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MEMBRANE SUPPORTS DESIGNED FOR PD MEMBRANES

机译:用于PD膜的膜支撑件

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Unique properties such as high permeance and a theoretically infinite selectivity to hydrogen gas exhibited by Palladium (Pd)-based membranes have caused thin Palladium films to emerge as an attractive method to separate and purify hydrogen from syngas. Pd-based membrane costs are a considerable economic hindrance to transforming this technology into a commonly applied gas separation technology, hence, the cost of these membranes needs to be reduced significantly. Cost reduction can be achieved by utilising composite membranes, composed of a thin dense layer of a Pd alloy deposited onto a porous support structure. While significant research has focused on Pd-based top layer optimisation, the physical properties of each sublayer have all but been ignored. In order to address challenges such as stability and durability of membranes, membrane production and operation costs more effectively, the current work aims to look at each layer as an integral part of the membrane system instead of unlinked individual layers.
机译:独特的性质如高渗透率和对钯(Pd)的膜呈现的氢气的理论上是无限的选择性导致薄钯薄膜作为分离和纯化来自合成气的氢气的有吸引力的方法。 PD的膜成本是将该技术转化为常用的气体分离技术的可观经济障碍,因此,需要显着降低这些膜的成本。通过使用由沉积在多孔支撑结构上的Pd合金的薄致密层组成的复合膜可以实现成本降低。虽然显着的研究专注于基于PD的顶层优化,但每个子层的物理性质都有所有但被忽略。为了解决膜的稳定性和耐久性等挑战,膜的产生和操作成本更有效地,目前的工作旨在将每个层视为膜系统的组成部分而不是未解释的单独层。

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