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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >A quantitative and mechanistic model for the coupling between chemistry and clay hydration
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A quantitative and mechanistic model for the coupling between chemistry and clay hydration

机译:化学与粘土水合耦合的定量与机械模型

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摘要

It is proposed here to describe smectite water vapor desorption isotherms using an exchange formalism that quantitatively accounts for the different hydration states and thus different water contents. This approach makes it possible to reproduce both desorption isotherms and relative proportions of the different hydration states as determined by X-ray diffraction. The method is numerically robust and easy to implement in most reactive transport codes. The formalism is satisfactory from a phenomenological point of view and accounts for the influence of external parameters such as interlayer cation composition and solution cation composition and salinity on clay hydration. Furthermore, in contrast to most solid solution models, this approach focuses on the clay reactivity according to the charge and type of interlayer cation rather than on its solubility and therefore does not require the overall thermodynamic properties of the clay. In addition, such an explicit distinction of the hydration/cation exchange processes from the thermodynamic stability of smectite 2:1 layer allows the use of kinetics driving slow dissolution/precipitation rates if the number of exchange sites is related to the amount of clay minerals.
机译:这里提出了利用交换形式主义描述蒙刚岩水蒸气解吸等温,该形式正式定量占不同的水合态,从而不同的水含量。这种方法使得可以通过X射线衍射确定的不同水合态的解吸等温线和相对比例再现。该方法在大多数反应传输代码中是数值鲁棒且易于实现的。从现象学的观点来看,形式主义令人满意,占外层阳离子组合物和溶液阳离子组成和粘土水合盐度的影响。此外,与大多数固体解决方案模型相比,该方法根据层间阳离子的电荷和类型而不是其溶解度的粘土反应性侧重于粘土反应性,因此不需要粘土的总热力学性质。此外,如果交换位点的数量与粘土矿物数量有关的粘土矿物数量,则散发出水合/阳离子交换过程的显着区别来自蒙脱石2:1层的热力学稳定性,允许使用动力学驱动缓慢溶解/降水率。

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