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Hydrogen Transport through a Membrane Module Based on a Palladium Foil

机译:氢通过基于钯箔的膜组件的输运

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Experimental data are presented and a mathematical model is suggested for hydrogen transport through a palladium membrane module. The basic working element of the module is a piece of palladium foil secured between two pieces of fine-mesh metallic gauze to prevent the rupture of the foil because of the difference between the outer pressures applied. It is demonstrated that, under the experimental conditions considered, the effect of the supporting metallic gauzes can be neglected. An expression is reported for the hydrogen flux through the foil as a function of the foil thickness and applied pressures. In the particular case of fairly high pressures, the hydrogen flux obeys the well-known Sieverts law, being limited by proton diffusion in the palladium lattice. At low pressures, the hydrogen flux is limited by adsorption-desorption processes on the foil surface. The preexponential factor in the Sieverts law for pure palladium membranes has been refined on the basis of experimental data for the membrane module.
机译:提出了实验数据,并提出了通过钯膜组件进行氢传输的数学模型。模块的基本工作元件是一块固定在两片细孔金属网之间的钯箔,以防止由于施加的外部压力之间的差异而导致箔破裂。结果表明,在所考虑的实验条件下,支撑金属丝网的作用可以忽略。据报道通过箔的氢通量的表达式是箔厚度和施加压力的函数。在相当高的压力下,氢通量遵守众所周知的Sieverts定律,受质子在钯晶格中扩散的限制。在低压下,氢流量受到箔表面吸附-解吸过程的限制。在纯硅膜的Sieverts律中,指数因子已经根据膜组件的实验数据进行了改进。

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    Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow oblast, 142432 Russia;

    Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow oblast, 142432 Russia;

    Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow oblast, 142432 Russia;

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