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首页> 外文期刊>Separation and Purification Technology >Preparation and properties of polyethersulfone hollow fiber membranes with o-xylene as an additive used in membrane contactors for CO2 absorption
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Preparation and properties of polyethersulfone hollow fiber membranes with o-xylene as an additive used in membrane contactors for CO2 absorption

机译:邻二甲苯为添加剂的聚醚砜中空纤维膜的制备及性能

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摘要

In this work, o-xylene was used as an additive of dope solutions in the preparation of polyethersulfone (PES) hollow fiber membranes by nonsolvent induced phase separation (NIPS) method to improve the hydrophobicity of membrane. The o-xylene concentration was varied from 0 to 10 wt.%. Characterization of the fabricated hollow fiber membranes included scanning electron microscopy (SEM), tensile mechanical strength and water contact angle measurement. Microscopic observation showed that the membranes were composed of macrovoids and finger like structure. Permeation performance was determined; included pure water permeability. The gas permeation method was used to estimate the surface pore size and effective surface porosity of the PES hollow fiber membrane prepared. The o-xylene was used as a pore-reducing agent. The effect of coagulation temperature on the morphology of the hollow fiber membranes was investigated for temperature range 24-60 °C. The fabricated hollow fiber membranes were used to separate carbon dioxide from gas mixture using membrane contactor module. An attempt had been made to find the optimum o-xylene concentration and the effect of the coagulation temperature on membrane morphology and absorption performance. It was observed that addition of o-xylene to the cast solution reduces water permeability, reduced membrane pore size, and increases membrane strength and water contact angle and hence the hollow fiber membranes is more hydrophobic.
机译:在这项工作中,邻二甲苯用作涂料溶液的添加剂,通过非溶剂诱导相分离(NIPS)方法制备聚醚砜(PES)中空纤维膜,以提高膜的疏水性。邻二甲苯浓度在0至10重量%之间变化。制成的中空纤维膜的表征包括扫描电子显微镜(SEM),拉伸机械强度和水接触角测量。显微观察表明,该膜由大孔和手指状结构组成。确定了渗透性能;包括纯净的水渗透性。气体渗透法用于估计所制备的PES中空纤维膜的表面孔径和有效表面孔隙率。邻二甲苯用作减孔剂。在温度范围为24-60°C的情况下,研究了凝固温度对中空纤维膜形态的影响。所制造的中空纤维膜用于使用膜接触器模块从气体混合物中分离二氧化碳。已尝试寻找最佳的邻二甲苯浓度以及凝固温度对膜形态和吸收性能的影响。观察到将邻二甲苯加入到流延溶液中会降低水的渗透性,减小膜的孔径,并增加膜的强度和水的接触角,因此中空纤维膜的疏水性更高。

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