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Preparation Characterization and Performance Evaluation of Polysulfone Hollow Fiber Membrane with PEBAX or PDMS Coating for Oxygen Enhancement Process

机译:PEBAX或PDMS增氧工艺用聚砜中空纤维膜的制备表征和性能评价

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摘要

Air pollution is a widely discussed topic amongst the academic and industrial spheres as it can bring adverse effects to human health and economic loss. As humans spend most of their time at the office and at home, good indoor air quality with enriched oxygen concentration is particularly important. In this study, polysulfone (PSF) hollow fiber membranes fabricated by dry-jet wet phase inversion method were coated by a layer of polydimethylsiloxane (PDMS) or poly(ether block amide) (PEBAX) at different concentrations and used to evaluate their performance in gas separation for oxygen enrichment. The surface-coated membranes were characterized using SEM and EDX to determine the coating layer thickness and surface chemical properties, respectively. Results from the gas permeation study revealed that the PSF membrane coated with PDMS offered higher permeance and selectivity compared to the membrane coated with PEBAX. The best performing PDMS-coated membrane demonstrated oxygen and nitrogen gas permeance of 18.31 and 4.01 GPU, respectively with oxygenitrogen selectivity of 4.56. Meanwhile, the PEBAX-coated membrane only showed 12.23 and 3.11 GPU for oxygen and nitrogen gas, respectively with a selectivity of 3.94. It can be concluded the PDMS coating is more promising for PSF hollow fiber membrane compared to the PEBAX coating for the oxygen enrichment process.
机译:空气污染是学术和工业领域中广泛讨论的话题,因为它可能给人类健康和经济损失带来不利影响。随着人类大部分时间都在办公室和家里度过,拥有丰富氧气浓度的良好室内空气质量尤为重要。在这项研究中,通过干喷湿相转化法制得的聚砜(PSF)中空纤维膜被一层不同浓度的聚二甲基硅氧烷(PDMS)或聚(醚嵌段酰胺)(PEBAX)覆盖,并用于评估其性能。气体分离以富氧。使用SEM和EDX对表面涂覆的膜进行表征,以分别确定涂层厚度和表面化学性质。气体渗透研究的结果表明,与PEBAX涂覆的膜相比,PDMS涂覆的PSF膜具有更高的渗透性和选择性。表现最佳的PDMS涂层膜的氧气和氮气渗透率分别为18.31和4.01 GPU,氧气/氮气选择性为4.56。同时,涂有PEBAX的膜仅对氧气和氮气显示12.23和3.11 GPU,选择性为3.94。可以得出结论,与用于氧气富集过程的PEBAX涂层相比,PDMS涂层对于PSF中空纤维膜更具前景。

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