[1] 滕彦国, 左锐, 王金生, 等. 区域地下水演化的地球化学研究进展 [J]. 水科学进展, 2010, 21(1): 127-136. TENG Y G, ZUO R, WANG J S, et al. Progress in geochemistry of regional groundwater evolution [J]. Advances in Water Science, 2010, 21(1): 127-136(in Chinese).
[2] KEBEDE S, TRAVI Y, ALEMAYEHU T, et al. Groundwater recharge, circulation and geochemical evolution in the source region of the Blue Nile River, Ethiopia [J]. Applied Geochemistry, 2005, 20(9): 1658-1676. doi: 10.1016/j.apgeochem.2005.04.016
[3] SETIAWAN T, SYAH ALAM B Y C S S, HARYONO E, et al. Hydrochemical and environmental isotopes analysis for characterizing a complex Karst hydrogeological system of Watuputih area, Rembang, Central Java, Indonesia [J]. Hydrogeology Journal, 2020, 28(5): 1635-1659. doi: 10.1007/s10040-020-02128-8
[4] 管清花, 李福林, 王爱芹, 等. 济南市岩溶泉域地下水化学特征与水环境演化 [J]. 中国岩溶, 2019, 38(5): 653-662. GUAN Q H, LI F L, WANG A Q, et al. Hydrochemistry characteristics and evolution of Karst spring groundwater system in Jinan [J]. Carsologica Sinica, 2019, 38(5): 653-662(in Chinese).
[5] 于奭, 孙平安, 杜文越, 等. 人类活动影响下水化学特征的影响: 以西江中上游流域为例 [J]. 环境科学, 2015, 36(1): 72-79. YU S, SUN P A, DU W Y, et al. Effect of hydrochemistry characteristics under impact of human activity: A case study in the upper reaches of the xijiang river basin [J]. Environmental Science, 2015, 36(1): 72-79(in Chinese).
[6] LIU J, WANG H, JIN D W, et al. Hydrochemical characteristics and evolution processes of Karst groundwater in Carboniferous Taiyuan formation in the Pingdingshan coalfield [J]. Environmental Earth Sciences, 2020, 79(6): 1-14.
[7] HUANG H, CHEN Z H, WANG T, et al. Characteristics and processes of hydrogeochemical evolution induced by long-term mining activities in Karst aquifers, southwestern China [J]. Environmental Science and Pollution Research, 2019, 26(29): 30055-30068. doi: 10.1007/s11356-019-05984-4
[8] 蒲俊兵, 袁道先, 蒋勇军, 等. 重庆岩溶地下河水文地球化学特征及环境意义 [J]. 水科学进展, 2010, 21(5): 628-636. PU J B, YUAN D X, JIANG Y J, et al. Hydrogeochemistry and environmental meaning of Chongqing subterranean Karst streams in China [J]. Advances in Water Science, 2010, 21(5): 628-636(in Chinese).
[9] SINGH A K, RAJ B, TIWARI A K, et al. Evaluation of hydrogeochemical processes and groundwater quality in the Jhansi district of Bundelkhand region, India [J]. Environmental Earth Sciences, 2013, 70(3): 1225-1247. doi: 10.1007/s12665-012-2209-7
[10] 陈盟, 吴勇, 姚金钱. 地下水主要离子水文地球化学过程与矿井突水水源识别 [J]. 南水北调与水利科技, 2016, 14(3): 123-131. CHEN M, WU Y, YAO J Q. Major ion hydrogeochemical processes and identification of mine's water-bursting source [J]. South-to-North Water Transfers and Water Science & Technology, 2016, 14(3): 123-131(in Chinese).
[11] 刘伟江, 袁祥美, 张雅, 等. 贵阳市岩溶地下水水化学特征及演化过程分析 [J]. 地质科技情报, 2018, 37(6): 245-251. LIU W J, YUAN X M, ZHANG Y, et al. Hydrochemical characteristics and evolution of Karst groundwater in Guiyang city [J]. Geological Science and Technology Information, 2018, 37(6): 245-251(in Chinese).
[12] 蒋忠诚, 袁道先, 曹建华, 等. 中国岩溶碳汇潜力研究 [J]. 地球学报, 2012, 33(2): 129-134. JIANG Z C, YUAN D X, CAO J H, et al. A study of carbon sink capacity of Karst processes in China [J]. Acta Geoscientica Sinica, 2012, 33(2): 129-134(in Chinese).
[13] QIAN J Z, PENG Y X, ZHAO W D, et al. Hydrochemical processes and evolution of Karst groundwater in the northeastern Huaibei Plain, China [J]. Hydrogeology Journal, 2018, 26(5): 1721-1729. doi: 10.1007/s10040-018-1805-3
[14] 黄奇波, 覃小群, 刘朋雨, 等. 柳林泉域岩溶地下水区域演化规律及控制因素 [J]. 环境科学, 2019, 40(5): 2132-2142. HUANG Q B, QIN X Q, LIU P Y, et al. Regional evolution and control factors of Karst groundwater in Liulin spring catchment [J]. Environmental Science, 2019, 40(5): 2132-2142(in Chinese).
