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A structural coarse-grained model for clays using simple iterative Boltzmann inversion

机译:使用简单迭代Boltzmann反演的粘土结构粗粒模型

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Cesium-137 is a major byproduct of nuclear energy generation and is environmentally threatening due to its long half-life and affinity for naturally occurring micaceous clays. Recent experimental observations of illite and phlogopite mica indicate that Cs+ is capable of exchanging with K+ bound in the anhydrous interlayers of layered silicates, forming sharp exchange fronts, leading to interstratification of Cs-and K-illite. We present here a coarse-grained (CG) model of the anhydrous illite interlayer developed using iterative Boltzmann inversion that qualitatively and quantitatively reproduces features of a previously proposed feedback mechanism of ion exchange. The CG model represents a 70-fold speedup over all-atom models of clay systems and predicts interlayer expansion for K-illite near ion exchange fronts. Contrary to the longstanding theory that ion exchange in a neighboring layer increases the binding of K in lattice counterion sites leading to interstratification, we find that the presence of neighboring exchanged layers leads to short-range structural relaxations that increase basal spacing and decrease cohesion of the neighboring K-illite layers. We also provide evidence that the formation of alternating Cs-and K-illite interlayers (i.e., ordered interstratification) is both thermodynamically and mechanically favorable compared to exchange in adjacent interlayers. Published by AIP Publishing.
机译:Cesium-137是核能产生的主要副产品,并且由于其长期半衰期和对天然发生的潮丘粘土的亲和力而导致的环境威胁。近期的illite和植物云母的实验观察表明,Cs +能够在层状硅酸盐的无水中间层中与K +交换,形成尖锐的交换前沿,导致Cs和k-illite的恰当化。我们在这里存在一种粗粒(CG)模型,其使用迭代Boltzmann反演开发的无水灯泡中间层,其定性和定量地再现离子交换的先前提出的反馈机制的特征。 CG模型代表粘土系统的全原子模型70倍的加速,并预测离子交换前沿附近K-Imlite的层间扩展。与长期理论相反,相邻层中的离子交换增加了晶格反驳位点中的k的结合,导致呈现性,相邻交换层的存在导致短距离结构松弛,从而增加基础间距和减少内聚力邻近的k-illite层。我们还提供了表现出交替的CS和K-Imlite夹层(即,订购的Interstratification)的形成与相邻中间层交换相比,在热力学和机械上有利。通过AIP发布发布。

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