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Brine-mineral reactions in evaporite basins: Implications for the composition of ancient oceans

机译:蒸发盆地中的盐水-矿物反应:对古代海洋组成的启示

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The chemical evolution of several European Mesozoic and Tertiary evaporite basins was reconstructed by using mineral associations, primary fluid-inclusion analyses, and numerical simulations of evaporation scenarios. The solute proportion recorded in the fluid inclusions can be explained by the evaporation of present-day seawater as a major recharge. The sulfate depletion in the brines is responsible for the type of potash deposit formed, potassium-magnessium sulfates or sylvite. This sulfate depletion can be due either to dolomitization or to the addition of a CaCl_2-rich solution to the basin. The sulfate depletion occurred in varying intensity in basins of the same age, as well as throughout the evolution of the same basin. Therefore, changes in potash mineralogy and sulfate depletion in fluid inclusions are not conclusive arguments in favor of secular variations in the composition of the ocean, as recently proposed by several authors.
机译:通过使用矿物组合,一次流体包裹体分析和蒸发情景的数值模拟,重建了几个欧洲中生代和第三纪蒸发岩盆地的化学演化。流体包裹体中记录的溶质比例可以用当今海水的蒸发作为主要补给来解释。盐水中硫酸盐的消耗与所形成的钾盐沉积物类型有关,即硫酸钾-硫酸镁或钾盐。硫酸盐的耗尽可能是由于白云石化或向盆地中添加了富含CaCl_2的溶液。在相同年龄的盆地以及整个盆地的演化过程中,硫酸盐的消耗强度不同。因此,正如几位作者最近提出的那样,钾盐矿物学的变化和流体包裹体中硫酸盐的消耗并不是决定海洋成分长期变化的结论性论据。

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