Hydrogeochemical process and coal mining-motivated effect on the hydrochemistry for the groundwater system in mining area of Western China

The Jurassic coalfield in the mining area of western China exhibits a multi-layered groundwater system. However, it is subject to an arid and semi-arid climate with limited water resources. Consequently, the ecological environment is highly vulnerable, and the chemistry and quality of groundwater ma...

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Published inJournal of geochemical exploration Vol. 263; p. 107516
Main Authors Zeng, Yifan, Wu, Qiang, Mei, Aoshuang, Wang, Lu, Yin, Wenbin, Yang, Lei, Zhao, Di, Meng, Shihao, Gao, Hongfei
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.08.2024
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Abstract The Jurassic coalfield in the mining area of western China exhibits a multi-layered groundwater system. However, it is subject to an arid and semi-arid climate with limited water resources. Consequently, the ecological environment is highly vulnerable, and the chemistry and quality of groundwater may be influenced by multiple factors. This study systematically the coal mining-motivated effect on the hydrochemistry and water quality of the groundwater system, using the Caojiatan Coal Mine as a case study. The analysis incorporates a combination of the self-organizing maps (SOM), entropy-weighted water quality index (EWQI), and traditional hydrochemical analysis methods. After coal mining, there was an increase in the proportion of HCO3-Ca and HCO3-Mg in the groundwater samples of J2z, J2y4, and J2y5. The groundwater is controlled by cation exchange as a whole. The J2y4 and above groundwater is influenced by both the dissolution of carbonate and silicate rocks before coal mining. After coal mining, the Quaternary and J2a groundwater in the western wing is primarily influenced by the dissolution of carbonate rocks; the J2z, J2y4 and J2y5 groundwater is primarily governed by the dissolution of silicate rocks and the oxidation of FeS2; the J2y3 and below groundwater is primarily controlled by the dissolution of evaporate rocks. The resulting dilution effect after coal mining and the implementation of measures for the discharge of treated mine water make the groundwater quality of the J2y4 and higher aquifers tend to be better. The research findings serve as a valuable reference for promoting the sustainable development and protection of groundwater resources not only in the study area but also in other coal mines. •SOM offered valuable insights to clarify the diverse hydrochemical characteristics.•The hydrochemical process exhibited changes before and after coal mining.•Coal mining led to an improvement in groundwater quality due to dilution effect.•The coal mining-motivated effect on the hydrochemistry of groundwater system was systematically investigated.
AbstractList The Jurassic coalfield in the mining area of western China exhibits a multi-layered groundwater system. However, it is subject to an arid and semi-arid climate with limited water resources. Consequently, the ecological environment is highly vulnerable, and the chemistry and quality of groundwater may be influenced by multiple factors. This study systematically the coal mining-motivated effect on the hydrochemistry and water quality of the groundwater system, using the Caojiatan Coal Mine as a case study. The analysis incorporates a combination of the self-organizing maps (SOM), entropy-weighted water quality index (EWQI), and traditional hydrochemical analysis methods. After coal mining, there was an increase in the proportion of HCO3-Ca and HCO3-Mg in the groundwater samples of J2z, J2y4, and J2y5. The groundwater is controlled by cation exchange as a whole. The J2y4 and above groundwater is influenced by both the dissolution of carbonate and silicate rocks before coal mining. After coal mining, the Quaternary and J2a groundwater in the western wing is primarily influenced by the dissolution of carbonate rocks; the J2z, J2y4 and J2y5 groundwater is primarily governed by the dissolution of silicate rocks and the oxidation of FeS2; the J2y3 and below groundwater is primarily controlled by the dissolution of evaporate rocks. The resulting dilution effect after coal mining and the implementation of measures for the discharge of treated mine water make the groundwater quality of the J2y4 and higher aquifers tend to be better. The research findings serve as a valuable reference for promoting the sustainable development and protection of groundwater resources not only in the study area but also in other coal mines. •SOM offered valuable insights to clarify the diverse hydrochemical characteristics.•The hydrochemical process exhibited changes before and after coal mining.•Coal mining led to an improvement in groundwater quality due to dilution effect.•The coal mining-motivated effect on the hydrochemistry of groundwater system was systematically investigated.
