首页> 外文期刊>Journal of the Japan Petroleum Institute >Development of Metal-doped Silica Membranes for Increased Hydrothermal Stability and Their Applications to Membrane Reactors for Steam Reforming of Methane
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Development of Metal-doped Silica Membranes for Increased Hydrothermal Stability and Their Applications to Membrane Reactors for Steam Reforming of Methane

机译:提高水热稳定性的金属掺杂二氧化硅膜的开发及其在甲烷蒸汽重整膜反应器中的应用

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摘要

Hydrothermal stability is one of the most important technical challenges for hydrogen separation silica membranes. Metal doping into silica matrix was proposed, and it was found that Ni and Co were effective to improve the hydrothermal stability. Co-doped silica membranes showed a high permeance of 1.8 × 10~(-7)mol/(㎡ · s · Pa) and H2/N2 permeance ratio of 730 with hydrothermal stability (500 ℃, steam partial pressure 300 kPa), Using hydrothermally stable silica membranes, permeation properties of helium, hydrogen and water vapor were examined based on the activation energy of permeation. The activation energy of H2 permeation correlated well with the permeance ratio of He/H2. The permeance ratios of H2/H2O of silica membranes are always larger than unity, although the kinetic diameter of hydrogen (0.289 nm) is larger than that of water (0.265 nm). Silica membranes were applied to bimodal catalytic membranes, which consisted of microporous silica top layer for selective permeation of hydrogen and a bimodal catalytic support layer where catalysts such as Ni were impregnated inside a bimodal support consisting of mesopores (γ-alumina) and macropores (α-alumina). Increased performance for production of hydrogen was confirmed by catalytic membranes for steam reforming of methane.
机译:对于氢分离二氧化硅膜,水热稳定性是最重要的技术挑战之一。有人提出将金属掺杂到二氧化硅基体中,发现镍和钴对提高水热稳定性是有效的。共掺杂氧化硅膜的透水率为1.8×10〜(-7)mol /(㎡·s·Pa),H2 / N2的渗透率为730,具有水热稳定性(500℃,水蒸气分压300 kPa)。根据渗透活化能,研究了水热稳定的二氧化硅膜,氦,氢和水蒸气的渗透性能。 H2渗透的活化能与He / H2的渗透率密切相关。尽管氢(0.289 nm)的动力学直径大于水(0.265 nm)的动力学直径,但二氧化硅膜的H2 / H2O渗透率始终大于1。将二氧化硅膜应用于双峰催化膜,该膜由用于选择性渗透氢的微孔二氧化硅顶层和双峰催化载体层组成,其中催化剂(如Ni)浸渍在由中孔(γ-氧化铝)和大孔(α)组成的双峰载体内-氧化铝)。用于甲烷蒸汽重整的催化膜证实了氢气生产性能的提高。

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