, karst, soil and water conservation, and Southwest China as the key words, and collected over 200 relative papers from all literature database at home and abroad. The authors chose 76 papers as references of this review; after focused the four important aspects of this paper such as feature, processes, monitoring and evaluation, and mechanism of soil and water leakage in the karst areas of Southwest China, and excluded many papers that were not closely relevant to this review's target. [Results] 1) This review clarified four features on the soil and water leakage of karst areas in Southwest China, i. e., geological concealment of soil and water leakage processes, relative low soil loss tolerance, geomorphological differences of soil and water leakage, and difficulty of treatment project of soil and water leakage. 2) This review revealed the importance of systematic studies on the soil and water leakage processes in karst ground river basin after concluding research progresses on processes, monitoring, evaluation and influence factors of the soil and water leakage,. 3) Three defects of present studies on the soil and water leakage in karst areas of Southwest China are gave, especially on quantitative characterization of rock-soil-fissure fabric, key processes and mechanism of the soil and water leakage, and evaluation models of the soil and water leakage. 4) Targeting national goals on prevention and treatment of the soil and water leakage in the karst areas of Southwest China and the international frontier research directions, this review provides three important research directions, i. e., network studies of the soil and water leakage of karst critical zone, systematic researches on key processes of the soil and water leakage, and construction and usage of evaluation models of the soil and water leakage. [Conclusions] The soil and water leakage issue in the karst areas of Southwest China is the most typical and serious in China and even in the world. Though some research progresses have achieved, the theoretical and technological system for soil and water leakage have not been established. Systematic study on the soil and water leakage of the karst critical zone in Southwest China is an important research direction.
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Received: 13 June 2024
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[1] |
蒋忠诚,曹建华,杨德生,等.西南岩溶石漠化区水土流失现状与综合防治对策[J].中国水土保持科学, 2008,6(1):37. JIANG Zhongcheng, CAO Jianhua, YANG Desheng, et al. Current status and comprehensive counter measures of soil erosion for karst rocky desertification areas in the southwestern China[J]. Science of Soil and Water Conservation,2008,6(1):37.
|
[2] |
DAI Quanhou, LIU Zhilun, SHAO Hongbo, et al. Karst bare slope soil erosion and soil quality:a simulation case study[J]. Solid Earth,2015,6(3):985.
|
[3] |
彭旭东,戴全厚,李昌兰.中国西南喀斯特坡地水土流失/漏失过程与机理研究进展[J].水土保持学报, 2017, 31(5):1. PENG Xudong, DAI Quanhou, LI Changlan. Research progresses on processes and mechanism of soil and water loss/leakage of karst slope in the southwestern China[J]. Journal of Soil and Water Conservation, 2017, 31(5):1.
|
[4] |
蒋忠诚,罗为群,邓艳,等.广西岩溶区的水土流失特点及其防治[J].广西科学, 2018, 25(5):449. JIANG Zhongcheng, LUO Weiqun, DENG Yan, et al. Features and treatment of soil erosion in karst areas of Guangxi[J]. Guangxi Science,2018,25(5):449.
|
[5] |
HORTON R E, LEACH H P, VLIET R. Laminar sheet flow[J]. Trans Am Geophys Union, 1934,15(2):393.
|
[6] |
汤立群.流域产沙模型研究[J].水科学进展,1996, 7(1):47. TANG Liqun. Study on sediment yield model[J]. Advance in Water Science, 1996,7(1):47.
|
[7] |
蒋忠诚,杨德生,曹建华,等.中国水土流失防治与生态安全:西南岩溶区卷[M].北京:科学出版社,2010:1. JIANG Zhongcheng, YANG Desheng, CAO Jianhua, et al. Soil erosion control and ecological safety in China:Volume for southwest karst area[M]. Beijing:Science Publishing House, 2010:1.
|
[8] |
中华人民共和国水利部. 2010年中国水土保持公报[R].北京:水利部,2011:27. The Ministry of Water Resources of People's Republic of China. Soil and water conservation bulletin in 2010[R]. Beijing:Ministry of Water Resources, 2011:27.
|
[9] |
曹建华,蒋忠诚,杨德生,等.我国西南岩溶区土壤侵蚀强度分级标准研究[J].中国水土保持科学, 2008, 6(6):1. CAO Jianhua, JIANG Zhongcheng, YANG Desheng, et al. Grading of soil erosion intensity in southwest karst area of China[J]. Science of Soil and Water Conservation, 2008,6(6):1.
