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The Recovery of Hydrogen from Binary Gas Mixtures Using a Membrane Module Based on a Palladium Foil Taking into Account the Deactivation of the Membrane

机译:考虑到膜的钝化,使用基于钯箔的膜组件从二元混合气中回收氢气

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The recovery of hydrogen from binary gas mixtures with active (deactivating the surface of the membrane) and passive impurities has been studied. Experiments have been carried out on a multifunctional membrane module, the operating area of which consists of gas chambers separated by a thin foil palladium membrane. A dimensionless coefficient of the deactivation of the surface of the membrane has been introduced. An analytical formula has been obtained for the hydrogen flux from binary mixtures at its preset pressures on the opposite sides of the membrane that takes into account adsorption-desorption, breaking to protons on the surface, the diffusion of the latter in the metal lattice, and the recombination of De(+). In the case when the condition are fulfilled, the De(2) flux can be calculated by the modifiable Sieverts equation. This equation and an assumption about the complete mixing of the mixtures in the chambers of the membrane module have made it possible to develop a theoretical model for the recovery of hydrogen from binary mixtures in the membrane module. An analytical dependence for the De(2) flux as a function of the fluxes of the mixtures at the inlet of the chambers, ratio of the pressures on the opposite sides of the membrane, initial composition of the hydrogen mixture, and the coefficient of deactivation has been found. Utilizing this dependence, a procedure for finding this coefficient using additional experiments has been proposed. As an example, the coefficients of deactivation for the products of steam reforming of methane (CO, CO2, CH4, and water vapor) have been calculated for a palladium membrane with a composition Pd-6%Ru. The theoretical model has been subjected to the experimental verification on De(2)-5%CO and De(2)-20%CO binary mixtures.
机译:已经研究了从具有活性(使膜表面失活)和惰性杂质的二元气体混合物中回收氢的方法。在多功能膜组件上进行了实验,该组件的工作区域由被薄箔钯膜隔开的气室组成。已经引入了膜表面失活的无量纲系数。已经获得了在膜的相对侧上在其预定压力下来自二元混合物的氢通量的解析公式,该公式考虑了吸附-解吸,表面质子断裂,质子在金属晶格中的扩散以及De(+)的重组。在满足条件的情况下,可以通过可修改的Sieverts方程计算De(2)通量。该方程和关于膜组件的腔室中混合物完全混合的假设使得有可能开发用于从膜组件中的二元混合物中回收氢的理论模型。 De(2)通量与腔室入口处混合物通量,膜相对侧压力的比率,氢混合物的初始组成以及失活系数的函数之间的分析依赖性已找到。利用这种依赖性,已经提出了使用附加实验来找到该系数的过程。例如,对于组成为Pd-6%Ru的钯膜,已经计算出甲烷蒸汽重整产物(CO,CO2,CH4和水蒸气)的失活系数。理论模型已经过De(2)-5%CO和De(2)-20%CO二元混合物的实验验证。

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