储罐屏障衬里用构造硅酸盐玻璃的透氢性能

S. Reinsch, T. Welter, R. Müller, J. Deubener
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引用次数: 0

摘要

在210 ~ 310℃的温度范围内,采用压力加载和真空抽提的方法研究了Li2O×Al2O3×SiO2 (LAS)、Na2O×Al2O3×SiO2 (NAS)和MgO×Al2O3×SiO2 (MAS)体系的元铝(构造硅酸盐)玻璃粉中氢气的渗透。通过这种方法,可以确定溶解度S和扩散率D,而渗透率由产物SD给出。所有玻璃的S随温度的升高而降低,而D随温度的升高而升高。由于H2分子的扩散活化能大于溶解活化能,所以随着温度的升高,渗透率略有增加。当外推到标准条件(25°C)时,发现构造硅酸盐玻璃的渗透率仅为10-22-10-24 mol H2 (m s Pa)-1,比大多数聚合物低8-10个数量级。这些成分的薄玻璃衬里有望成为加压氢气储罐最有效的屏障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogen Permeability of Tectosilicate Glasses for Tank Barrier Liners
The permeation of hydrogen gas was studied in meta-aluminous (tectosilicate) glass powders of Li2O×Al2O3×SiO2 (LAS), Na2O×Al2O3×SiO2 (NAS) and MgO×Al2O3×SiO2 (MAS) systems by pressure loading and vacuum extraction in the temperatures range 210–310 °C. With this method, both the solubility S and the diffusivity D were determined, while the permeability was given by the product SD. For all glasses, S was found to decrease with temperature, while D increased. Since the activation energy of diffusion of H2 molecules exceeded that of dissolution, permeation increased slightly with temperature. When extrapolated to standard conditions (25 °C), the permeability of tectosilicate glasses was found to be only 10-22–10-24 mol H2 (m s Pa)-1, which is 8–10 magnitudes lower than most polymers. Thin glass liners of these compositions are expected to be the most effective barrier for tanks of pressurised hydrogen.
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