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H_2/N_2 gaseous mixture separation in dense Pd/alpha-Al_2O_3 hollow fiber membranes: Experimental and simulation studies

机译:致密Pd / alpha-Al_2O_3中空纤维膜中H_2 / N_2气体混合物的分离:实验和模拟研究

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摘要

Thin Pd/alpha-Al_2O_3 hollow fiber (HF) membranes were prepared by an improved electroless plating technique.Pure gas permeation experiments showed that the membranes were defect free and had high hydrogen permeance.Feeding an equimolar mixture of H_2/N_2,the total diffusion flow rate of hydrogen through the composite membranes was measured in dependence of the total feed flow rate at the inlet of the shell/retentate chamber,of the temperature and of the total trans-membrane pressure difference.Furthermore,a mathematical model was derived to describe the hydrogen diffusion in pure and mixture gas experiments.The pure gas experiments were used to determine the membrane parameters.Applying the adapted model parameters,the fluxes of hydrogen occurring in the mixture gas experiments were simulated.The comparison between experimental and calculated data showed a very good agreement in a broad parameter range.
机译:采用改进的化学镀技术制备了Pd /α-Al_2O_3中空纤维膜,纯净的气体渗透实验表明该膜无缺陷,具有较高的氢渗透性。加入等摩尔的H_2 / N_2混合物,总扩散氢气通过复合膜的流速取决于在外壳/截留室入口处的总进料流速,温度和总跨膜压差。此外,推导了数学模型来描述在纯净气体和混合气体实验中氢扩散。使用纯净气体实验确定膜参数。应用适应的模型参数,模拟在混合气体实验中出现的氢通量。实验数据与计算数据的比较表明:在广泛的参数范围内具有很好的一致性。

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