ArticleNumber 107516
Author Yang, Lei
Yin, Wenbin
Wang, Lu
Gao, Hongfei
Mei, Aoshuang
Zhao, Di
Zeng, Yifan
Wu, Qiang
Meng, Shihao
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Cites_doi 10.1007/s10040-019-02101-0
10.1007/s11356-023-27147-2
10.1007/s12665-021-09735-y
10.1016/j.jhydrol.2015.01.023
10.1016/S0304-3800(02)00258-2
10.1016/j.gexplo.2021.106795
10.1007/s10661-009-1302-1
10.1007/BF00337288
10.1016/S0009-2541(97)00074-0
10.1007/s12665-020-09281-z
10.1016/j.neucom.2014.02.061
10.1007/s12403-020-00357-6
10.1016/j.gexplo.2021.106908
10.1016/j.jclepro.2020.120664
10.1126/science.170.3962.1088
10.1007/s12665-023-10817-2
10.1016/j.jhydrol.2021.126092
10.1016/j.envpol.2016.05.076
10.1016/j.apgeochem.2018.10.016
10.1016/j.gsf.2020.09.012
10.1016/j.watres.2022.118530
10.3390/su14116551
10.1007/s10064-017-1194-1
10.1016/j.jhydrol.2023.129319
10.1016/j.gexplo.2019.03.019
10.1007/s11356-017-0254-1
10.1007/s10230-022-00875-6
10.1016/S0009-2541(99)00031-5
10.1016/j.gexplo.2014.03.023
10.1007/s10230-017-0477-x
10.1016/j.geomorph.2010.05.013
10.1016/j.apgeochem.2015.07.009
10.1016/j.jhydrol.2024.130725
10.1016/j.envsoft.2009.01.008
10.1007/s11356-021-15643-2
10.1016/0016-7037(89)90294-9
10.1080/10807039.2019.1573035
10.1007/s12665-020-08942-3
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Keywords Coal mining-motivated effect
Hydrochemical evolution
Groundwater quality
Entropy-weighted water quality index (EWQI)
Self-organizing maps (SOM)
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References Céréghino, Park (bb0010) 2009; 24
Ji, Wu, Wang, Elumalai, Subramani (bb0060) 2020; 12
Gaillardet, Dupre, Allegre, Négrel (bb0020) 1997; 142
Zhao (bb0215) 2022; 14
Schoeller (bb0130) 1965; 33
Park, Cereghino, Compin, Lek (bb0100) 2003; 160
Vatanen (bb0150) 2015; 147
Zeng (bb0190) 2022; 47
Gibbs (bb0035) 1970; 170
Cao, Zhou, Xie, Rong, Wu (bb0005) 2019; 202
Zeng, Meng, Wu, Mei, Bu (bb0200) 2023; 619
Yang, Duan, Kang, Guan (bb0175) 2018
Hentati, Kawamura, Amaguchi, Iseri (bb0040) 2010; 122
Khalil, Hanich, Hakkou, Lepage (bb0065) 2014; 144
Tran, Banning, Heinze, Wohnlich (bb0140) 2022; 233
Yang, Mei, Gao, Zhao (bb0185) 2023; 30
Zhang, Zhao, Wu, Mu, Wu (bb0210) 2022; 219
Li (bb0075) 2021; 596
Huang (bb0050) 2018; 37
Wu, Wu, Qian, Zhu (bb0160) 2018; 98
Nguyen (bb0085) 2015; 63
Chen, Jiang, Lei, Yue (bb0015) 2020; 28
General Administration of Quality Supervision Inspection and Quarantine of the People’s Republic of China (bb0030) 2017
Zeng (bb0195) 2024; 630
Zhang, Zhao, Wu, Mu (bb0205) 2022; 29
Wu (bb0170) 2017; 78
Qu, Shi, Liang, Wang, Jin (bb0115) 2021; 80
Wang (bb0155) 2020; 79
Nguyen (bb0090) 2015; 522
Nordstrom, Ball, Donahoe, Whittemore (bb0095) 1989; 53
Islam, Ahmed, Bodrud-Doza, Chu (bb0055) 2017; 24
Kohonen (bb0070) 1982; 43
Gaillardet, Dupre, Louvat, Allegre (bb0025) 1999; 159
Zhu (bb0220) 2020; 257
Qu (bb0120) 2022; 41
Tian, Wu (bb0135) 2019; 25
Yang, Wang, Ma, Yu, Martin (bb0180) 2016; 216
Piper (bb0105) 1944; 25
Wu, Fang, Wu, Zhu, Zhang (bb0165) 2021; 12
Huang (bb0045) 2017; 37
Qu, Shi, Liang, Wang, Han (bb0110) 2021; 227
Vasanthavigar (bb0145) 2010; 171
Mu (bb0080) 2021; 80
Qu (bb0125) 2023; 82
Wu (10.1016/j.gexplo.2024.107516_bb0160) 2018; 98
Nguyen (10.1016/j.gexplo.2024.107516_bb0085) 2015; 63
Céréghino (10.1016/j.gexplo.2024.107516_bb0010) 2009; 24
Zeng (10.1016/j.gexplo.2024.107516_bb0190) 2022; 47
Wu (10.1016/j.gexplo.2024.107516_bb0170) 2017; 78
Nguyen (10.1016/j.gexplo.2024.107516_bb0090) 2015; 522
Piper (10.1016/j.gexplo.2024.107516_bb0105) 1944; 25
Nordstrom (10.1016/j.gexplo.2024.107516_bb0095) 1989; 53
Vasanthavigar (10.1016/j.gexplo.2024.107516_bb0145) 2010; 171
