Composition-dependent sign inversion of the Soret coefficient of SiO2 in binary borosilicate melts.

M. Shimizu, Kenzo Sato, Kento Nakashima, T. Kiyosawa, J. Matsuoka, Y. Shimotsuma, K. Miura
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引用次数: 1

Abstract

Using a laser-induced local-heating experiment combined with temperature analysis, we observed the composition-dependent sign inversion of the Soret coefficient of SiO2 in binary silicate melts, which was successfully explained by a modified Kempers model used for describing the Soret effect in oxide melts. In particular, the diffusion of SiO2 to the cold side under a temperature gradient, which is an anomaly in silicate melts, was observed in the SiO2-poor compositions. The theoretical model indicates that the thermodynamic mixing properties of oxides, partial molar enthalpy of mixing, and partial molar volume are the dominant factors for determining the migration direction of the SiO2 component under a temperature gradient.
二元硼硅酸盐熔体中SiO2 Soret系数的成分依赖符号反演。
利用激光诱导局部加热实验结合温度分析,我们观察到二元硅酸盐熔体中SiO2 Soret系数的成分依赖符号反演,并成功地用用于描述氧化物熔体中Soret效应的改进Kempers模型解释了这一现象。特别是,在低SiO2组分中,SiO2在温度梯度下向冷侧扩散,这是硅酸盐熔体中的异常现象。理论模型表明,在温度梯度下,氧化物的热力学混合性质、偏摩尔混合焓和偏摩尔体积是决定SiO2组分迁移方向的主要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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