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Progress in Modeling of Silica-Based Membranes and Membrane Reactors for Hydrogen Production and Purification

机译:基于二氧化硅基膜和膜反应器的建模研究进展及炼油纯化

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摘要

Hydrogen is seen as the new energy carrier for sustainable energy systems of the future. Meanwhile, proton exchange membrane fuel cell (PEMFC) stacks are considered the most promising alternative to the internal combustion engines for a number of transportation applications. Nevertheless, PEMFCs need high-grade hydrogen, which is difficultly stored and transported. To solve these issues, generating hydrogen using membrane reactor (MR) systems has gained great attention. In recent years, the role of silica membranes and MRs for hydrogen production and separation attracted particular interest, and a consistent literature is addressed in this field. Although most of the scientific publications focus on silica MRs from an experimental point of view, this review describes the progress done in the last two decades in terms of the theoretical approach to simulate silica MR performances in the field of hydrogen generation. Furthermore, future trends and current challenges about silica membrane and MR applications are also discussed.
机译:氢被视为未来可持续能源系统的新能源载体。同时,质子交换膜燃料电池(PEMFC)堆叠被认为是用于许多运输应用的内燃机最有前途的替代品。然而,PEMFC需要高级氢,难以储存和运输。为了解决这些问题,使用膜反应器(MR)系统产生氢气产生很大的关注。近年来,二氧化硅膜的作用和氢气生产和分离的MR吸引了特别的兴趣,并且在该领域寻址了一致的文献。虽然大多数科学出版物的重点是来自实验性观点的二氧化硅夫人,但本综述描述了在过去二十年中的研究进展,就理论方法模拟了氢气领域的石英MR表演的理论方法。此外,还讨论了关于二氧化硅膜和MR应用的未来趋势和当前挑战。

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