宗伟琴,赵宝峰. 鸳鸯湖矿区地下水化学特征与成因分析[J]. 煤矿安全, 2023, 54(8): 161-167.
    引用本文: 宗伟琴,赵宝峰. 鸳鸯湖矿区地下水化学特征与成因分析[J]. 煤矿安全, 2023, 54(8): 161-167.
    ZONG Weiqin. Groundwater chemical characteristics and forming reasons of Yuanyanghu Mining Area[J]. Safety in Coal Mines, 2023, 54(8): 161-167.
    Citation: ZONG Weiqin. Groundwater chemical characteristics and forming reasons of Yuanyanghu Mining Area[J]. Safety in Coal Mines, 2023, 54(8): 161-167.

    鸳鸯湖矿区地下水化学特征与成因分析

    Groundwater chemical characteristics and forming reasons of Yuanyanghu Mining Area

    • 摘要: 为了查明鸳鸯湖矿区地下水化学特征与成因,给矿区内矿井水害防治工作提供依据,对矿区内第四系、白垩系、直罗组、2~6煤间、6~18煤间、18煤以下含水层的水文地球化学进行分析。结果表明:地下水阳离子以K++Na+为主,阴离子以SO42-和Cl-为主,并且这4种离子也是TDS的主要来源;第四系含水层地下水主要受到岩石矿物的风化溶滤作用的控制,其他含水层地下水均受到不同程度蒸发浓缩的作用;由地下水氯碱指数可知各含水层均存在不同程度的阳离子吸附作用,由深部18煤以下含水层至浅部第四系含水层氯碱指数逐渐减小,阳离子吸附作用不断加强,Ca2+和Mg2+含量不断下降,各含水层地下水均受到不同程度脱硫酸作用的影响;通过离子比值分析,各含水层地下水水化学成分主要来自岩盐的溶解,其中Ca2+和Mg2+来自硅酸盐和蒸发岩的溶解;从同位素分析可以发现第四系水的补给来源主要为大气降水,蒸发导致直罗组和2~6煤间延安组地下水中富集重同位素,各含水层之间存在不同程度的相互转化,并且接受其他水源的补给。

       

      Abstract: In order to find out the chemical characteristics and causes of groundwater in Yuanyanghu Mining Area, and to provide basis for the prevention and control of water disaster in the mining area, the aquifer hydro-chemistry of Quaternary, Cretaceous, Zhiluo Formation, 2#-6# coal seams, 6#-18# coal seams and below 18# coal seam in the mining area was analyzed. The results show that K++Na+ is the main cation, and SO42- and Cl- are the main anions, and these four ions are the main sources of TDS. Groundwater in Quaternary aquifer is mainly controlled by weathering and leaching of rocks and minerals, while groundwater samples of other aquifers are basically affected by evaporation and concertration to varying degrees. According to the chlor-alkali index of groundwater, cationic adsorption exists in different degrees in all aquifers. The chlor-alkali index decreases gradually from the deep aquifer below 18# coal seam to the shallow Quaternary aquifer, and the alternating cation adsorption is strengthened, and the contents of Ca2+ and Mg2+ decrease continuously. The groundwater of each aquifer is affected by desulphurization acid in different degrees. According to ion ratio analysis, the hydrochemical compostion of each aquifer mainly comes from the dissolution of rock salt, among which Ca2+ and Mg2+ come from the dissolution of silicate and evaporite. From isotope analysis, it can be found that Quaternary groundwater is mainly supplied by precititation, and evaporation leads to enrichment of heavy isotopes in groundwater of Zhiluo Fromation and Yan’an Fromation between 2#-6# coal seams, and there are different degrees of mutual transformation among aquifers, and they are supplied by other aquifers.

       

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