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Review of Supported Pd-Based Membranes Preparation by Electroless Plating for Ultra-Pure Hydrogen Production

机译:化学镀超纯氢生产负载型钯基膜的研究进展

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摘要

In the last years, hydrogen has been considered as a promising energy vector for the oncoming modification of the current energy sector, mainly based on fossil fuels. Hydrogen can be produced from water with no significant pollutant emissions but in the nearest future its production from different hydrocarbon raw materials by thermochemical processes seems to be more feasible. In any case, a mixture of gaseous compounds containing hydrogen is produced, so a further purification step is needed to purify the hydrogen up to required levels accordingly to the final application, i.e., PEM fuel cells. In this mean, membrane technology is one of the available separation options, providing an efficient solution at reasonable cost. Particularly, dense palladium-based membranes have been proposed as an ideal chance in hydrogen purification due to the nearly complete hydrogen selectivity (ideally 100%), high thermal stability and mechanical resistance. Moreover, these membranes can be used in a membrane reactor, offering the possibility to combine both the chemical reaction for hydrogen production and the purification step in a unique device. There are many papers in the literature regarding the preparation of Pd-based membranes, trying to improve the properties of these materials in terms of permeability, thermal and mechanical resistance, poisoning and cost-efficiency. In this review, the most relevant advances in the preparation of supported Pd-based membranes for hydrogen production in recent years are presented. The work is mainly focused in the incorporation of the hydrogen selective layer (palladium or palladium-based alloy) by the electroless plating, since it is one of the most promising alternatives for a real industrial application of these membranes. The information is organized in different sections including: (i) a general introduction; (ii) raw commercial and modified membrane supports; (iii) metal deposition insights by electroless-plating; (iv) trends in preparation of Pd-based alloys, and, finally; (v) some essential concluding remarks in addition to futures perspectives.
机译:在过去的几年中,氢一直被认为是对当前能源领域(主要基于化石燃料)进行即将到来的改造的有前途的能源载体。可以从水中产生氢气,而没有明显的污染物排放,但是在不久的将来,通过热化学方法从不同的烃原料生产氢气似乎更为可行。在任何情况下,都会产生含氢的气态化合物的混合物,因此需要进一步的纯化步骤以将氢纯化至最终应用所需的水平,即最终应用到PEM燃料电池。因此,膜技术是可用的分离方法之一,以合理的成本提供了有效的解决方案。特别地,由于几乎完全的氢选择性(理想地为100%),高的热稳定性和机械耐受性,致密的基于钯的膜已被提议作为氢纯化的理想机会。此外,这些膜可用于膜反应器中,从而可以将制氢的化学反应与纯化步骤结合在一个独特的设备中。文献中有许多关于Pd基膜的制备的论文,试图从渗透性,热和机械阻力,中毒和成本效率方面改善这些材料的性能。在这篇综述中,介绍了近年来制备用于制氢的负载型钯基膜的最相关进展。这项工作主要集中在通过化学镀结合氢选择层(钯或钯基合金)上,因为它是这些膜实际工业应用的最有希望的替代方法之一。这些信息分为不同的部分,其中包括:(i)概述; (ii)原始的商业化和改性的膜载体; (iii)通过化学镀的金属沉积见解; (iv)钯基合金的制备趋势,最后; (v)除了期货方面的观点外,还有一些重要的总结性发言。

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