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首页> 外文期刊>Journal of Membrane Science >Preparation and characterisation of palladium-loaded polypropylene porous hollow fibre membranes for hydrogenation of dissolved oxygen in water
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Preparation and characterisation of palladium-loaded polypropylene porous hollow fibre membranes for hydrogenation of dissolved oxygen in water

机译:用于水中溶解氧加氢的载钯聚丙烯多孔中空纤维膜的制备与表征

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摘要

Dissolved oxygen is one of the major components to be removed for the production of ultra-pure water. For the removal of oxygen to very low levels (less than 1 ppb for rinse water for the semiconductor industry), the catalytic reduction with hydrogen is an attractive method. The objective of this study was to integrate the palladium catalyst with the shell side of hydrophobic porous polypropylene membrane hollow fibre membranes to obtain a compact and efficient technique that preferably can be based on commercially available materials and modules. It was demonstrated that palladium could be deposited on a hydrophobic porous membrane hollow fibre, while maintaining its hydrophobic nature. Palladium loadings as low as 0.36% (w/w) were sufficient to catalyse the hydrogenation of dissolved oxygen while maintaining diffusion limited kinetics. Hence, a fast oxygen removal system is obtained that has the potential of maintaining removal rate, even at very low oxygen concentrations.
机译:溶解氧是生产超纯水时要除去的主要成分之一。为了将氧去除到非常低的水平(半导体行业的冲洗水小于1 ppb),用氢催化还原是一种有吸引力的方法。这项研究的目的是将钯催化剂与疏水性多孔聚丙烯膜中空纤维膜的壳侧结合在一起,以获得一种紧凑而有效的技术,该技术最好可以基于可商购的材料和组件。已经证明钯可以沉积在疏水性多孔膜中空纤维上,同时保持其疏水性。低至0.36%(w / w)的钯负载量足以催化溶解氧的氢化,同时保持扩散受限的动力学。因此,获得了即使在非常低的氧气浓度下也具有维持去除速率的潜力的快速除氧系统。

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