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A membrane reactor to produce hydrogen by decomposing hydrogen sulfide with a silica membrane prepared by CVD method

机译:通过用CVD法制备的二氧化硅膜分解硫化氢来生产氢的膜反应器

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A membrane reactor to decompose hydrogen sulfide into hydrogen with a hydrogen-selective silica membrane has been successfully developed. The silica membrane layer was deposited by the counter-diffusion chemical vapor deposition (CVD) method at 873 K with tetramethoxysilane and oxygen onto the α -alumina substrate which had been coated with γ -alumina. It showed excellent hydrogen permeance of the order of 10-7 mol m-2 s-1 Pa-1 and high hydrogen / nitrogen selectivity of around 103 at 873 K. It was indicated that this membrane could be used at high temperature condition of 1073 K or steam condition, although the hydrogen permeance slightly decreased, and this slight deterioration of the performance was not probably attributed to the structural changes of the silica layer. The membrane reactor which was constructed with our silica membrane and a commercial catalyst was operated by feeding 1 % of hydrogen sulfide gas, and successfully decomposed hydrogen sulfide gas into hydrogen with higher conversion at 873 K. The conversion gained in this experiment greatly exceeded the equilibrium conversion (7.8%) and reached 69 % at 7 s of residence time. Additionally the conversion was well-predicted using a simple calculation study. This was because the silica membrane kept its excellent hydrogen-selective performance without deterioration of the membrane under high temperature and corrosion by hydrogen sulfide.
机译:已经成功开发了利用氢选择性二氧化硅膜将硫化氢分解为氢的膜反应器。通过反扩散化学气相沉积(CVD)方法在873 K下用四甲氧基硅烷和氧将二氧化硅膜层沉积到已涂覆有γ-氧化铝的α-氧化铝基底上。它在873 K下显示出10-7 mol m-2 s-1 Pa-1的优异氢渗透性和高的氢/氮选择性,约为103。表明该膜可在1073的高温条件下使用在K或蒸汽条件下,尽管氢的渗透率略有下降,但性能的这种轻微降低可能不归因于二氧化硅层的结构变化。由我们的二氧化硅膜和市售催化剂构成的膜反应器通过加入1%的硫化氢气体进行操作,并成功地将硫化氢气体分解为873 K更高转化率的氢气。在该实验中获得的转化率大大超过了平衡转化率(7.8%),并在停留时间7 s达到69%。此外,使用简单的计算研究可以很好地预测转化率。这是因为二氧化硅膜保持其优异的氢选择性性能,而在高温下膜不会劣化并且不会被硫化氢腐蚀。

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