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Synthesis and Characterization of Polyethersulfone/Carbon Molecular Sieve Based Mixed Matrix Membranes for Water Treatment Applications

机译:聚醚砜/碳分子筛基混合基质膜用于水处理应用的合成与表征

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Novel mixed matrix membrane was prepared by incorporating the carbon molecular sieves (CMS) into polyethersulfone (PES) matrix. Flat sheet membranes of different filler concentrations were synthesized through phase inversion technique. Scanning electron microscope and Thermogravimetric analyzer were used to investigate the morphology and thermal stability of synthesized membranes respectively. Finally membranes were tested for their pure water flux and sodium chloride (NaCl) rejection (lOOppm aqueous solution). Investigation has shown that all synthesized membranes had asymmetric structure with thin dense top and well-defined macropores in sublayer. It is noticed that inclusion of inorganic filler has improved the thermal stability as well as pure water flux of mixed matrix membranes (upto 33.8LMH at 3 bar). Moreover, synthesized mixed matrix membranes also showed better NaCl rejection (upto 26.13% at 3 bar) than pure polymeric membranes.
机译:通过将碳分子筛(CMS)掺入聚醚砜(PES)基质来制备新的混合基质膜。通过相反转技术合成不同填充浓度的平板膜。扫描电子显微镜和热重分析仪分别用于研究合成膜的形态和热稳定性。最后测试膜的纯净水通量和氯化钠(NaCl)排斥(Looppm水溶液)。研究表明,所有合成的膜都有不对称的结构,在子层中具有薄的致密顶部和明确定义的大孔。注意到,包含无机填料的含有改善的热稳定性以及混合基质膜的纯净水通量(3巴的高达33.8LmH)。此外,合成的混合基质膜也显示出比纯聚合物膜更好的NaCl排斥(高达26.13%)。

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