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Development of Polysulfone Hollow Fiber Porous Supports for High Flux Composite Membranes: Air Plasma and Piranha Etching

机译:用于高通量复合膜的聚砜中空纤维多孔载体的开发:空气等离子体和食人鱼蚀刻

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For the development of high efficiency porous supports for composite membrane preparation, polysulfone (PSf) hollow fiber membranes (outer diameter 1.57 mm, inner diameter 1.12 mm) were modified by air plasma using the low temperature plasma treatment pilot plant which is easily scalable to industrial level and the Piranha etch (H 2 O 2 + H 2 SO 4 ). Chemical and plasma modification affected only surface layers and did not cause PSf chemical structure change. The modifications led to surface roughness decrease, which is of great importance for further thin film composite (TFC) membranes fabrication by dense selective layer coating, and also reduced water and ethylene glycol contact angle values for modified hollow fibers surface. Furthermore, the membranes surface energy increased two-fold. The Piranha mixture chemical modification did not change the membranes average pore size and gas permeance values, while air plasma treatment increased pore size 1.5-fold and also 2 order enhanced membranes surface porosity. Since membranes surface porosity increased due to air plasma treatment the modified membranes were used as efficient supports for preparation of high permeance TFC membranes by using poly[1-(trimethylsilyl)-1-propyne] as an example for selective layer fabrication.
机译:为了开发用于复合膜制备的高效多孔载体,使用低温等离子体处理中试装置通过空气等离子体对聚砜(PSf)中空纤维膜(外径1.57 mm,内径1.12 mm)进行了改性,可轻松扩展至工业生产水平和食人鱼蚀刻(H 2 O 2 + H 2 SO 4)。化学和等离子体改性仅影响表面层,而不会引起PSf化学结构变化。改性导致表面粗糙度降低,这对于通过致密的选择性层涂层进一步制造薄膜复合材料(TFC)膜非常重要,并且对于改性的中空纤维表面而言,水和乙二醇的接触角值也降低。此外,膜的表面能增加了两倍。食人鱼混合物的化学改性并没有改变膜的平均孔径和气体渗透率值,而空气等离子体处理使孔径增大了1.5倍,膜表面孔隙率也提高了2倍。由于膜的孔隙度由于空气等离子体处理而增加,因此通过使用聚[1-(三甲基甲硅烷基)-1-丙炔]作为选择性层制造的实例,将改性的膜用作制备高渗透性TFC膜的有效载体。

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