Vatanen (10.1016/j.gexplo.2024.107516_bb0150) 2015; 147
General Administration of Quality Supervision Inspection and Quarantine of the People’s Republic of China (10.1016/j.gexplo.2024.107516_bb0030) 2017
Gibbs (10.1016/j.gexplo.2024.107516_bb0035) 1970; 170
Tran (10.1016/j.gexplo.2024.107516_bb0140) 2022; 233
Park (10.1016/j.gexplo.2024.107516_bb0100) 2003; 160
Mu (10.1016/j.gexplo.2024.107516_bb0080) 2021; 80
Zhao (10.1016/j.gexplo.2024.107516_bb0215) 2022; 14
Gaillardet (10.1016/j.gexplo.2024.107516_bb0025) 1999; 159
Huang (10.1016/j.gexplo.2024.107516_bb0045) 2017; 37
Wu (10.1016/j.gexplo.2024.107516_bb0165) 2021; 12
Zhang (10.1016/j.gexplo.2024.107516_bb0205) 2022; 29
Qu (10.1016/j.gexplo.2024.107516_bb0115) 2021; 80
Yang (10.1016/j.gexplo.2024.107516_bb0175) 2018
Yang (10.1016/j.gexplo.2024.107516_bb0185) 2023; 30
Zeng (10.1016/j.gexplo.2024.107516_bb0200) 2023; 619
Zhang (10.1016/j.gexplo.2024.107516_bb0210) 2022; 219
Gaillardet (10.1016/j.gexplo.2024.107516_bb0020) 1997; 142
Kohonen (10.1016/j.gexplo.2024.107516_bb0070) 1982; 43
Li (10.1016/j.gexplo.2024.107516_bb0075) 2021; 596
Qu (10.1016/j.gexplo.2024.107516_bb0110) 2021; 227
Khalil (10.1016/j.gexplo.2024.107516_bb0065) 2014; 144
Ji (10.1016/j.gexplo.2024.107516_bb0060) 2020; 12
Qu (10.1016/j.gexplo.2024.107516_bb0125) 2023; 82
Wang (10.1016/j.gexplo.2024.107516_bb0155) 2020; 79
Cao (10.1016/j.gexplo.2024.107516_bb0005) 2019; 202
Schoeller (10.1016/j.gexplo.2024.107516_bb0130) 1965; 33
Hentati (10.1016/j.gexplo.2024.107516_bb0040) 2010; 122
Qu (10.1016/j.gexplo.2024.107516_bb0120) 2022; 41
Zeng (10.1016/j.gexplo.2024.107516_bb0195) 2024; 630
Tian (10.1016/j.gexplo.2024.107516_bb0135) 2019; 25
Zhu (10.1016/j.gexplo.2024.107516_bb0220) 2020; 257
Chen (10.1016/j.gexplo.2024.107516_bb0015) 2020; 28
Huang (10.1016/j.gexplo.2024.107516_bb0050) 2018; 37
Yang (10.1016/j.gexplo.2024.107516_bb0180) 2016; 216
Islam (10.1016/j.gexplo.2024.107516_bb0055) 2017; 24
References_xml – volume: 37
  start-page: 119
  year: 2017
  end-page: 136
  ident: bb0045
  article-title: Hydrochemical and stable isotope (δD and δ
  publication-title: Mine Water Environ.
– volume: 25
  year: 1944
  ident: bb0105
  article-title: A graphic procedure in the geochemical interpretation of water-analyses
  publication-title: Trans. Am. Geophys. Union
– volume: 216
  start-page: 340
  year: 2016
  end-page: 349
  ident: bb0180
  article-title: Hydrochemical characterization and pollution sources identification of groundwater in Salawusu aquifer system of Ordos Basin, China
  publication-title: Environ. Pollut.
– volume: 12
  start-page: 469
  year: 2020
  end-page: 485
  ident: bb0060
  article-title: Seasonal variation of drinking water quality and human health risk assessment in Hancheng City of Guanzhong Plain, China
  publication-title: Expos. Health
– year: 2017
  ident: bb0030
  article-title: Standard for Groundwater Quality, GB/T14848—2017
– volume: 41
  start-page: 640
  year: 2022
  end-page: 653
  ident: bb0120
  article-title: Impact of mining activities on groundwater level, hydrochemistry, and aquifer parameters in a coalfield's overburden aquifer
  publication-title: Mine Water Environ.
– volume: 98
  start-page: 404
  year: 2018
  end-page: 417
  ident: bb0160
  article-title: Hydrogeochemistry and groundwater quality assessment of high fluoride levels in the Yanchi endorheic region, northwest China
  publication-title: Appl. Geochem.
– volume: 79
  year: 2020
  ident: bb0155
  article-title: Hydrogeochemical processes and groundwater quality assessment for different aquifers in the Caojiatan coal mine of Ordos Basin, northwestern China
  publication-title: Environ. Earth Sci.