|
[10] |
郭纯青,方荣杰,于映华.中国南方岩溶区岩溶地下河复杂水流运动特征[J].桂林理工大学学报,2010, 30(4):507. GUO Chunqing, FANG Rongjie, YU Yinghua. Features of complex water flow movement of karst ground river in south karst area of China[J]. Journal of Guilin University of Technology, 2010,30(4):507.
|
[11] |
易连兴,夏日元,王喆,等,岩溶地下河探测与评价[M].北京:科学出版社,2018:1. YI Lianxing, XIA Riyuan, WANG Ze, et al. Exploration and Evaluation of karst ground river[M]. Beijing:Science Publishing House, 2018:1.
|
[12] |
张信宝,王世杰,贺秀斌,等.碳酸盐岩风化壳中的土壤蠕滑与岩溶坡地的土壤地下漏失[J].地球与环境, 2007, 35(3):202. ZHANG Xinbao, WANG Shijie, HE Xiubin, et al. Soil creeping in weathering crusts of carbonate rocks and underground loses of karst slopes[J]. Earth and Environment,2007, 35(3):202.
|
[13] |
ZHANG X B,BAI X Y,HE X. Soil creeping in the weathering crust of carbonate rocks and underground soil losses in the karst mountain areas of southwest China[J]. Carbonates and Evaporites,2011,26(2):149.
|
[14] |
唐益群,张晓晖,周洁,等.喀斯特石漠化地区土壤地下漏失的机理研究:以贵州普定县陈旗小流域为例[J].中国岩溶, 2010,29(2):121. TANG Yiqun, ZHANG Xiaohui, ZHOU Jie, et al. The mechanism of underground leakage of soil in karst rocky desertification areas:A case in Chenqi small watershed, Puding, Guizhou province[J]. Carsologica Sinica, 2010, 29(2):121.
|
[15] |
冯腾,陈洪松,张伟,等.桂西北喀斯特坡地土壤137 Cs的剖面分布特征及指示意义[J].应用生态学报, 2011,22(3):593. FENG Teng, CHEN Hongsong, ZHANG Wei, et al. 137Cs profile distribution character and its implication for soil erosion on karst slopes of southwest Guangxi[J]. Chinese Journal of Applied Ecology, 2011,22(3):593.
|
[16] |
曹建华,鲁胜力,杨德生,等.西南岩溶区水土流失过程及防治对策[J].中国水土保持科学, 2011,9(2):52. CAO Jianhua, LU Shengli, YANG Desheng, et al. Process of soil and water loss and its control measures in karst regions, Southwestern China[J]. Science of Soil and Water Conservation, 2011,9(2):52.
|
[17] |
蒋忠诚,罗为群,邓艳,等.岩溶峰丛洼地水土漏失及防治研究[J].地球学报, 2014,35(5):535. JIANG Zhongcheng, LUO Weiqun, DENG Yan, et al. The leakage of water and soil in the karst peak depression and its prevention and treatment[J]. Acta Geoscientica Sinica, 2014,35(5):535.
|
[18] |
魏兴萍,谢德体,倪九派,等.重庆岩溶槽谷区山坡土壤的漏失研究[J].应用基础与工程科学学报,2015, 23(3):462. WEI Xingping, XIE Deti, NI Jiupai, et al. Soil erosion and loss on slope in karst Valley area, Chongqing with 137 Cs[J]. Journal of Basic Science and Engineering, 2015, 23(3):462.
|
[19] |
陈洪松,冯腾,李成志,等.西南喀斯特地区土壤侵蚀特征研究现状与展望[J].水土保持学报, 2018, 32(1):10. CHEN Hongsong, FENG Teng, LI Chengzhi, et al. Characteristics of soil erosion in the karst regions of southwest china:research advance and prospective[J]. Journal of Soil and Water Conservation, 2018, 32(1):10.
|
[20] |
李成芳,王忠诚,李振炜,等.西南喀斯特区土壤侵蚀研究进展[J].中国岩溶,2022,41(6):963. LI Chengfang, WANG Zhongcheng, LI Zhenwei, et al. Research progress of soil erosion in karst areas of southwest China[J]. Carsologica Sinica, 2022, 41(6):963.
|
[21] |
张信宝,王世杰.浅议喀斯特流域土壤地下漏失的界定[J].中国岩溶,2016,35(5):602. ZHANG Xinbao, WANG Shijie. A discussion on the definition of soil leaking in a karst catchment[J]. Carsologica Sinica, 2016,35(5):602.
