Stable isotope and hydrochemical evolution of shallow groundwater in mining area of the Changzhi Basin, northern China
暂无分享,去创建一个
[1] C. Tang,et al. A multiple isotope (H, O, N, C and S) approach to elucidate the hydrochemical evolution of shallow groundwater in a rapidly urbanized area of the Pearl River Delta, China. , 2020, The Science of the total environment.
[2] Yanguo Teng,et al. Identification of hydrochemical genesis and screening of typical groundwater pollutants impacting human health: A case study in Northeast China. , 2019, Environmental pollution.
[3] Yuesuo Yang,et al. Isotopic and geochemical interpretation of groundwater under the influences of anthropogenic activities , 2019, Journal of Hydrology.
[4] A. Mohanty,et al. Hydrogeochemical, seawater intrusion and oxygen isotope studies on a coastal region in the Puri District of Odisha, India , 2019, CATENA.
[5] P. Shand,et al. Groundwater chemistry and the Gibbs Diagram , 2018, Applied Geochemistry.
[6] M. Nüsser,et al. Hydrochemical and environmental isotope analysis of groundwater and surface water in a dry mountain region in Northern Chile , 2018, Environmental Monitoring and Assessment.
[7] Xu-sheng Wang,et al. Groundwater quality and associated hydrogeochemical processes in Northwest Namibia , 2018 .
[8] B. Xi,et al. Sources of groundwater salinity and potential impact on arsenic mobility in the western Hetao Basin, Inner Mongolia. , 2017, The Science of the total environment.
[9] N. Chandrasekar,et al. Hydrogeochemical characteristics and groundwater contamination in the rapid urban development areas of Coimbatore, India , 2017 .
[10] N. Chandrasekara,et al. Hydrogeochemical characteristics and groundwater contamination in the rapid urban development areas of Coimbatore, India , 2017 .
[11] Qingchun Yang,et al. Identification of the hydrogeochemical processes and assessment of groundwater quality using classic integrated geochemical methods in the Southeastern part of Ordos basin, China. , 2016, Environmental pollution.
[12] H. Qian,et al. Groundwater Nitrate Contamination and Associated Health Risk for the Rural Communities in an Agricultural Area of Ningxia, Northwest China , 2016, Exposure and Health.
[13] Zhang Yongbo,et al. Assessment of Karst Groundwater Vulnerability in Xin'an Spring Area Based on Modified RISKE Model , 2016 .
[14] Dongmei Han,et al. The role of anthropogenic and natural factors in shaping the geochemical evolution of groundwater in the Subei Lake basin, Ordos energy base, Northwestern China. , 2015, The Science of the total environment.
[15] B. Andreo,et al. Hydrogeochemical tools applied to the study of carbonate aquifers: examples from some karst systems of Southern Spain , 2015, Environmental Earth Sciences.
[16] M. Cox,et al. Three-dimensional geological modelling of the Galilee and central Eromanga basins, Australia: New insights into aquifer/aquitard geometry and potential influence of faults on inter-connectivity , 2014 .
[17] J. McDonnell,et al. Debates—The future of hydrological sciences: A (common) path forward? A call to action aimed at understanding velocities, celerities and residence time distributions of the headwater hydrograph , 2014 .
[18] Fan Liu,et al. Impact of anthropogenic and natural processes on the evolution of groundwater chemistry in a rapidly urbanized coastal area, South China. , 2013, The Science of the total environment.
[19] Huaming Guo,et al. Groundwater hydrochemical characteristics and processes along flow paths in the North China Plain , 2013 .
[20] E. Kruse,et al. Interaction between continental and estuarine waters in the wetlands of the northern coastal plain of Samborombón Bay, Argentina , 2013 .
[21] M. Milke,et al. Chemical variability of groundwater samples collected from a coal seam gas exploration well, Maramarua, New Zealand. , 2012, Water research.
[22] Peiyue Li,et al. Isotopic characteristics of precipitation, surface and ground waters in the Yinchuan plain, Northwest China , 2013, Environmental Earth Sciences.
[23] K. Zouari,et al. Hydrogeochemical processes affecting groundwater in an irrigated land in Central Tunisia , 2013, Environmental Earth Sciences.
[24] Tianming Huang,et al. The role of deuterium excess in determining the water salinisation mechanism: A case study of the arid Tarim River Basin, NW China , 2012 .
[25] Wang Chang-shen. A study of evolution of the discharge of the Xin'an Spring with time series analysis , 2012 .
[26] Jiansheng Chen,et al. Isotopic constraints on the origin of groundwater in the Ordos Basin of northern China , 2012, Environmental Earth Sciences.
[27] S. Mirbagheri,et al. Evaluation of groundwater quantity and quality in the Kashan Basin, Central Iran , 2011 .
[28] Lazhar Belkhiri,et al. Statistical categorization geochemical modeling of groundwater in Ain Azel plain (Algeria) , 2011 .
[29] S. Yidana,et al. Analysis of groundwater quality using multivariate and spatial analyses in the Keta basin, Ghana , 2010 .
[30] Genxu Wang,et al. Major ions chemistry of groundwater in the arid region of Zhangye Basin, northwestern China , 2010 .
[31] By W. Dansga,et al. Stable isotopes in precipitation , 2010 .
[32] A. T. Tizro,et al. Groundwater quality in the semi‐arid region of the Chahardouly basin, West Iran , 2008 .
[33] Sun Xing-liang. The Application of Fuzzy Judgement in Karst Groundwater Quality of Xin'an Spring Region , 2008 .
[34] Yan-xin Wang,et al. Strontium isotope characterization and major ion geochemistry of karst water flow, Shentou, northern China , 2006 .
[35] S. Goldberg. Geochemistry, Groundwater and Pollution , 2006 .
[36] Cüneyt Güler,et al. Sequential Analysis of Hydrochemical Data for Watershed Characterization , 2004, Ground water.
[37] R. Krishnamurthy,et al. Isotopic and geochemical evolution of ground and surface waters in a karst dominated geological setting: a case study from Belize, Central America , 2004 .
[38] James M. Thomas,et al. Environmental isotopes in hydrogeology , 2003 .
[39] L. N. Plummer,et al. Geochemical Modeling of the Madison Aquifer in Parts of Montana, Wyoming, and South Dakota , 1990 .
[40] R. Gibbs. Mechanisms Controlling World Water Chemistry , 1970, Science.
[41] H. Kaiser. The Application of Electronic Computers to Factor Analysis , 1960 .