– volume: 12
  start-page: 781
  year: 2021
  end-page: 790
  ident: bb0165
  article-title: Hydrogeochemical characterization and quality assessment of groundwater using self-organizing maps in the Hangjinqi gasfield area, Ordos Basin, NW China
  publication-title: Geosci. Front.
– volume: 233
  year: 2022
  ident: bb0140
  article-title: Integration of self-organizing maps, statistical analysis, and hydrogeochemical modeling methods to identify spatio-seasonal variations in mine water quality
  publication-title: J. Geochem. Explor.
– volume: 30
  start-page: 67227
  year: 2023
  end-page: 67249
  ident: bb0185
  article-title: Both natural and anthropogenic factors control surface water and groundwater chemistry and quality in the Ningtiaota coalfield of Ordos Basin, Northwestern China
  publication-title: Environ. Sci. Pollut. Res. Int.
– volume: 219
  year: 2022
  ident: bb0210
  article-title: Delineating the controlling mechanisms of arsenic release into groundwater and its associated health risks in the Southern Loess Plateau, China
  publication-title: Water Res.
– volume: 53
  start-page: 1727
  year: 1989
  end-page: 1740
  ident: bb0095
  article-title: Groundwater chemistry and water-rock interactions at Stripa
  publication-title: Geochim. Cosmochim. Acta
– volume: 37
  start-page: 119
  year: 2018
  end-page: 136
  ident: bb0050
  article-title: Hydrochemical and stable isotope (delta D and delta O-18) characteristics of groundwater and hydrogeochemical processes in the Ningtiaota Coalfield, Northwest China
  publication-title: Mine Water Environ.
– start-page: 103
  year: 2018
  end-page: 105
  ident: bb0175
  article-title: Reverse hydrogeochemical simulation of Yushen area
  publication-title: China Science and Technology Information (S1)
– volume: 142
  start-page: 141
  year: 1997
  end-page: 173
  ident: bb0020
  article-title: Chemical and physical denudation in the Amazon River Basin
  publication-title: Chem. Geol.
– volume: 170
  start-page: 1088
  year: 1970
  end-page: 1090
  ident: bb0035
  article-title: Mechanisms controlling world water chemistry
  publication-title: Science
– volume: 202
  start-page: 92
  year: 2019
  end-page: 99
  ident: bb0005
  article-title: The distribution of rare earth elements and sources in Maoshitou reservoir affected by acid mine drainage, Southwest China
  publication-title: J. Geochem. Explor.
– volume: 80
  year: 2021
  ident: bb0080
  article-title: Hydrochemical and environmental isotope characteristics of groundwater in the Hongjiannao Lake Basin, Northwestern China
  publication-title: Environ. Earth Sci.
– volume: 227
  year: 2021
  ident: bb0110
  article-title: Multiple factors control groundwater chemistry and quality of multi-layer groundwater system in Northwest China coalfield-using self-organizing maps (SOM)
  publication-title: J. Geochem. Explor.
– volume: 14
  year: 2022
  ident: bb0215
  article-title: Source discrimination of mine gushing water using self-organizing feature maps: a case study in Ningtiaota Coal Mine, Shaanxi, China
  publication-title: Sustainability
– volume: 80
  year: 2021
  ident: bb0115
  article-title: Origin and controlling factors of groundwater chemistry and quality in the Zhiluo aquifer system of northern Ordos Basin, China
  publication-title: Environ. Earth Sci.
– volume: 147
  start-page: 60
  year: 2015
  end-page: 70
  ident: bb0150
  article-title: Self-organization and missing values in SOM and GTM
  publication-title: Neurocomputing
– volume: 29
  start-page: 901
  year: 2022
  end-page: 921
  ident: bb0205
  article-title: Hydrogeochemistry, identification of hydrogeochemical evolution mechanisms, and assessment of groundwater quality in the southwestern Ordos Basin, China
  publication-title: Environ. Sci. Pollut. Res. Int.
– volume: 522
  start-page: 661
  year: 2015
  end-page: 673
  ident: bb0090
  article-title: Clustering spatio-seasonal hydrogeochemical data using self-organizing maps for groundwater quality assessment in the Red River Delta, Vietnam
  publication-title: J. Hydrol.
– volume: 82
  year: 2023
  ident: bb0125
  article-title: Hydrochemical evolution of groundwater in overburden aquifers under the influence of mining activity: combining hydrochemistry and groundwater dynamics analysis
  publication-title: Environ. Earth Sci.
– volume: 25
  start-page: 132
  year: 2019
  end-page: 157
  ident: bb0135
  article-title: Groundwater quality appraisal by improved set pair analysis with game theory weightage and health risk estimation of contaminants for Xuecha drinking water source in a loess area in Northwest China
  publication-title: Hum. Ecol. Risk Assess. Int. J.