[15] 唐春雷, 郑秀清, 梁永平. 龙子祠泉域岩溶地下水水化学特征及成因 [J]. 环境科学, 2020, 41(5): 2087-2095. TANG C L, ZHENG X Q, LIANG Y P. Hydrochemical characteristics and formation causes of ground Karst water systems in the longzici spring catchment [J]. Environmental Science, 2020, 41(5): 2087-2095(in Chinese).
[16] 唐春雷, 赵春红, 申豪勇, 等. 娘子关泉群水化学特征及成因 [J]. 环境科学, 2021, 42(3): 1416-1423. TANG C L, ZHAO C H, SHEN H Y, et al. Chemical characteristics and causes of groups water in niangziguan spring [J]. Environmental Science, 2021, 42(3): 1416-1423(in Chinese).
[17] WU X C, LI C S, SUN B, et al. Groundwater hydrogeochemical formation and evolution in a Karst aquifer system affected by anthropogenic impacts [J]. Environmental Geochemistry and Health, 2020, 42(9): 2609-2626. doi: 10.1007/s10653-019-00450-z
[18] GAO Z J, LIU J T, XU X Y, et al. Temporal variations of spring water in Karst areas: A case study of Jinan spring area, Northern China [J]. Water, 2020, 12(4): 1009. doi: 10.3390/w12041009
[19] CHEN M, WU Y, GAO D D, et al. Identification of coal mine water-bursting source using multivariate statistical analysis and tracing test [J]. Arabian Journal of Geosciences, 2017, 10(2): 1-14.
[20] 汪炎林, 周忠发, 田衷珲, 等. 池武溪流域岩溶水SO42-的空间变化特征及其来源分析 [J]. 环境化学, 2017, 36(12): 2690-2700. doi: 10.7524/j.issn.0254-6108.2017030105 WANG Y L, ZHOU Z F, TIAN Z H, et al. Analysis of the spatial variation and sources of SO42- in Karst water of Chiwu Revier [J]. Environmental Chemistry, 2017, 36(12): 2690-2700(in Chinese). doi: 10.7524/j.issn.0254-6108.2017030105
[21] 李笑, 于奭, 李亮, 等. 石期河流域地下水化学特征及物质来源分析 [J]. 环境科学, 2020, 41(9): 4021-4029. LI X, YU S, LI L, et al. Chemical characteristics of groundwater and material sources analysis in Shiqi river basin [J]. Environmental Science, 2020, 41(9): 4021-4029(in Chinese).
[22] 林永生, 裴建国, 杜毓超, 等. 基于多元统计方法的岩溶地下水化学特征及影响因素分析 [J]. 环境化学, 2016, 35(11): 2394-2401. doi: 10.7524/j.issn.0254-6108.2016.11.2016032801 LIN Y S, PEI J G, DU Y C, et al. Hydrochemical characteristics of Karst groundwater and their influencing factors based on multiple statistical analysis [J]. Environmental Chemistry, 2016, 35(11): 2394-2401(in Chinese). doi: 10.7524/j.issn.0254-6108.2016.11.2016032801
[23] 王剑, 罗朝晖, 陈植华, 等. 滇东北毛坪铅锌矿区水化学特征及成因 [J]. 环境化学, 2018, 37(6): 1421-1431. doi: 10.7524/j.issn.0254-6108.2017083102 WANG J, LUO Z H, CHEN Z H, et al. Characteristics and controlling factors of water chemistry in maoping lead-zinc mine area, Northeastern Yunnan, China [J]. Environmental Chemistry, 2018, 37(6): 1421-1431(in Chinese). doi: 10.7524/j.issn.0254-6108.2017083102
[24] 袁建飞, 邓国仕, 徐芬, 等. 毕节市北部岩溶地下水水化学特征及影响因素的多元统计分析 [J]. 中国地质, 2016, 43(4): 1446-1456. YUAN J F, DENG G S, XU F, et al. The multivariate statistical analysis of chemical characteristics and influencing factors of Karst groundwater in the northern part of Bijie City, Guizhou Province [J]. Geology in China, 2016, 43(4): 1446-1456(in Chinese).
[25] 叶慧君, 张瑞雪, 吴攀, 等. 六盘水矿区关键带岩溶水水化学演化特征及驱动因子 [J]. 地球科学, 2019, 44(9): 2887-2898. YE H J, ZHANG R X, WU P, et al. Characteristics and driving factor of hydrochemical evolution in Karst water in the critical zone of Liupanshui mining area [J]. Earth Science, 2019, 44(9): 2887-2898(in Chinese).
[26] 王世杰, 张信宝, 白晓永. 中国南方喀斯特地貌分区纲要 [J]. 山地学报, 2015, 33(6): 641-648. WANG S J, ZHANG X B, BAI X Y. An outline of Karst geomorphology zoning in the Karst areas of Southern China [J]. Mountain Research, 2015, 33(6): 641-648(in Chinese).
