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首页> 外文期刊>Chemical Engineering Science >Effects of additives on dual-layer hydrophobic-hydrophilic PVDF hollow fiber membranes for membrane distillation and continuous performance
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Effects of additives on dual-layer hydrophobic-hydrophilic PVDF hollow fiber membranes for membrane distillation and continuous performance

机译:添加剂对双层疏水-亲水PVDF中空纤维膜的影响,用于膜蒸馏和连续性能

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The advantages of the implementation of dual-layer hydrophobic-hydrophilic hollow fiber membranes for membrane distillation (MD) have been highlighted in this work. The effects of incorporating methanol as a non-solvent additive and self-synthesized fluorinated silica (FSi) particles as a hydrophobic modifier on the resultant membrane morphology and MD performance were investigated. Employing a 3.5wt% sodium chloride solution at 80°C, the highest direct contact membrane distillation (DCMD) flux of 83.40±3.66kg/(m~2h) and separation factor higher than 99.99% were attained for the membrane spun with methanol additive. Moreover, the stability of the dual-layer hydrophobic-hydrophilic hollow fiber membrane has been demonstrated through continuous DCMD experiments for 5 days. The separation factor was maintained higher than 99.99% for the membrane spun with methanol additive, verifying the suitability of the dual-layer hydrophobic-hydrophilic hollow fiber membrane configuration for desalination processes. The morphological transformation of the outer membrane surface from a porous agglomerated globule structure into a denser interconnected globule structure may be accounted for by the stability improvement of the membrane spun with methanol additive. On the other hand, it was found that an enhanced hydrophobicity of the membrane spun with FSi particles did not result in an improvement of the membrane stability. The existence of the hydrophilic hydroxyl group on the FSi particle surface may favor the occurrence of membrane wetting.
机译:在这项工作中突出了为膜蒸馏(MD)实施双层疏水性亲水性中空纤维膜的优势。研究了甲醇作为非溶剂添加剂和自合成的氟化二氧化硅(FSi)颗粒作为疏水改性剂对所得膜的形貌和MD性能的影响。在80°C下使用3.5wt%的氯化钠溶液,采用甲醇添加剂纺丝的膜的最高直接接触膜蒸馏(DCMD)流量为83.40±3.66kg /(m〜2h),分离系数高于99.99%。 。此外,双层疏水-亲水中空纤维膜的稳定性已通过连续5天的连续DCMD实验得到证明。用甲醇添加剂纺制的膜的分离系数保持在99.99%以上,这证明了双层疏水-亲水中空纤维膜结构适用于脱盐工艺的适用性。外膜表面从多孔团聚球状结构到更紧密的互连球状结构的形态转变可以通过用甲醇添加剂纺丝的膜的稳定性提高来解释。另一方面,发现用FSi颗粒纺丝的膜的疏水性增强没有导致膜稳定性的改善。 FSi颗粒表面上亲水羟基的存在可能有助于膜润湿的发生。

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