– volume: 28
  start-page: 673
  year: 2020
  end-page: 686
  ident: bb0015
  article-title: GRACE satellite monitoring and driving factors analysis of groundwater storage under high-intensity coal mining conditions: a case study of Ordos, northern Shaanxi and Shanxi, China
  publication-title: Hydrogeol. J.
– volume: 122
  start-page: 56
  year: 2010
  end-page: 64
  ident: bb0040
  article-title: Evaluation of sedimentation vulnerability at small hillside reservoirs in the semi-arid region of Tunisia using the Self-Organizing Map
  publication-title: Geomorphology
– volume: 596
  year: 2021
  ident: bb0075
  article-title: Identifying anthropogenic sources of groundwater contamination by natural background levels and stable isotope application in Pinggu basin, China
  publication-title: J. Hydrol.
– volume: 171
  start-page: 595
  year: 2010
  end-page: 609
  ident: bb0145
  article-title: Application of water quality index for groundwater quality assessment: Thirumanimuttar sub-basin, Tamilnadu, India
  publication-title: Environ. Monit. Assess.
– volume: 257
  year: 2020
  ident: bb0220
  article-title: Influence of mining activities on groundwater hydrochemistry and heavy metal migration using a self-organizing map (SOM)
  publication-title: J. Clean. Prod.
– volume: 24
  start-page: 945
  year: 2009
  end-page: 947
  ident: bb0010
  article-title: Review of the Self-Organizing Map (SOM) approach in water resources: commentary
  publication-title: Environ. Model. Software
– volume: 63
  start-page: 10
  year: 2015
  end-page: 21
  ident: bb0085
  article-title: Identification of spatio-seasonal hydrogeochemical characteristics of the unconfined groundwater in the Red River Delta, Vietnam
  publication-title: Appl. Geochem.
– volume: 33
  start-page: 44
  year: 1965
  end-page: 52
  ident: bb0130
  article-title: Qualitative evaluation of groundwater resources. Methods and techniques of groundwater investigations and development
  publication-title: UNESCO Water Resour. Ser.
– volume: 159
  start-page: 3
  year: 1999
  end-page: 30
  ident: bb0025
  article-title: Global silicate weathering and CO
  publication-title: Chem. Geol.
– volume: 43
  start-page: 59
  year: 1982
  end-page: 69
  ident: bb0070
  article-title: Self-organized formation of topologically correct feature maps
  publication-title: Biol. Cybern.
– volume: 24
  start-page: 26350
  year: 2017
  end-page: 26374
  ident: bb0055
  article-title: Characterizing groundwater quality ranks for drinking purposes in Sylhet district, Bangladesh, using entropy method, spatial autocorrelation index, and geostatistics
  publication-title: Environ. Sci. Pollut. Res.
– volume: 144
  start-page: 468
  year: 2014
  end-page: 477
  ident: bb0065
  article-title: GIS-based environmental database for assessing the mine pollution: a case study of an abandoned mine site in Morocco
  publication-title: J. Geochem. Explor.
– volume: 78
  start-page: 469
  year: 2017
  end-page: 482
  ident: bb0170
  article-title: Source discrimination of mine water inrush using multiple methods: a case study from the Beiyangzhuang Mine, Northern China
  publication-title: Bull. Eng. Geol. Environ.
– volume: 630
  year: 2024
  ident: bb0195
  article-title: Double verification and quantitative traceability: a solution for mixed mine water sources
  publication-title: J. Hydrol.
– volume: 160
  start-page: 265
  year: 2003
  end-page: 280
  ident: bb0100
  article-title: Applications of artificial neural networks for patterning and predicting aquatic insect species richness in running waters
  publication-title: Ecol. Model.
– volume: 47
  start-page: 4482
  year: 2022
  end-page: 4494
  ident: bb0190
  article-title: Source discrimination of mine water inflow or inrush using hydrochemical field and hydrodynamic field tracer simulation coupling
  publication-title: J. China Coal Soc.
– volume: 619
  year: 2023
  ident: bb0200
  article-title: Ecological water security impact of large coal base development and its protection
  publication-title: J. Hydrol.
– volume: 28
  start-page: 673
  issue: 2
  year: 2020
  ident: 10.1016/j.gexplo.2024.107516_bb0015
  article-title: GRACE satellite monitoring and driving factors analysis of groundwater storage under high-intensity coal mining conditions: a case study of Ordos, northern Shaanxi and Shanxi, China
  publication-title: Hydrogeol. J.
  doi: 10.1007/s10040-019-02101-0
– volume: 30
  start-page: 67227
  issue: 25
  year: 2023
  ident: 10.1016/j.gexplo.2024.107516_bb0185
  article-title: Both natural and anthropogenic factors control surface water and groundwater chemistry and quality in the Ningtiaota coalfield of Ordos Basin, Northwestern China
  publication-title: Environ. Sci. Pollut. Res. Int.
