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...
Saved in:
Published in | Journal of geochemical exploration Vol. 263; p. 107516 |
---|---|
Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.08.2024
|
Subjects | |
Online Access | Get full text |
Cover
Loading…
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 |
Author_xml | – sequence: 1 givenname: Yifan surname: Zeng fullname: Zeng, Yifan organization: National Engineering Research Center of Coal Mine Water Hazard Controlling, China University of Mining and Technology (Beijing), Beijing 100083, China – sequence: 2 givenname: Qiang surname: Wu fullname: Wu, Qiang email: wuq@cumtb.edu.cn organization: National Engineering Research Center of Coal Mine Water Hazard Controlling, China University of Mining and Technology (Beijing), Beijing 100083, China – sequence: 3 givenname: Aoshuang surname: Mei fullname: Mei, Aoshuang email: mei_aoshuang@outlook.com organization: National Engineering Research Center of Coal Mine Water Hazard Controlling, China University of Mining and Technology (Beijing), Beijing 100083, China – sequence: 4 givenname: Lu surname: Wang fullname: Wang, Lu organization: Shaanxi Shanmei Caojiatan Mining Co., Ltd., Yulin 719000, Shaanxi, China – sequence: 5 givenname: Wenbin surname: Yin fullname: Yin, Wenbin organization: Xiaojihan Coal Mine, Shaanxi Huadian Yuheng Coal & Electricity Co., Ltd., Yulin 719000, Shaanxi, China – sequence: 6 givenname: Lei surname: Yang fullname: Yang, Lei organization: SHCCIG Shenmu Hongliulin Mining Co., Ltd., Shenmu 719300, Shaanxi, China – sequence: 7 givenname: Di surname: Zhao fullname: Zhao, Di organization: National Engineering Research Center of Coal Mine Water Hazard Controlling, China University of Mining and Technology (Beijing), Beijing 100083, China – sequence: 8 givenname: Shihao surname: Meng fullname: Meng, Shihao organization: National Engineering Research Center of Coal Mine Water Hazard Controlling, China University of Mining and Technology (Beijing), Beijing 100083, China – sequence: 9 givenname: Hongfei surname: Gao fullname: Gao, Hongfei organization: National Engineering Research Center of Coal Mine Water Hazard Controlling, China University of Mining and Technology (Beijing), Beijing 100083, China |
BookMark | eNqFkM1KAzEURoNUsK2-gYu8wNRk_jJxIUhRKxTcKC5DTO7MpMwkJYnVeQWf2mnryoWuAl84B-6ZoYl1FhC6pGRBCS2vNosGPredW6QkzceJFbQ8QVNaMZ7QsuITNCUZK5KS5ekZmoWwIYRQlpdT9LUatHcNONVCb5Ts8NY7BSFgaTVWbhx6Y41tkt5Fs5MRNIa6BhWxszi2gNu94ECH6AdcO3-YG-_erf4YAY_DECL02NgfF5YeJHY1foXxw1u8bI2V5-i0ll2Ai593jl7u756Xq2T99PC4vF0nMkt5THheFBx4lleV4pS9kYoVuZQFhapgpc6By1JLpmtFGFQq0zyVuiBKZUxVtKyzObo-epV3IXiohTJRRuNs9NJ0ghKxryo24lhV7KuKY9URzn_BW2966Yf_sJsjBuNhOwNeBGXAKtDGjy2FduZvwTfhQ5mI |
CitedBy_id | crossref_primary_10_1016_j_jhazmat_2024_136514 |
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 |
ContentType | Journal Article |
Copyright | 2024 Elsevier B.V. |
Copyright_xml | – notice: 2024 Elsevier B.V. |
DBID | AAYXX CITATION |
DOI | 10.1016/j.gexplo.2024.107516 |
DatabaseName | CrossRef |
DatabaseTitle | CrossRef |
DatabaseTitleList | |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Engineering |
EISSN | 1879-1689 |
ExternalDocumentID | 10_1016_j_gexplo_2024_107516 S0375674224001328 |
GroupedDBID | --K --M -~X .~1 0R~ 1B1 1RT 1~. 1~5 29K 4.4 457 4G. 5GY 5VS 7-5 71M 8P~ 9JM 9JN AACTN AAEDT AAEDW AAIAV AAIKJ AAKOC AALRI AAOAW AAQFI AAQXK AAXUO ABFYP ABJNI ABLST ABMAC ABQEM ABQYD ABTAH ABXDB ACDAQ ACGFS ACLVX ACRLP ACSBN ADBBV ADEZE ADMUD AEBSH AEKER AENEX AFFNX AFKWA AFTJW AFXIZ AGHFR AGUBO AGYEJ AHEUO AHHHB AI. AIEXJ AIKHN AITUG AJOXV AKIFW AKRWK ALMA_UNASSIGNED_HOLDINGS AMFUW AMRAJ ASPBG ATOGT AVWKF AXJTR AZFZN BKOJK BLECG BLXMC CS3 D-I DU5 EBS EFJIC EJD EO8 EO9 EP2 EP3 FDB FEDTE FGOYB FIRID FNPLU FYGXN G-2 G-Q GBLVA HMA HVGLF HZ~ IHE IMUCA J1W KCYFY KOM LY3 M41 MO0 N9A O-L O9- OAUVE OZT P-8 P-9 P2P PC. Q38 R2- RIG ROL RPZ SDF SDG SDP SEP SES SEW SPC SPCBC SSE SSJ SSZ T5K TN5 VH1 WUQ XOL XPP ZMT ZY4 ~02 ~G- AATTM AAXKI AAYWO AAYXX ABWVN ACRPL ACVFH ADCNI ADNMO AEIPS AEUPX AFJKZ AFPUW AGCQF AGQPQ AGRNS AIGII AIIUN AKBMS AKYEP ANKPU APXCP BNPGV CITATION SSH |