[27] 王嘉学, 王教元, 肖梦景, 等. 滇东高原地理环境分异与城镇上山空间资源研究 [J]. 云南师范大学学报(哲学社会科学版), 2014, 46(4): 48-53. WANG J X, WANG J Y, XIAO M J, et al. Geographic environment of the east plateau of Yunnan Province and spatial resources for constructing “Hill Towns” [J]. Journal of Yunnan Normal University (Humanities and Social Sciences), 2014, 46(4): 48-53(in Chinese).
[28] PIPER A M. A graphic procedure in the geochemical interpretation of water-analyses [J]. Transactions, American Geophysical Union, 1944, 25(6): 914. doi: 10.1029/TR025i006p00914
[29] 王恒纯. 同位素水文地质概论[M]. 北京: 地质出版社, 1991: 49. WANG H C. Hydrogeological conspectus on isotopes [M]. Beijing: Geological Publishing House, 1991: 49(in Chinese).
[30] 董小芳, 邓黄月, 郑祥民, 等. 长江流域降水中氢氧同位素特征及水汽来源 [J]. 环境科学与技术, 2017, 40(4): 78-84. DONG X F, DENG H Y, ZHENG X M, et al. Analysis of stable isotope characteristics and water vapor origins in atmospheric precipitation in the Yangtze River basin [J]. Environmental Science & Technology, 2017, 40(4): 78-84(in Chinese).
[31] 张明亮. 滇东黔西地下水氢氧同位素特征 [J]. 四川地质学报, 2019, 39(3): 508-511. doi: 10.3969/j.issn.1006-0995.2019.03.032 ZHANG M L. The δ18O and δD values of groundwater in east Yunnan and west Guizhou [J]. Acta Geologica Sichuan, 2019, 39(3): 508-511(in Chinese). doi: 10.3969/j.issn.1006-0995.2019.03.032
[32] GIBBS R J. Mechanisms controlling world water chemistry [J]. Science, 1970, 170(3962): 1088-1090. doi: 10.1126/science.170.3962.1088
[33] MARANDI A, SHAND P. Groundwater chemistry and the Gibbs diagram [J]. Applied Geochemistry, 2018, 97: 209-212. doi: 10.1016/j.apgeochem.2018.07.009
[34] GAILLARDET J, DUPRÉ B, LOUVAT P, et al. Global silicate weathering and CO2 consumption rates deduced from the chemistry of large rivers [J]. Chemical Geology, 1999, 159(1/2/3/4): 3-30.
[35] 苗迎, 孔祥胜, 宋朝静. 南宁市区地下水水化学特征及形成机制 [J]. 中国岩溶, 2015, 34(3): 228-233. doi: 10.11932/karst20150304 MIAO Y, KONG X S, SONG Z J. Hydrochemical characteristics and formation mechanism of groundwater in Nanning City [J]. Carsologica Sinica, 2015, 34(3): 228-233(in Chinese). doi: 10.11932/karst20150304
[36] JIANG Y J, CAO M, YUAN D X, et al. Hydrogeological characterization and environmental effects of the deteriorating urban Karst groundwater in a Karst trough valley: Nanshan, SW China [J]. Hydrogeology Journal, 2018, 26(5): 1487-1497. doi: 10.1007/s10040-018-1729-y
[37] BARZEGAR R, MOGHADDAM A A, TZIRITIS E, et al. Identification of hydrogeochemical processes and pollution sources of groundwater resources in the Marand plain, northwest of Iran [J]. Environmental Earth Sciences, 2017, 76(7): 1-16.
[38] ACERO P, AUQUÉ L F, GALVE J P, et al. Evaluation of geochemical and hydrogeological processes by geochemical modeling in an area affected by evaporite karstification [J]. Journal of Hydrology, 2015, 529: 1874-1889. doi: 10.1016/j.jhydrol.2015.07.028
[39] 刘朋雨, 胡宝清, 覃小群, 等. 南盘江流域不同类型水水文地球化学特征 [J]. 广西师范学院学报(自然科学版), 2013, 30(1): 63-69. LIU P Y, HU B Q, QIN X Q, et al. Hydrological and geochemical characteristics of different types of water in nanpanjiang basin [J]. Journal of Guangxi Teachers Education University (Natural Science Edition), 2013, 30(1): 63-69(in Chinese).
[40] 李水新, 闫志为, 劳文科, 等. 巧家县荞麦地河流域与金沙江右岸岩溶水水化学特征 [J]. 水利科技与经济, 2014, 20(2): 5-9. doi: 10.3969/j.issn.1006-7175.2014.02.002 LI S X, YAN Z W, LAO W K, et al. Hydrochemical characteristics of karst water in Qiaomaidi river basin and right bank of Jinsha river in Qiaojia county [J]. Water Conservancy Science and Technology and Economy, 2014, 20(2): 5-9(in Chinese). doi: 10.3969/j.issn.1006-7175.2014.02.002