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Molecular dynamics simulations of the structural properties and electrical conductivities of CaO-MgO-Al2O3-SiO2 melts

机译:CaO-MgO-Al2O3-SiO2熔体的结构性质和电导率的分子动力学模拟

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The structural properties and electrical conductivities of nine CaO-MgO-Al2O3-SiO2 slags with compositions in the peralkaline region have been calculated using molecular dynamics simulations. The proportion of nonbridging oxygen (NBO) and bridging oxygen (BO) atoms were determined from simulation and shown to be in reasonable agreement with theoretical prediction. Bridging oxygen atoms were classified into Si-O-Si, Si-O-Al or Al-O-Al linkages and the results used to establish whether the Al avoidance principle is applicable. The number of bridging oxygens coordinated to tetrahedral [SiO4](4-) and [AlO4](5-) units, namely the Q(n) distribution, was determined. Although a good comparison to the theoretical average Q was found at low basicity, at higher basicity greater deviation was seen. Electrical conductivities, taking cross-correlations into account, were in excellent agreement with experimentally measured values, although Nernst-Einstein conductivities, estimated from self-diffusion coefficients alone, showed large deviations. Molecular dynamics simulations are therefore able to reliably predict conductivity, but values calculated indirectly, i.e. using the Nemst-Einstein relationship, should be used with care. At low basicity theoretical predictions of structural disorder, based on Zachariasen's Random Network Model, are in reasonable agreement with simulation, but this agreement worsens as the proportion of network modifying cations increases. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用分子动力学模拟计算了9种CaO-MgO-Al2O3-SiO2矿渣在高碱性区域的结构性质和电导率。通过模拟确定了非桥连氧原子(NBO)和桥连氧原子(BO)的比例,并与理论预测合理吻合。桥接氧原子分为Si-O-Si,Si-O-Al或Al-O-Al键,其结果用于确定避免铝的原则是否适用。确定与四面体[SiO4](4-)和[AlO4](5-)单元配位的桥连氧的数量,即Q(n)分布。尽管在低碱度下可以找到与理论平均值Q的良好比较,但是在较高碱度下可以看到更大的偏差。考虑到互相关性,电导率与实验测量值非常吻合,尽管仅根据自扩散系数估算的能斯特-爱因斯坦电导率显示出较大的偏差。因此,分子动力学模拟能够可靠地预测电导率,但应谨慎使用间接计算的值,即使用Nemst-Einstein关系计算的值。在低基础性的情况下,基于Zachariasen的随机网络模型的结构紊乱的理论预测与模拟是合理的一致,但是随着网络修饰阳离子比例的增加,这种一致性会恶化。 (C)2016 Elsevier B.V.保留所有权利。

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