[1]陈建生,杨松堂,刘建刚,等.环境同位素和水化学在堤坝渗漏研究中的应用\ [J\]. 岩石力学与工程学报,2004,23(12):2091-2095.
[2]张华,周训. 广西北海市地下水系统水化学特征的分析\ [J\]. 现代地质,2007,21(4):613-619.
[3]邵景力, 徐映雪, 崔亚莉, 等. 变异条件下内蒙古呼包平原地下水演化趋势\ [J\]. 现代地质, 2006, 20 (3): 480-485.
[4]陈立, 张发旺, 程彦培, 等. 宁夏海原盆地地下水水化学特征及其演化规律\ [J\]. 现代地质,2009,23(1):9-14.
[5]Stollenwerk K G. Geochemical interactions between constituents in acidic groundwater and alluvium in an aquifer near Globe, Arizona \ [J\]. Applied Geochemistry, 1994, 9(4): 353-369.
[6]Abhijit M, Alan E F. Deeper groundwater chemistry and geochemical modeling of the arsenic affected western Bengal basin, West Bengal, India \ [J\]. Applied Geochemistry,2008, 23(4): 863-894.
[7]陈陆望,桂和荣,胡友标,等.皖北矿区煤层底板岩溶水水化学特征研究\ [J\]. 煤田地质与勘探,2003,31(2):27-30.
[8]Parkhurst D L, Appelo C A J.Users guide to PHREEQC(version 2):a computer program for speciation, batchreaction, onedimensional transport, and inverse geochemical calculations\ [R\]. U.S. Department of the Interior, U.S. Geological Survey: Waterresources Investigations Report, 1999.
[9]Claus K, Christoph S, Jose B H, et al. Recharge sources and hydrogeochemical evolution of groundwater in semiarid and karstic environments: A field study in the Granada Basin(Southern Spain)\ [J\]. Applied Geochemistry, 2008, 23 (4): 846-862.
[10]钱会,马致远. 水文地球化学\ [M\]. 北京:地质出版社,2005: 45-62.
[11]申江.冯营矿矿井生产地质报告\ [R\]. 焦作:焦作矿务局,2006:70-85.
[12]马振民,刘立才,陈鸿汉,等.山东泰安岩溶水系统地下水化学环境演化\ [J\].现代地质,2002,16(2):423-428. |