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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Saline groundwaters in the hercynian granites (Chardon mine, France): geochemical evidence for the salinity origin
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Saline groundwaters in the hercynian granites (Chardon mine, France): geochemical evidence for the salinity origin

机译:海西花岗岩(法国夏敦矿)中的盐渍地下水:盐度成因的地球化学证据

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摘要

In this study, the chemical evolution of high Cl- Chardon mine groundwaters is modelled as a mixing between an oxidising recharge and an old marine component on which the water-rock interaction is superimposed. Chemical and isotopic similarities with saline Carnmenellis mine groundwaters are emphasised and a general comparison with other brines is discussed. The cation content of deep granitic groundwaters is indicative of the water-rock interaction. In the case of Chardon and Carnmenellis groundwaters, the high Na/Cl ratio can still be related to the contribution of a brine of sedimentary origin to the water salinity. The differences in the hydrochemistry related to their geological context only appears at the trace metals level. On the contrary, brines in plutonic rocks which exhibit a low Na/Cl ratio represent groundwaters having a residence time in the host rock, long enough to equilibrate with secondary aluminosilicates. In that case, the brine origin is difficult to assess if only based on the water cation content.
机译:在这项研究中,高Cl-Chardon矿山地下水的化学演化被建模为氧化补给物和叠加了水-岩相互作用的老海洋成分之间的混合。强调了与食肉Carnmenellis矿山地下水的化学和同位素相似性,并讨论了与其他盐水的一般比较。花岗岩深层地下水的阳离子含量指示了水-岩相互作用。就Chardon和Carnmenellis地下水而言,高的Na / Cl比仍可能与沉积起源的盐水对水盐度的贡献有关。与它们的地质环境有关的水化学差异仅出现在痕量金属水平。相反,深成岩中Na / Cl比率低的盐水代表在主体岩石中具有停留时间的地下水,其停留时间足以与次生铝硅酸盐平衡。在那种情况下,仅基于水阳离子含量很难评估盐水的来源。

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