许继影, 桂和荣, 葛春贵, 等. 2021. 淮北青东煤矿深层地热水的水文地球化学特征与水源识别[J]. 工程地质学报, 29(4): 1037-1047. doi: 10.13544/j.cnki.jeg.2021-0336.
    引用本文: 许继影, 桂和荣, 葛春贵, 等. 2021. 淮北青东煤矿深层地热水的水文地球化学特征与水源识别[J]. 工程地质学报, 29(4): 1037-1047. doi: 10.13544/j.cnki.jeg.2021-0336.
    Xu Jiying, Gui Herong, Ge Chungui, et al. 2021. Hydrogeochemical characteristics and source identification of deep geothermal water in Qingdong coal mine, Huaibei, Anhui province[J]. Journal of Engineering Geology, 29(4): 1037-1047. doi: 10.13544/j.cnki.jeg.2021-0336.
    Citation: Xu Jiying, Gui Herong, Ge Chungui, et al. 2021. Hydrogeochemical characteristics and source identification of deep geothermal water in Qingdong coal mine, Huaibei, Anhui province[J]. Journal of Engineering Geology, 29(4): 1037-1047. doi: 10.13544/j.cnki.jeg.2021-0336.

    淮北青东煤矿深层地热水的水文地球化学特征与水源识别

    HYDROGEOCHEMICAL CHARACTERISTICS AND SOURCE IDENTIFICATION OF DEEP GEOTHERMAL WATER IN QINGDONG COAL MINE, HUAIBEI, ANHUI PROVINCE

    • 摘要: 深层地热水是矿井地质灾害的警示因素,探究其水文地球化学特征及来源,对矿井水害和热害防治具有现实意义。本文以淮北煤田青东煤矿深层地热水为研究对象,采集同水平(-585 m)的13个地热水样和11个非地热水样,对比分析两类水体离子特征差异,探讨地热水水化学成分形成作用及控制因素,同时收集矿井各突水含水层水样共31个,基于Fisher突水识别模型对地热水水源展开识别,结合地下水循环及构造条件,分析地热水成因。结果表明,地热水的TDS、Ca2+、Cl-指标高于非地热水,水化学类型以SO4 ·Cl-Ca ·Mg为主,呈弱碱性;两类水水化学差异是不同地下水化学成分的综合反映,地热水的水化学成分主要受水岩作用和离子交替作用共同控制,其中水岩作用以硅酸盐溶解、含煤地层黄铁矿氧化、蒸发盐溶解最为显著,地热水的水岩作用和离子交替作用程度相比非地热水强;地热水由深部奥灰水补给,经断裂导水通道至太原组石灰岩含水层混合而成,且奥陶系石灰岩含水层水混合比例高。研究结果对矿井防治水工作提供了指导。

       

      Abstract: The abnormal geo-temperature in coal mine is a warning factor of geological disaster. Study on the hydrogeochemistry and source of geothermal water is an effective method of prevention on mine water and heat disaster. In this study,we collected 13 samples of geothermal water and 11 samples of common groundwater from draining hole at the same depth (-585m). Based on the hydrochemistry characteristics,the hydrochemical process and sources of geothermal water were analyzed. Compared with the common groundwater,geothermal water had higher content of TDS,Ca2+,Cl-. The hydrochemical facies of geothermal water were SO4 ·Cl-Ca ·Mg type in weak alkaline environment. The chemical composition of geothermal water was dominated by both ion-exchange interaction and dissolution of silicate and evaporates. The oxidation of pyrite in coal,the geothermal water possessed fine hydrodynamic condition and the more intense ion-exchange interactions are more active than those in common groundwater. The formation of geothermal water was supplied by deep Ordovician limestone water and mixed with Taiyuan limestone water through the fracture. The mixing proportion of Ordovician limestone water was higher. The outcomes of this paper can provide guidance for mine water prevention and control.

       

    /

    返回文章
    返回