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Polyvinylidene fluoride and polyetherimide hollow fiber membranes for carbon dioxide stripping in gas-liquid membrane contactor

机译:聚偏氟乙烯和聚醚酰亚胺中空纤维膜用于气液膜接触器中的二氧化碳汽提

摘要

Porous polyvinylidene fluoride (PVDF) and polyetherimide (PET) hollow fiber membranes were developed for CO 2 stripping in membrane contactor system. The effects of various types of additives (lithium chloride, polyethylene glycol, udphosphoric acid, methanol and glycerol) and different concentrations of lithium chloride (LiC1) on the membrane structure and CO 2 stripping performance of PVDF membrane were investigated. Different polymer concentrations of PEI membranes were studied and their effects on membrane structure and CO 2 stripping performance udwere evaluated. Long term performance of PVDF and PEI membranes were compared and analyzed. The membranes were characterized in terms of gas permeation, contact angle, membrane porosity, liquid entry pressure and tensile strength. Atomic force microscopy (AFM) was used to examine the membrane surface roughness while the membrane morphology was investigated using scanning electron microscopy (SEM) and field emission scanning electron microscopy (FESEM). Mass transfer resistance of the system was further calculated based on the experimental data. The addition of additives improved the PVDF membrane characteristics in terms of liquid entry pressure and stripping flux. This could be caused by the thermodynamic (polymer-solvent interaction) and kinetic effects (solution viscosity) on the phase inversion process. These effects also contributed to the reduction of membrane pore size, contact angle and gas permeability of PVDF udmembranes. The CO 2 stripping performance of PVDF with polyethylene glycol (PEG) additive showed the highest stripping flux and efficiency compared to the udother membrane samples. The increase in the concentration of LiC1 in PVDF membrane produced high stripping fluxes which can be associated to low surface udroughness and mass transfer resistance. For PET membrane, increasing the polymer concentration had significantly enhanced the wetting pressure whilst reducing the gas permeation. From FESEM analysis, PEI hollow fiber membranes showed finger-like structure similar to PVDF membrane but there was variation in thickness of spongelike layer in the middle of the membrane cross-structure. Comparative study between PVDF and PEI hollow fiber membranes possessed different microstructures with udPVDF-PEG membrane achieving the highest stripping flux of 4.Ox 10-2 mol/m2s. Although PEI membranes had higher resistance compared to PVDF membranes in udterms of liquid entry pressure, both membranes suffered reduction of stripping flux after operating more than 20 hours. However, the percentage of flux reduction during long hour operation for PVDF membrane was 34% higher than PEI membrane. In addition, PVDF membranes demonstrated higher stripping flux compared to PEI membranes. Therefore, highly hydrophobic membranes with reasonable pore sizes and microstructure are preferred in membrane contactor system for CO 2 stripping udapplication.
机译:开发了多孔聚偏二氟乙烯(PVDF)和聚醚酰亚胺(PET)中空纤维膜,用于膜接触器系统中的CO 2汽提。研究了各种添加剂(氯化锂,聚乙二醇,二磷酸,甲醇和甘油)和不同浓度的氯化锂(LiCl)对PVDF膜的膜结构和CO 2汽提性能的影响。研究了不同浓度的PEI膜的聚合物,并评估了它们对膜结构和CO 2汽提性能的影响。比较并分析了PVDF和PEI膜的长期性能。膜的特征在于气体渗透,接触角,膜孔隙率,液体进入压力和拉伸强度。使用原子力显微镜(AFM)检查膜表面粗糙度,同时使用扫描电子显微镜(SEM)和场发射扫描电子显微镜(FESEM)研究膜的形态。根据实验数据进一步计算了系统的传质阻力。添加剂的添加改善了PVDF膜在液体进入压力和汽提通量方面的特性。这可能是由于相转化过程中的热力学(聚合物-溶剂相互作用)和动力学效应(溶液粘度)引起的。这些效果也有助于减小PVDF膜的膜孔径,接触角和透气性。与其他膜样品相比,带有聚乙二醇(PEG)添加剂的PVDF的CO 2汽提性能显示出最高的汽提通量和效率。 PVDF膜中LiCl浓度的增加会产生高剥离通量,这可能与低表面粗糙度和传质阻力有关。对于PET膜,增加聚合物浓度已显着提高了润湿压力,同时降低了气体渗透率。根据FESEM分析,PEI中空纤维膜显示出类似于PVDF膜的指状结构,但在膜交叉结构的中间存在海绵状层的厚度变化。 PVDF和PEI中空纤维膜的比较研究具有不同的微观结构,其中 udPVDF-PEG膜的最高剥离通量为4.Ox 10-2 mol / m2s。尽管在液体进入压力的条件下,PEI膜比PVDF膜具有更高的抵抗力,但在运行20多个小时后,两种膜的汽提通量均降低。但是,PVDF膜在长时间运行时的通量减少百分比比PEI膜高34%。此外,与PEI膜相比,PVDF膜具有更高的剥离通量。因此,在膜接触器系统中优选具有合理孔径和微结构的高疏水性膜用于CO 2汽提 ud应用。

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    Rosmawati Naim;

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  • 年度 2014
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