|
[22] |
彭建,杨明德.贵州花江喀斯特峡谷水土流失状态分析[J].山地学报, 2001, 19(6):511. PENG Jian, YANG Mingde. On the present soil erosion situation of Huajiang karst valley[J]. Journal of Mountain Science and Technology, 2001, 19(6):511.
|
[23] |
李晋,熊康宁,王仙攀.喀斯特地区小流域地下水土流失观测研究[J].中国水土保持,2012(6):38. LI Jin, XIONG Kangning, WANG Xianpan. Study on the boundaries and properties of the underground river system in Nandong, Yunnan province[J]. Soil and Water Conservation in China, 2012(6):38.
|
[24] |
李衍青.南洞地下河流域水土流失特征及影响因素研究[D].武汉:中国地质大学, 2020:1. LI Yanqing. Research on the characteristics and influence factors of soil erosion in Nandong underground river system[D]. Wuhan:China university of Geosciences,2020:1.
|
[25] |
邓艳,曹建华,蒋忠诚,等.西南岩溶石漠化综合治理水-土植被关键技术进展与建议[J].中国岩溶, 2016,35(5):476. DENG Yan, CAO Jianhua, JIANG Zhongcheng, et al. Advancement in key technologies for comprehensive treatment of water, soil and vegetation resources in karst rocky desertification areas[J]. Carsologica Sinica, 2016, 35(5):476.
|
[26] |
ZENG Faming, JIANG Zhongcheng, SHEN Lina. Assessment of multiple and interacting modes of soil loss in the karst critical zone, Southwest China[J]. Geomorphology, 2018, 322(1):97.
|
[27] |
罗为群,蒋忠诚,韩清延,等.岩溶峰丛洼地不同地貌部位土壤分布及其侵蚀特点[J].中国水土保持, 2008(12):46. LUO Weiqun, JIANG Zhongcheng, HAN Qingyan, et al. Features of soil distribution and erosion in different geomorphic position of karst depression[J]. Soil and Water Conservation in China, 2008(12):46.
|
[28] |
王升,陈洪松,付智勇,等.基于探地雷达的典型喀斯特坡地土层厚度估测[J].土壤学报,2015,52(5):1024. WANG Sheng, CHEN Hongsong, FU Zhiyong, et al. Estimation of thickness of soil layer on typical karst hillslope using a ground penetrating radar[J]. Acta Pedologica Sinica, 2015,52(5):1024.
|
[29] |
彭韬,周长生,宁茂岐,等.基于探地雷达解译的喀斯特坡地表层岩溶带空间分布特征研究[J].第四纪研究,2017,37(6):1262. PENG Tao, ZHOU Changsheng, NING Maoqi, et al. Study on spatial distribution of epikarst zone on plateau karst slope based on ground penetrating radar[J]. Quaternary Sciences, 2017,37(6):1262.
|
[30] |
高强山,彭韬,付磊,等.探地雷达技术对表层岩溶带典型剖面组构刻画与界面识别[J].中国岩溶,2019, 38(5):759. GAO Qiangshan, PENG Tao, FU Lei, et al. Structure description and interface recognition on epikarst typical profiles using GPR technology[J]. Carsologica Sinica, 2019, 38(5):759.
|
[31] |
张信宝,李少龙,王成华,等. 137 Cs法测算梁峁坡农耕地土壤侵蚀量的初探[J].水土保持通报,1988,8(5):18. ZHANG Xinbao, LI Shaolong, WANG Chenghua, et al. Preliminary approach on measurement of soil erosion amount of farmland in the ridge and mao slope based on 137Cs methods[J]. Bulletin of Soil and Water Conservation, 1988,8(5):18.
|
[32] |
张信宝,白晓永,刘秀明.洼地沉积的137 Cs法断代测定森林砍伐后喀斯特小流域土壤流失量[J].中国科学:地球科学,2011,41(2):265. ZHANG Xinbao, BAI Xiaoyong, LIU Xiuming. Application of a 137Cs fingerprinting technique for interpreting responses of sediment depression of a karst depression to deforestation in the Guizhou plateau, China[J]. Science in China:Earth Science, 2011,41(2):265.
|
[33] |
严冬春,文安邦,鲍玉海,等.黔中高原岩溶丘陵坡地土壤中的137 Cs分布[J].地球与环境,2008,36(4):342. YAN Dongchun, WEN Anbang, BAO Yuhai, et al. The distribution of 137Cs in hilly upland soil on the Qianzhong karst plateau[J]. Earth and Environment, 2008,36(4):342.
