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Effect of air-gap length on carbon dioxide stripping performance of a surface modified polysulfone hollow fiber membrane contactor

机译:气隙长度对表面改性聚砜中空纤维膜接触器二氧化碳汽提性能的影响

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摘要

Surface Modifying Macromolecule (SMM) blended PSf hollow fibers were spun at different air-gaps to evaluate CO2 stripping from aqueous DEA solution and water. The fabricated membranes were firstly subjected to different characterization methods such as contact angle and liquid entry pressure measurement to evaluate the membrane's hydrophobicity and wetting resistance, respectively. To determine pore size and effective porosity of the membranes, a pure helium permeation test was performed. Morphological study of the membranes was conducted by scanning electron microscopy (SEM) and atomic force microscopy (AFM). A CO2 stripping test was carried out to investigate the effects of operating variables such as liquid and gas velocity, temperature and DEA concentration on the CO2 stripping flux. It was found that the increase of liquid velocity resulted in enhanced CO2 stripping flux. On the other hand, the increase in gas velocity did not exert significant influence on the stripping flux. The increase in temperature and DEA concentration both enhanced the stripping flux. Lastly, it was concluded that the hollow fibers spun in this work at a 15 cm air-gap could achieve the best stripping flux among all the membranes fabricated so far for CO2 stripping.
机译:将表面改性大分子(SMM)混合的PSf中空纤维在不同的气隙中纺丝,以评估从DEA水溶液和水中的CO2剥离。首先,对制成的膜进行不同的表征方法,如接触角和液体进入压力测量,以分别评估膜的疏水性和抗湿性。为了确定膜的孔径和有效孔隙率,进行了纯氦气渗透测试。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)对膜进行形态学研究。进行了CO2汽提试验,以研究诸如液体和气体速度,温度和DEA浓度等操作变量对CO2汽提通量的影响。发现液体速度的增加导致CO 2汽提通量的增加。另一方面,气体速度的增加对汽提通量没有显着影响。温度的升高和DEA浓度均提高了剥离通量。最后,得出的结论是,在这项工作中以15厘米的气隙纺出的中空纤维可以在迄今为止为CO2汽提而制造的所有膜中获得最佳的汽提通量。

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