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Systematic Study of Mass Transfer in a Loschmidt Cell for Binary Gas Mixtures

机译:Loschmidt池中二元混合气体传质的系统研究

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The present paper reports on efforts to explain discrepancies which were found in concentration-dependent binary diffusion coefficient data determined with a Loschmidt cell combined with holographic interferometry using pure gases prior to the diffusion process. While the binary diffusion coefficient data which are determined in the upper half-cell decrease with the mole fraction of the heavier component, those determined in the lower half-cell increase. The reason for such discrepancies, which can also be found in other literature data obtained with interferometric gas analysis methods, is not clear. Therefore, systematic experimental and theoretical investigations on the Loschmidt experiment and the applied evaluation procedure were performed. Furthermore, the influence of different driving forces on the particle flux was examined. Although the reason for the discrepancies between the measurement data determined in each half-cell could not been clarified, various reasons that have been debated in the literature could be excluded. Moreover, experiments using a gas mixture in one of the half-cells suggested that the evaluation procedure is most likely to be the reason for the observed discrepancies.
机译:本文报道了努力解释差异的努力,这些差异是在扩散过程之前,用Loschmidt池结合全息干涉法使用纯净气体通过Loschmidt电池测定的浓度依赖性二元扩散系数数据中发现的。虽然在上半个单元中确定的二元扩散系数数据随较重组分的摩尔分数而降低,但在下半个单元中确定的二进制扩散系数数据却增加。此类差异的原因尚不清楚,这也可以在使用干涉式气体分析方法获得的其他文献数据中找到。因此,对Loschmidt实验及其应用的评估程序进行了系统的实验和理论研究。此外,研究了不同驱动力对颗粒通量的影响。尽管尚不清楚每个半单元中确定的测量数据之间存在差异的原因,但可以排除文献中已讨论过的各种原因。此外,在其中一个半电池中使用混合气体的实验表明,评估程序最有可能是观察到差异的原因。

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