|
[34] |
BAI X Y, ZHANG X B, CHEN H, et al. Using137Cs fingerprint technique to estimate sediment deposition and erosion rates from Yongkang depression in karst region of Southwest China[J]. Land Degradation&Development, 2010, 21:1.
|
[35] |
魏兴萍,袁道先,谢世友.运用137 Cs与土壤营养元素探讨重庆岩溶槽谷区山坡土壤的流失和漏失[J].水土保持学报, 2010, 24(6):16. WEI Xingping, YUAN Daoxian XIE Shiyou. Study on soil erosion and loss on slope in karst mountain valley area of Chongqing valley with 137Cs and soil nutrient elements[J]. Journal of Soil&Water Conservation, 2010, 24(6):16.
|
[36] |
何永彬,张信宝,文安邦.西南喀斯特山地的土壤侵蚀研究探讨[J].生态环境学报,2009,18(6):2393. HE Yongbin, ZHANG Xinbao, WEN Anbang. Discussion on karst soil erosion mechanism in karst mountain area in southwest China[J]. Ecology and Environmental Sciences, 2009,18(6):2393.
|
[37] |
FENG T, CHEN H S, POLYAKOV V O, et al. Soil erosion rates in two karst peak-cluster depression basins of northwest Guangxi, China:Comparsion of the RUSLE model with 137Cs measurements[J]. Geomorphology, 2016,253:217.
|
[38] |
CAO Zihao, ZHANG Zhuodong, ZHANG Keli, et al. Identifying and estimating soil erosion and sedimentation in small karst watersheds using a composite fingerprint technique[J]. Agriculture, Ecosystems and Environment, 2020, 294:106.
|
[39] |
HE Jianghu,ZHANG Keli,CAO Zihao, et al. Tracer vertical movement and its affecting factors in karst soil profiles in simulated leaching context[J]. Journal of Soils and Sediments, 2022,22:229.
|
[40] |
HE Jianghu, CAO Yang, ZHANG Keli, et al. Soil loss through fissures and its responses to rainfall based on drip water monitoring in karst caves[J]. Journal of Hydrology, 2023,617:129000.
|
[41] |
ABRIL J M. Radiometric dating of recent sediments:On the performance of 210Pb-based CRS chronologies under varying rates of supply[J]. Quaternary Geochronology, 2019, 51(4):1.
|
[42] |
BAI Xiaoyong, ZHANG Xinbao, LONG Yi, et al. Use of 137Cs and 210 Pb ex measurements on deposits in a karst depression to study the erosional response of a small karst catchment in Southwest China to land-use change[J]. Hydrological Process, 2013, 27(6):822.
|
[43] |
ZHANG Yunqi, LIAO Jia, LONG Yi, et al. Dating reservoir deposits to reconstruct sediment yields from a small limestone catchment in the Yimeng Mountain region, China[J]. Catena, 2018, 166:1.
|
[44] |
LI Zhenwei, XU Xianli, ZHANG Yaohua, et al. Reconstructing recent changes in sediment yields from a typical karst watershed in southwest China[J]. Agriculture Ecosystems&Environment, 2019, 269:62.
|
[45] |
乔依娜.重庆岩溶区近700年土壤侵蚀演变的洼地沉积记录[D].重庆:西南大学,2024:1. QIAO Yina. Recent 700 year deposition records of soil erosion evolution in karst area of Chongqing[D]. Chongqing:Southwest University,2024:1.
|
[46] |
周福莉,李廷勇,陈虹利,等.重庆芙蓉洞洞穴水水文地球化学指标的时空变化[J].水土保持学报,2012, 26(3):253. ZHOU Fuli, LI Tingyong, CHEN Hongli, et al. Spatial and temporal variation of hydro-geochemical indices of the cave water in Furong Cave,Chongqing[J]. Journal of Soil and Water Conservation, 2012,26(3):253.
|
[47] |
LYU Yina, LUO Weijun, WANG Yanwei, et al. Geochemical responses of cave drip water to vegetation restoration[J]. Journal of Hydrology,2020,590:125543.