ID | FETCH-LOGICAL-a329t-94559e93488c917b08754aa51e8576d4e9a6da7dfc07e8c3d92ad50cc37c816f3 |
IEDL.DBID | .~1 |
ISSN | 0375-6742 |
IngestDate | Thu Apr 24 23:03:03 EDT 2025 Tue Jul 01 03:19:42 EDT 2025 Tue Jun 18 08:50:44 EDT 2024 |
IsPeerReviewed | true |
IsScholarly | true |
Keywords | Coal mining-motivated effect Hydrochemical evolution Groundwater quality Entropy-weighted water quality index (EWQI) Self-organizing maps (SOM) |
Language | English |
LinkModel | DirectLink |
MergedId | FETCHMERGED-LOGICAL-a329t-94559e93488c917b08754aa51e8576d4e9a6da7dfc07e8c3d92ad50cc37c816f3 |
ParticipantIDs | crossref_citationtrail_10_1016_j_gexplo_2024_107516 crossref_primary_10_1016_j_gexplo_2024_107516 elsevier_sciencedirect_doi_10_1016_j_gexplo_2024_107516 |
ProviderPackageCode | CITATION AAYXX |
PublicationCentury | 2000 |
PublicationDate | August 2024 2024-08-00 |
PublicationDateYYYYMMDD | 2024-08-01 |
PublicationDate_xml | – month: 08 year: 2024 text: August 2024 |
PublicationDecade | 2020 |
PublicationTitle | Journal of geochemical exploration |
PublicationYear | 2024 |
Publisher | Elsevier B.V |
Publisher_xml | – name: Elsevier B.V |
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 |
SSID | ssj0001746 |
Score | 2.4153142 |
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... |
SourceID | crossref elsevier |
SourceType | Enrichment Source Index Database Publisher |
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 |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1LS8NAEF5KvehBfGJ9sQeva_PYZJNjKZao2IsWewuT3U2t2KSUinjxB_irnc0mWkEUPGbIhLCz2ZmPfDMfIWdRFOc68hTLJEjGAwgZpgVgmSc0OJHwhWManG-GYTLiV-Ng3CL9phfG0Crrs9-e6dVpXVu69Wp259Np99aot4aI7AwLEjGVafjlXJhdfv72RfPAitv-rxSGZM-9pn2u4nhNtCG6IUr0OJpEYFTPf0pPKylnsEU261qR9uzrbJOWLnbIxsoEwV3ynryqRTnRRveqavync8v8p1AoKks0zCoJCDazQmZaUUvhoGVBsfijD-YBspF9o1jDVmbT7VGoF3RYUDvtmU6L-lkUsNKkZU7v7ZgFWolw75HR4OKun7BaXoGB78VLFnNEEzr28ROWCNoyM9ueAwSujhCEKK5jCBUIlUtH6Ej6KvZABY6UvpCRG-b-PmkXZaEPCJWOC1wIxX3AJYYAHCEgc8H1pEQIojrEb1Y1lfXscSOB8ZQ2JLPH1MYiNbFIbSw6hH16ze3sjT_uF03A0m97KMX08Kvn4b89j8i6ubKUwGPSXi6e9QmWKcvstNqHp2Std3mdDD8AGjbqiA |
linkProvider | Elsevier |
linkToHtml | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1LS8QwEB50PagH8Ylvc_Aato-0aY-yuNTXXlT0VqZJVlfcdllWxL_gr3bStKIgCl6nnVAyyTzoN_MBHCdJOjRJoHmhUHERYcwpLCAvAmnQS2QoPdvgfDWIs1txfh_dz0Gv7YWxsMrG9zufXnvrRtJtdrM7GY2615a9NabKzqIgqaZK5mHBTqeKOrBwcnaRDT4dMiXd7peltDh7EbQddDXM68FYrBsVioEgkYws8flPEepL1OmvwkqTLrIT90VrMGfKdVj-MkRwA96zNz2tHoylvqp7_9nEgf8ZlpqpigTjmgWCjx2XmdHMoThYVTLK_9ijXUC1zG-M0thabBs-Sv1KClPmBj6zUdmsxZCSTVYN2Z2btMBqHu5NuO2f3vQy3jAscAyDdMZTQQWFSUO6xYrqtsKOtxeIkW8SqkO0MCnGGqUeKk-aRIU6DVBHnlKhVIkfD8Mt6JRVabaBKc9HIaUWIdIWY4SelFj46AdKURWidyBsdzVXzfhxy4LxnLc4s6fc2SK3tsidLXaAf2pN3PiNP96XrcHyb8copwjxq-buvzWPYDG7ubrML88GF3uwZJ84hOA-dGbTF3NAWcusOGxO5QchJu05 |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Hydrogeochemical+process+and+coal+mining-motivated+effect+on+the+hydrochemistry+for+the+groundwater+system+in+mining+area+of+Western+China&rft.jtitle=Journal+of+geochemical+exploration&rft.au=Zeng%2C+Yifan&rft.au=Wu%2C+Qiang&rft.au=Mei%2C+Aoshuang&rft.au=Wang%2C+Lu&rft.date=2024-08-01&rft.issn=0375-6742&rft.volume=263&rft.spage=107516&rft_id=info:doi/10.1016%2Fj.gexplo.2024.107516&rft.externalDBID=n%2Fa&rft.externalDocID=10_1016_j_gexplo_2024_107516 |
thumbnail_l | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=0375-6742&client=summon |
thumbnail_m | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=0375-6742&client=summon |
thumbnail_s | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=0375-6742&client=summon |