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Surface modification of polysulfone hollow fiber membrane spun under different air-gap lengths for carbon dioxide absorption in membrane contactor system

机译:在不同气隙长度下纺制的聚砜中空纤维膜的表面改性,以吸收膜接触器系统中的二氧化碳

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摘要

Surface modified polysulfone (PSf) hollow fiber membranes (HFMs) using surface modifying macromolecules (SMM) were spun with air-gaps of 0-50cm. Morphological analysis of the prepared fibers were carried out using scanning electron microscopy (SEM) and atomic force microscopy (AFM). The wetting resistances of the membranes were determined by critical water entry pressure (CEPw) and contact angle (CA) measurements. The HMFs were further subjected to CO2 capture by membrane contactor (MC) where water was used as absorbent. The test results indicated that both CEPw and CA showed a maximum value at 15cm air-gap distance. The maximum He permeation was also achieved at 15cm air-gap. The CO2 flux of prepared membranes showed a maximum of 4.79×10-3mol/m2s at the absorbent flow rate of 300ml/min. It was deduced that both He permeation and CO2 absorption flux were governed by the HFM surface porosity. The long-term stability test revealed the reduction of 25% in CO2 flux during the first 55h of operation for the PSf membrane prepared at 15cm air-gap. This study indicated that the surface modified HFMs prepared using an appropriate air-gap could be a promising option to increase membrane performance in MC systems.
机译:使用表面改性大分子(SMM)的表面改性聚砜(PSf)中空纤维膜(HFM)纺制0-50cm的气隙。使用扫描电子显微镜(SEM)和原子力显微镜(AFM)对所制备的纤维进行形态分析。膜的抗湿性通过临界水进入压力(CEPw)和接触角(CA)测量来确定。 HMF通过膜接触器(MC)进一步进行CO2捕集,其中水用作吸收剂。测试结果表明,CEPw和CA在15cm气隙距离处均显示最大值。在15cm的气隙下也实现了最大的He渗透。所制备的膜的CO 2通量在300ml / min的吸收剂流速下显示出最大4.79×10-3mol / m 2 s。推论出氦气的渗透率和二氧化碳的吸收通量均受HFM表面孔隙率的控制。长期稳定性测试表明,在15厘米气隙下制备的PSf膜在运行的前55小时内,二氧化碳通量减少了25%。这项研究表明,使用适当的气隙制备的表面改性的HFM可能是提高MC系统膜性能的有前途的选择。

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