|
[48] |
程倩云,彭韬,张信宝,等.西南喀斯特小流域地表、地下河流细粒泥沙来源的137 Cs和磁化率双指纹示踪研究[J].水土保持学报,2019, 33(2):140. CHENG Qianyun, PENG Tao, ZHANG Xinbao, et al. Tracing fine sediment sources in the surface and subsurface rivers of a karst watershed using compound finger printing with 137Cs and magnetic susceptibility in southwest China[J]. Journal of Soil and Water Conservation, 2019, 33(2):140.
|
[49] |
CHENG Qianyun, WANG Shijie, PENG Tao, et al. Sediment sources, soil loss rates and sediment yields in a Karst plateau catchment in Southwest China[J]. Agriculture, Ecosystems and Environment 2020,304,107114.
|
[50] |
王济,蔡雄飞,雷丽,等.不同裸岩率下我国西南喀斯特山区土壤侵蚀的室内模拟[J].中国岩溶, 2010, 29(1):1. WANG Ji, CAI Xiongfei, LEI Li, et al. Laboratory simulation on soil erosion under different bedrock outcrop rate in southwest karst area, China[J]. Carsologica Sinica, 2010, 29(1):1.
|
[51] |
刘正堂,戴全厚,倪九派,等.喀斯特地区裸坡面土壤侵蚀的人工模拟降雨试验研究[J].水土保持学报, 2013, 27(5):12. LIU Zhengtang, DAI Quanhou, NI Jiupai, et al. Bare slope soil erosion experimental research under the condition of artificial rainfall precipitation in karst area[J]. Journal of Soil and Water Conservation, 2013, 27(5):12.
|
[52] |
严友进,戴全厚,伏文兵,等.喀斯特坡地裸露心土层产流产沙模拟研究[J].土壤学报,2017,54(3):545. YAN Youjin, DAI Quanhou, FU Wenbing, et al. Study on simulation of flow and sand yield of bare soil layer in karst slope[J]. Acta Pedologica Sinica, 2017,54(3):545.
|
[53] |
彭旭东,戴全厚,李昌兰.模拟降雨下喀斯特坡耕地土壤养分输出机制[J].生态学报,2018,38(2):1. PENG Xudong, DAI Quanhou, LI Changlan, et al. Output mechanism of soil nutrients from karst slope farmland under simulated rainfall[J]. Journal of Ecology, 2018, 38(2):1.
|
[54] |
HARTMANN A, GLEESON T, ROSOLEM R, et al. A large-scale simulation model to assess karstic groundwater recharge over Europe and the Mediterranean[J]. Geoscientific Model Development 2015, 8(6):1729.
|
[55] |
XU Chaohao, XU Xianli, LIU Meixian, et al. An improved optimization scheme for representing hillslopes and depressions in karst hydrology[J]. Water Resources Research, 2020, 56:e2019WR026038.
|
[56] |
柴宗新.试论广西岩溶区的土壤侵蚀[J].山地研究, 1989,7(4):255. CHAI Zongxin. Soil erosion in karst area of Guangxi autonomous region[J]. Journal of Mountain Science, 1989, 7(4):255.
|
[57] |
白占国,万国江.贵州碳酸盐岩区域的侵蚀速率及环境效应研究[J].土壤侵蚀与水土保持学报,1998, 4(1):1. BAI Zhanguo, WANG Guojiang. Erosion rates and environmental effects of Guizhou carbonate rock areas[J]. Journal of Soil Erosion and Soil and Water Conservation, 1998,4(1):1.
|
[58] |
曹建华,蒋忠诚,杨德生,等.中国西南岩溶区土壤允许流失量及防治对策[J].中国水土保持, 2008(12):40. CAO Jianhua, JIANG Zhongcheng, YANG Desheng, et al. Soil loss tolerance and its control measures in karst regions of southwestern China[J]. Soil and Water Conservation in China, 2008(12):40.
|
[59] |
DAI Quanhou, PENG Xudong, YANG Zhi, et al. Runoff and erosion processes on bare slopes in the karst rocky desertification area[J]. Catena, 2017,152:218.
|
[60] |
DAI Quanhou, PENG Xudong, ZHAO Longshan, et al. Effects of underground pore fissures on soil erosion and sediment yield on karst slopes[J]. Land degradation and development,2017, 28(7):1922.
|
[61] |
LI Zhenwei, XU Xianli, XU Chaohao, et al. Effects of lithology and geomorphology on sediment yield in karst mountain catchments[J]. Geomorphology, 2019, 343:119.