  doi: 10.1007/s11356-023-27147-2
– volume: 80
  issue: 12
  year: 2021
  ident: 10.1016/j.gexplo.2024.107516_bb0115
  article-title: Origin and controlling factors of groundwater chemistry and quality in the Zhiluo aquifer system of northern Ordos Basin, China
  publication-title: Environ. Earth Sci.
  doi: 10.1007/s12665-021-09735-y
– volume: 522
  start-page: 661
  year: 2015
  ident: 10.1016/j.gexplo.2024.107516_bb0090
  article-title: Clustering spatio-seasonal hydrogeochemical data using self-organizing maps for groundwater quality assessment in the Red River Delta, Vietnam
  publication-title: J. Hydrol.
  doi: 10.1016/j.jhydrol.2015.01.023
– volume: 160
  start-page: 265
  issue: 3
  year: 2003
  ident: 10.1016/j.gexplo.2024.107516_bb0100
  article-title: Applications of artificial neural networks for patterning and predicting aquatic insect species richness in running waters
  publication-title: Ecol. Model.
  doi: 10.1016/S0304-3800(02)00258-2
– volume: 227
  year: 2021
  ident: 10.1016/j.gexplo.2024.107516_bb0110
  article-title: Multiple factors control groundwater chemistry and quality of multi-layer groundwater system in Northwest China coalfield-using self-organizing maps (SOM)
  publication-title: J. Geochem. Explor.
  doi: 10.1016/j.gexplo.2021.106795
– start-page: 103
  year: 2018
  ident: 10.1016/j.gexplo.2024.107516_bb0175
  article-title: Reverse hydrogeochemical simulation of Yushen area
– volume: 171
  start-page: 595
  issue: 1
  year: 2010
  ident: 10.1016/j.gexplo.2024.107516_bb0145
  article-title: Application of water quality index for groundwater quality assessment: Thirumanimuttar sub-basin, Tamilnadu, India
  publication-title: Environ. Monit. Assess.
  doi: 10.1007/s10661-009-1302-1
– volume: 43
  start-page: 59
  issue: 1
  year: 1982
  ident: 10.1016/j.gexplo.2024.107516_bb0070
  article-title: Self-organized formation of topologically correct feature maps
  publication-title: Biol. Cybern.
  doi: 10.1007/BF00337288
– volume: 142
  start-page: 141
  issue: 3–4
  year: 1997
  ident: 10.1016/j.gexplo.2024.107516_bb0020
  article-title: Chemical and physical denudation in the Amazon River Basin
  publication-title: Chem. Geol.
  doi: 10.1016/S0009-2541(97)00074-0
– volume: 80
  issue: 2
  year: 2021
  ident: 10.1016/j.gexplo.2024.107516_bb0080
  article-title: Hydrochemical and environmental isotope characteristics of groundwater in the Hongjiannao Lake Basin, Northwestern China
  publication-title: Environ. Earth Sci.
  doi: 10.1007/s12665-020-09281-z
– volume: 147
  start-page: 60
  year: 2015
  ident: 10.1016/j.gexplo.2024.107516_bb0150
  article-title: Self-organization and missing values in SOM and GTM
  publication-title: Neurocomputing
  doi: 10.1016/j.neucom.2014.02.061
– volume: 12
  start-page: 469
  issue: 3
  year: 2020
  ident: 10.1016/j.gexplo.2024.107516_bb0060
  article-title: Seasonal variation of drinking water quality and human health risk assessment in Hancheng City of Guanzhong Plain, China
  publication-title: Expos. Health
  doi: 10.1007/s12403-020-00357-6
– volume: 233
  year: 2022
  ident: 10.1016/j.gexplo.2024.107516_bb0140
  article-title: Integration of self-organizing maps, statistical analysis, and hydrogeochemical modeling methods to identify spatio-seasonal variations in mine water quality
  publication-title: J. Geochem. Explor.
  doi: 10.1016/j.gexplo.2021.106908
– volume: 257
  year: 2020
  ident: 10.1016/j.gexplo.2024.107516_bb0220
  article-title: Influence of mining activities on groundwater hydrochemistry and heavy metal migration using a self-organizing map (SOM)
  publication-title: J. Clean. Prod.
  doi: 10.1016/j.jclepro.2020.120664
– volume: 170
  start-page: 1088
  issue: 3962
  year: 1970
  ident: 10.1016/j.gexplo.2024.107516_bb0035
  article-title: Mechanisms controlling world water chemistry
  publication-title: Science
  doi: 10.1126/science.170.3962.1088
– volume: 82
  issue: 6
  year: 2023
  ident: 10.1016/j.gexplo.2024.107516_bb0125
  article-title: Hydrochemical evolution of groundwater in overburden aquifers under the influence of mining activity: combining hydrochemistry and groundwater dynamics analysis
  publication-title: Environ. Earth Sci.
