首页> 外文期刊>Glass Physics and Chemistry: A Journal on the Structural, Physical, and Chemical Properties and Nature of Inorganic Glasses and Glass-Forming Melts >Influence of the Composition of a Molten Salt on the Field-Assisted Diffusion of Potassium Ions in the 20Na2O · 80SiO2 Glass
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Influence of the Composition of a Molten Salt on the Field-Assisted Diffusion of Potassium Ions in the 20Na2O · 80SiO2 Glass

机译:熔盐的组成对20Na2O·80SiO2玻璃中钾离子场助扩散的影响

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摘要

The kinetics of interaction between the sodium silicate glass 20Na2O · 80SiO2 and molten salts in a dc electric field is investigated using the electron-probe X-ray microanalysis and radioactive-tracer technique. The influence of the electric field strength, the temperature, the interaction time, and the composition of a molten salt on the concentration distribution of alkali cations in the 20Na2O · 80SiO2 glass in the course of field-assisted diffusion is elucidated. The effective electric mobilities of potassium ions are calculated, and the parameters of the temperature dependence of the electric mobility are determined. It is revealed that the application of an electric field does not affect the ion-exchange equilibrium in the system. The correlation factor for diffusion of impurity ions is determined for the first time. The obtained value of the correlation factor indicates that the processes of self-diffusion and heterodiffusion of alkali cations in binary silicate glasses occur through the same (relay-race) mechanism. It is established that the Nernst-Einstein equation, which relates the electric mobility to the diffusion coefficient and provides the basis for the description of the field-assisted diffusion, holds only for the processes bearing no relation to variations in the composition of the glass.
机译:利用电子探针X射线显微分析和放射性示踪技术,研究了直流电场中硅酸钠玻璃20Na2O·80SiO2与熔融盐相互作用的动力学。阐明了电场辅助扩散过程中电场强度,温度,相互作用时间和熔盐组成对20Na2O·80SiO2玻璃中碱金属阳离子浓度分布的影响。计算钾离子的有效电迁移率,并确定电迁移率的温度依赖性参数。揭示了电场的施加不影响系统中的离子交换平衡。首次确定了杂质离子扩散的相关因子。获得的相关因子值表明,二元硅酸盐玻璃中碱金属阳离子的自扩散和异扩散过程是通过相同的(继电器-竞争)机理发生的。可以确定的是,能斯特-爱因斯坦方程将电迁移率与扩散系数相关联,并为描述场辅助扩散提供了基础,该方程仅适用于与玻璃成分变化无关的过程。

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