|
[62] |
LUO Weiqun, JIANG Zhongcheng, YANG Qiyong. The features of soil erosion and soil leakage in karst peakcluster areas of Southwest China[J]. Journal of Groundwater Science and Engineering, 2018, 6(1):8.
|
[63] |
严友进,戴全厚,伏文兵,等.喀斯特坡地土壤地下侵蚀模拟试验研究[J].水土保持学报, 2015, 29(6):7. YAN Youjin, DAI Quanhou, FU Wenbing, et al. Experimental study on simulation of underground soil erosion in karst slope[J]. Journal of Soil and Water Conservation, 2015, 29(6):7.
|
[64] |
GAN Fengling, HE Binghui, QIN Ziyang. Hydrological response and soil detachment rate from dip/anti-dip slopes as a function of rock strata dip in karst valley revealed by rainfall simulations[J]. Journal of Hydrology, 2020a, 581:124416.
|
[65] |
ZHANG Xingqi, HU Maochun, GUO Xinya, et al. Effects of topographic factors on runoff and soil loss in Southwest China[J]. Catena, 2018, 160:394.
|
[66] |
Gan Fengling, He Binghui, Qin Ziyang, et al. Role of rock dip angle in runoff and soil erosion processes on dip/anti-dip slopes in a karst trough valley[J]. Journal of Hydrology, 2020b, 588:125093.
|
[67] |
PENG Tao, WANG Shijie. Effects of land use, land cover and rainfall regimes on the surface runoff and soil loss on karst slopes in southwest China[J]. Catena. 2012, 90:53.
|
[68] |
罗为群,蒋忠诚,欧阳然,等.典型岩溶峰丛洼地水土保持技术研究[J].中国水土保持, 2013(1):37. LUO Weiqun, JIANG Zhongcheng, OUYANG Ran, et al. Study on technology of soil and water conservation of typical karst peak cluster depression[J]. Soil and Water Conservation in China, 2013(1):37.
|
[69] |
郑小东,李秀月,计辰儒,等.基于工程措施的喀斯特落水洞土壤及养分流失阻控效果[J].农业现代化研究, 2018, 39(5):883. ZHENG Xiaodong, LI Xiuyue, JI Chenru, et al. Controlling effect of soil and nutrient loss via doline by engineering measure in karst area[J]. Research of Agricultural Modernization, 2018, 39(5):883.
|
[70] |
邹志刚,曾馥平.喀斯特峰丛洼地坡地水土流失与阻控技术[J].农村经济与科技,2019(3):16. ZHOU Zhigang, ZENG Fuping. Soil and water loss and control technology of karst peak cluster depression[J]. Rural Economics and Technology, 2019(3):16.
|
[71] |
周立刚,刘卉芳,王昭艳,等.岩溶峰丛洼地水土流失机理及防治技术研究进展[J].泥沙研究, 2020, 45(2):66. ZHOU Ligang, LIU Huifang, WANG Zhaoyan, et al. Review on soil and water loss mechanism and control technique in Karst Peak-cluster Depression[J]. Journal of sediment Research, 2020, 45(2):66.
|
[72] |
郭红艳,周金星.石漠化地区水土地下漏失治理[J].中国水土保持科学,2012,10(5):71. GUO Hongyan, ZHOU Jinxing, Underground soil and water leakage in karst rocky desertification areas[J]. Science of Soil and Water Conservation, 2012,10(5):71.
|
[73] |
曹文洪,宁堆虎,秦伟.水土保持率远期目标确定的技术方法[J].中国水土保持, 2021(4):5. CAO Wenhong, NING Duihu, QIN Wei. Technical methods for determining long term goals of soil and water conservation ratio[J]. Soil and Water Conservation in China, 2021(4):5.
|
[74] |
BAI Bing, JIANG Zhongcheng, ZHANG Cheng, et al. New achievements of IGCP 661 structure, substance cycle, and environment sustainability of the critical zone in karst systems (20172021)[J]. Episodes:Journal of International Geoscience, 2023, 146(4):665.
|
[75] |
何江湖,张科利.西南喀斯特地区地下水土流失研究综述[J].泥沙研究,2022,47(5):66. HE Jianghu, ZHANG Keli. A review of underground soil loss in karst areas of the Southwest China[J]. Journal of Sediment Research, 2022,47(5):66.
|
[76] |
LI Zhenwei, XU Xianli, ZHU Jingxuan, et al. Scale-specific controls of sediment yield in karst watersheds[J]. Journal of Hydrology, 2020,583:1.
|
|
|
|