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首页> 外文期刊>Chemical Engineering Science >Multicomponent counter-current gas diffusion in porous solids: the Graham's-law diffusion cell
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Multicomponent counter-current gas diffusion in porous solids: the Graham's-law diffusion cell

机译:多孔固体中多组分逆流气体扩散:格雷厄姆定律扩散池

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摘要

A version of the Wicke-Kallenbach diffusion cell that utilizes the validity of Graham's law was used for counter-current diffusion measurements. Diffusion in binary and ternary inert gas systems (consisting of hydrogen, helium, nitrogen, argon) was followed via determination of net volumetric diffusion fluxes. In agreement with Graham's law these fluxes are significantly influenced by the composition of gases in diffusion cell compartments. Fitting of experimental data to the Mean Transport-Pore Model provides model parameters (transport parameters) that are independent of the gas kind and composition. Ternary diffusion extends the volume of experimental information and the confidence region of transport parameters shrinks significantly. The internal consistency of diffusion data verifies the validity of the multicomponent version of Graham's law.
机译:利用格雷厄姆定律的有效性的Wicke-Kallenbach扩散池用于逆流扩散测量。通过确定净体积扩散通量,跟踪二元和三元惰性气体系统(由氢,氦,氮,氩组成)中的扩散。与格雷厄姆定律一致,这些通量受到扩散池隔室中气体成分的显着影响。将实验数据拟合到平均传输孔模型可以提供独立于气体种类和成分的模型参数(传输参数)。三元扩散扩展了实验信息的量,传输参数的置信区明显缩小。扩散数据的内部一致性验证了格雷厄姆定律的多分量版本的有效性。

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