4.5 Article

Using stable isotopes (δD, δ18O, δ34S and 87Sr/86Sr) to identify sources of water in abandoned mines in the Fengfeng coal mining district, northern China

Journal

HYDROGEOLOGY JOURNAL
Volume 26, Issue 5, Pages 1443-1453

Publisher

SPRINGER
DOI: 10.1007/s10040-018-1803-5

Keywords

Stable isotopes, mining; China; Water sources; Hydrochemistry

Funding

  1. National Natural Science Foundation of China [41272269, 41672243]
  2. Fok Ying Tung Education Foundation [161014]

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With depleted coal resources or deteriorating mining geological conditions, some coal mines have been abandoned in the Fengfeng mining district, China. Water that accumulates in an abandoned underground mine (goaf water) may be a hazard to neighboring mines and impact the groundwater environment. Groundwater samples at three abandoned mines (Yi, Er and Quantou mines) in the Fengfeng mining district and the underlying Ordovician limestone aquifer were collected to characterize their chemical and isotopic compositions and identify the sources of the mine water. The water was HCO3 center dot SO4-Ca center dot Mg type in Er mine and the auxiliary shaft of Yi mine, and HCO3 center dot SO4-Na type in the main shaft of Quantou mine. The isotopic compositions (delta D and delta O-18) of water in the three abandoned mines were close to that of Ordovician limestone groundwater. Faults in the abandoned mines were developmental, possibly facilitating inflows of groundwater from the underlying Ordovician limestone aquifers into the coal mines. Although the Sr2+ concentrations differed considerably, the ratios of Sr2+/Ca2+ and Sr-87/Sr-86 and the S-34 content of SO4 (2-) were similar for all three mine waters and Ordovician limestone groundwater, indicating that a close hydraulic connection may exist. Geochemical and isotopic indicators suggest that (1) the mine waters may originate mainly from the Ordovician limestone groundwater inflows, and (2) the upward hydraulic gradient in the limestone aquifer may prevent its contamination by the overlying abandoned mine water. The results of this study could be useful for water resources management in this area and other similar mining areas.

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