  doi: 10.1007/s12665-023-10817-2
– volume: 596
  year: 2021
  ident: 10.1016/j.gexplo.2024.107516_bb0075
  article-title: Identifying anthropogenic sources of groundwater contamination by natural background levels and stable isotope application in Pinggu basin, China
  publication-title: J. Hydrol.
  doi: 10.1016/j.jhydrol.2021.126092
– volume: 216
  start-page: 340
  year: 2016
  ident: 10.1016/j.gexplo.2024.107516_bb0180
  article-title: Hydrochemical characterization and pollution sources identification of groundwater in Salawusu aquifer system of Ordos Basin, China
  publication-title: Environ. Pollut.
  doi: 10.1016/j.envpol.2016.05.076
– volume: 98
  start-page: 404
  year: 2018
  ident: 10.1016/j.gexplo.2024.107516_bb0160
  article-title: Hydrogeochemistry and groundwater quality assessment of high fluoride levels in the Yanchi endorheic region, northwest China
  publication-title: Appl. Geochem.
  doi: 10.1016/j.apgeochem.2018.10.016
– volume: 12
  start-page: 781
  issue: 2
  year: 2021
  ident: 10.1016/j.gexplo.2024.107516_bb0165
  article-title: Hydrogeochemical characterization and quality assessment of groundwater using self-organizing maps in the Hangjinqi gasfield area, Ordos Basin, NW China
  publication-title: Geosci. Front.
  doi: 10.1016/j.gsf.2020.09.012
– volume: 219
  year: 2022
  ident: 10.1016/j.gexplo.2024.107516_bb0210
  article-title: Delineating the controlling mechanisms of arsenic release into groundwater and its associated health risks in the Southern Loess Plateau, China
  publication-title: Water Res.
  doi: 10.1016/j.watres.2022.118530
– volume: 14
  issue: 11
  year: 2022
  ident: 10.1016/j.gexplo.2024.107516_bb0215
  article-title: Source discrimination of mine gushing water using self-organizing feature maps: a case study in Ningtiaota Coal Mine, Shaanxi, China
  publication-title: Sustainability
  doi: 10.3390/su14116551
– volume: 78
  start-page: 469
  issue: 1
  year: 2017
  ident: 10.1016/j.gexplo.2024.107516_bb0170
  article-title: Source discrimination of mine water inrush using multiple methods: a case study from the Beiyangzhuang Mine, Northern China
  publication-title: Bull. Eng. Geol. Environ.
  doi: 10.1007/s10064-017-1194-1
– volume: 619
  year: 2023
  ident: 10.1016/j.gexplo.2024.107516_bb0200
  article-title: Ecological water security impact of large coal base development and its protection
  publication-title: J. Hydrol.
  doi: 10.1016/j.jhydrol.2023.129319
– volume: 202
  start-page: 92
  year: 2019
  ident: 10.1016/j.gexplo.2024.107516_bb0005
  article-title: The distribution of rare earth elements and sources in Maoshitou reservoir affected by acid mine drainage, Southwest China
  publication-title: J. Geochem. Explor.
  doi: 10.1016/j.gexplo.2019.03.019
– volume: 33
  start-page: 44
  year: 1965
  ident: 10.1016/j.gexplo.2024.107516_bb0130
  article-title: Qualitative evaluation of groundwater resources. Methods and techniques of groundwater investigations and development
  publication-title: UNESCO Water Resour. Ser.
– volume: 24
  start-page: 26350
  issue: 34
  year: 2017
  ident: 10.1016/j.gexplo.2024.107516_bb0055
  article-title: Characterizing groundwater quality ranks for drinking purposes in Sylhet district, Bangladesh, using entropy method, spatial autocorrelation index, and geostatistics
  publication-title: Environ. Sci. Pollut. Res.
  doi: 10.1007/s11356-017-0254-1
– year: 2017
  ident: 10.1016/j.gexplo.2024.107516_bb0030
– volume: 41
  start-page: 640
  issue: 3
  year: 2022
  ident: 10.1016/j.gexplo.2024.107516_bb0120
  article-title: Impact of mining activities on groundwater level, hydrochemistry, and aquifer parameters in a coalfield's overburden aquifer
  publication-title: Mine Water Environ.
  doi: 10.1007/s10230-022-00875-6
– volume: 159
  start-page: 3
  issue: 1–4
  year: 1999
  ident: 10.1016/j.gexplo.2024.107516_bb0025
  article-title: Global silicate weathering and CO2 consumption rates deduced from the chemistry of large rivers
  publication-title: Chem. Geol.
  doi: 10.1016/S0009-2541(99)00031-5
– volume: 144
  start-page: 468
  year: 2014
  ident: 10.1016/j.gexplo.2024.107516_bb0065
  article-title: GIS-based environmental database for assessing the mine pollution: a case study of an abandoned mine site in Morocco
  publication-title: J. Geochem. Explor.
