4.6 Article

Multiple factors control groundwater chemistry and quality of multi-layer groundwater system in Northwest China coalfield-Using self-organizing maps (SOM)

期刊

JOURNAL OF GEOCHEMICAL EXPLORATION
卷 227, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.gexplo.2021.106795

关键词

Groundwater chemistry and quality; Self-organizing map (SOM); Multi-layer aquifer system; Coalfield

资金

  1. National Key Research and Development Program of China [2018YFC0406401-1]
  2. National Natural Science Foundation of China [41972251, U1602266]

向作者/读者索取更多资源

The study used self-organizing map calculations and traditional multivariate statistical methods to investigate the groundwater chemistry and quality in the Yuheng Coalfield. The findings suggest that water-rock interactions play a significant role in controlling the groundwater chemistry and quality.
Yuheng Coalfield is a typical Jurassic coal mine with a multi-layer groundwater system but it is exposed to an arid and semi-arid climate with scarce water resources. Thus, the ecological environment is extremely vulnerable, and the groundwater chemistry and quality may be influenced by multiple factors. In this study, the selforganizing map calculations in combination with traditional multivariate statistical methods were used to investigate groundwater chemistry and quality. Thirty-nine groundwater samples collected from different aquifers were divided into four clusters. Cluster I (shallow water consisting of surface water, Quaternary and Luohe group groundwater) was dominated by Ca-HCO3 and Ca-Na +K-HCO3 types, Cluster II (mainly Zhiluo group groundwater) consisted of Ca-Na + K-SO4 and Na +K-Ca-SO4 types, Cluster III (deep water consisting of Zhiluo and Yan'an group groundwater and mine water) was of the Na +K-Ca-SO4 type, while Cluster IV (mine water) was the Na + K-SO4 type. The dominant water-rock interactions controlling groundwater chemistry and quality were cation exchange and dissolution/precipitation of carbonate, gypsum and halite. Based on the pumping test results, the good hydrological properties and hydraulic connection between aquifers also affected groundwater chemistry and quality. The findings of this study will help inform the sustainable development and protection of groundwater resources in the study area and other coalfields.

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