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Mechanism of groundwater inrush hazard caused by solution mining in a multilayered rock-salt-mining area: a case study in Tongbai, China

机译:多层岩盐矿区溶液采矿造成地下水涌入危害的机制 - 以中国桐柏为例

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The solution mining of salt mineral resources may contaminate groundwater and lead to water inrush out of the ground due to brine leakage. Through the example of a serious groundwater inrush hazard in a large salt-mining area in Tongbai County, China, this study mainly aims to analyse the source and channel of the inrushing water. The mining area has three different types of ore beds including trona (trisodium hydrogendicarbonate dihydrate, also?sodium sesquicarbonate?dihydrate, with the formula Na2CO3??×??NaHCO3??×??2H2O, it is a non-marine?evaporite mineral), glauber (sodium sulfate, it is the?inorganic compound?with the formula Na2SO4?as well as several related?hydrates) and gypsum (a soft?sulfate mineral?composed of?calcium sulfate?dihydrate, with?chemical formula?CaSO4??×??2H2O). Based on characterisation of the geological and hydrogeological conditions, the hydrochemical data of the groundwater at different points and depths were used to analyse the pollution source and the pollutant component from single or mixed brine by using physical–chemical reaction principle analysis and hydrogeochemical simulation method. Finally, a possible brine leakage connecting the channel to the ground was discussed from both the geological and artificial perspectives. The results reveal that the brine from the trona mine is the major pollution source; there is a NW–SE fissure zone controlled by the geological structure that provides the main channels through which brine can flow into the aquifer around the water inrush regions, with a large number of waste gypsum exploration boreholes channelling the polluted groundwater inrush out of the ground. This research can be a valuable reference for avoiding and assessing groundwater inrush hazards in similar rock-salt-mining areas, which is advantageous for both groundwater quality protection and public health.
机译:盐矿物资源的解决方案可能会污染地下水并导致由于盐水泄漏而导致地面的侵入。通过桐柏县大型盐区的严重地下水涌入危险的例子,本研究主要旨在分析浪涌水的源头和通道。矿区有三种不同类型的矿床,包括天鹅(三钠碳酸氢盐二水合物,也是碘碳酸氢钠?二水合物,用式Na 2 CO 3××2 -2O×2H2O,它是非海洋?蒸发矿物),Glauber(硫酸钠,它是α无机化合物?用式Na 2 SO 4?以及几种相关的Δ水合物)和石膏(硫酸盐矿物质)?由硫酸钙组成,具有?化学式?Caso4 ??×?? 2H2O)。基于地质和水文地质条件的表征,通过使用物理化学反应原理分析和水文地理模拟方法,使用不同点和深度在不同点和深度下的地下水的水化学数据分析了单或混合盐水的污染源和污染物组分。最后,从地质和人工角度讨论了将通道连接到地面的可能盐水泄漏。结果表明,来自RONO的盐水是主要的污染源;通过地质结构控制的NW-SE裂缝区,提供主干道,盐水可以流入水中涌入地区的含水层,大量废石膏勘探钻孔将污染的地下水涌出射门射出。该研究可以是避免和评估类似岩盐采矿区的地下水涌入的有价值的参考,这对于地下水质量保护和公共卫生有利。

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