  doi: 10.1016/j.gexplo.2014.03.023
– volume: 37
  start-page: 119
  issue: 1
  year: 2017
  ident: 10.1016/j.gexplo.2024.107516_bb0045
  article-title: Hydrochemical and stable isotope (δD and δ18O) characteristics of groundwater and hydrogeochemical processes in the Ningtiaota Coalfield, Northwest China
  publication-title: Mine Water Environ.
  doi: 10.1007/s10230-017-0477-x
– volume: 122
  start-page: 56
  issue: 1
  year: 2010
  ident: 10.1016/j.gexplo.2024.107516_bb0040
  article-title: Evaluation of sedimentation vulnerability at small hillside reservoirs in the semi-arid region of Tunisia using the Self-Organizing Map
  publication-title: Geomorphology
  doi: 10.1016/j.geomorph.2010.05.013
– volume: 63
  start-page: 10
  year: 2015
  ident: 10.1016/j.gexplo.2024.107516_bb0085
  article-title: Identification of spatio-seasonal hydrogeochemical characteristics of the unconfined groundwater in the Red River Delta, Vietnam
  publication-title: Appl. Geochem.
  doi: 10.1016/j.apgeochem.2015.07.009
– volume: 25
  issue: 6
  year: 1944
  ident: 10.1016/j.gexplo.2024.107516_bb0105
  article-title: A graphic procedure in the geochemical interpretation of water-analyses
  publication-title: Trans. Am. Geophys. Union
– volume: 630
  year: 2024
  ident: 10.1016/j.gexplo.2024.107516_bb0195
  article-title: Double verification and quantitative traceability: a solution for mixed mine water sources
  publication-title: J. Hydrol.
  doi: 10.1016/j.jhydrol.2024.130725
– volume: 47
  start-page: 4482
  issue: 12
  year: 2022
  ident: 10.1016/j.gexplo.2024.107516_bb0190
  article-title: Source discrimination of mine water inflow or inrush using hydrochemical field and hydrodynamic field tracer simulation coupling
  publication-title: J. China Coal Soc.
– volume: 24
  start-page: 945
  issue: 8
  year: 2009
  ident: 10.1016/j.gexplo.2024.107516_bb0010
  article-title: Review of the Self-Organizing Map (SOM) approach in water resources: commentary
  publication-title: Environ. Model. Software
  doi: 10.1016/j.envsoft.2009.01.008
– volume: 29
  start-page: 901
  issue: 1
  year: 2022
  ident: 10.1016/j.gexplo.2024.107516_bb0205
  article-title: Hydrogeochemistry, identification of hydrogeochemical evolution mechanisms, and assessment of groundwater quality in the southwestern Ordos Basin, China
  publication-title: Environ. Sci. Pollut. Res. Int.
  doi: 10.1007/s11356-021-15643-2
– volume: 53
  start-page: 1727
  issue: 8
  year: 1989
  ident: 10.1016/j.gexplo.2024.107516_bb0095
  article-title: Groundwater chemistry and water-rock interactions at Stripa
  publication-title: Geochim. Cosmochim. Acta
  doi: 10.1016/0016-7037(89)90294-9
– volume: 37
  start-page: 119
  issue: 1
  year: 2018
  ident: 10.1016/j.gexplo.2024.107516_bb0050
  article-title: Hydrochemical and stable isotope (delta D and delta O-18) characteristics of groundwater and hydrogeochemical processes in the Ningtiaota Coalfield, Northwest China
  publication-title: Mine Water Environ.
  doi: 10.1007/s10230-017-0477-x
– volume: 25
  start-page: 132
  issue: 1–2
  year: 2019
  ident: 10.1016/j.gexplo.2024.107516_bb0135
  article-title: Groundwater quality appraisal by improved set pair analysis with game theory weightage and health risk estimation of contaminants for Xuecha drinking water source in a loess area in Northwest China
  publication-title: Hum. Ecol. Risk Assess. Int. J.
  doi: 10.1080/10807039.2019.1573035
– volume: 79
  issue: 9
  year: 2020
  ident: 10.1016/j.gexplo.2024.107516_bb0155
  article-title: Hydrogeochemical processes and groundwater quality assessment for different aquifers in the Caojiatan coal mine of Ordos Basin, northwestern China
  publication-title: Environ. Earth Sci.
  doi: 10.1007/s12665-020-08942-3
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Snippet The Jurassic coalfield in the mining area of western China exhibits a multi-layered groundwater system. However, it is subject to an arid and semi-arid climate...
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StartPage 107516
SubjectTerms Coal mining-motivated effect
Entropy-weighted water quality index (EWQI)
Groundwater quality
Hydrochemical evolution
Self-organizing maps (SOM)
Title Hydrogeochemical process and coal mining-motivated effect on the hydrochemistry for the groundwater system in mining area of Western China
URI https://dx.doi.org/10.1016/j.gexplo.2024.107516
Volume 263
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