首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Surface modification of nanocomposite ceramic membranes by PDMS for condensable hydrocarbons separation
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Surface modification of nanocomposite ceramic membranes by PDMS for condensable hydrocarbons separation

机译:PDMS对纳米复合陶瓷膜的表面改性,用于可冷凝烃的分离

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摘要

PDMS/ceramic nanocomposite membranes were fabricated via dip-coating method. Tubular porous nanocomposite ceramic supports were used as membrane substrates and polydimethylsiloxane was applied as a top active layer. The hybrid membranes were characterized morphologically by scanning electron microscopy (SEM) and their gas transport properties were measured using single gas permeation (butane and hydrogen) at ambient temperature and different pressures. SEM micrographs confirmed the penetration of polymeric layer into ceramic support pores at low concentrations of PDMS solution. Experimental result clearly indicated that the undesirable penetration during the dip-coating stage could be avoided by increasing the concentration of PDMS coating solution. This led to the formation of a uniform and dense coating layer without penetration into pores of the support. These hybrid membranes showed higher permeability combined to a suitable selectivity in comparison with dense homogeneous PDMS membrane, in addition, at low pressures, the high selectivity of PDMS/ceramic nanocomposite membranes for condensable hydrocarbons separation revealed that the dominant mechanism is solution-diffusion.
机译:通过浸涂法制备了PDMS /陶瓷纳米复合膜。将管状多孔纳米复合陶瓷载体用作膜基材,并将聚二甲基硅氧烷用作顶部活性层。通过扫描电子显微镜(SEM)对杂化膜进行形态学表征,并在环境温度和不同压力下使用单一气体渗透(丁烷和氢气)测量其气体传输性能。 SEM显微照片证实了在低浓度的PDMS溶液中聚合物层渗透到陶瓷载体孔中。实验结果清楚地表明,通过增加PDMS涂料溶液的浓度可以避免在浸涂阶段产生不希望的渗透。这导致形成均匀且致密的涂层,而没有渗透到载体的孔中。这些杂化膜与致密的均相PDMS膜相比具有更高的渗透性和合适的选择性,此外,在低压下,PDMS /陶瓷纳米复合膜对可冷凝烃的高选择性表明其主要机理是溶液扩散。

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