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Fabrication of ultrathin La0.6Sr0.4Co0.2Fe0.8O3-delta hollow fibre membranes for oxygen permeation

机译:用于氧气渗透的超薄La0.6Sr0.4Co0.2Fe0.8O3-δ中空纤维膜的制备

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摘要

An ultrathin La0.6Sr0.4Co0.2Fe0.8O3-delta (LSCF) hollow fibre membrane for enhanced oxygen permeation flux was fabricated using a wet spinning/sintering method. The membrane exhibits a highly asymmetric structure comprising of a very thin dense outer layer supported by finger-like structures that are fully open on the inner surface. Oxygen permeation measurements were conducted using sweep gas as an operating mode. Effects of operating temperatures and flow rates of the sweep gas on the oxygen permeation fluxes were investigated in details. The highest oxygen permeation flux, i.e. 0.096 cm(3)/cm(2) s (5.77 cm(3)/cm(2) min) was obtained from the ultrathin hollow fibre membrane at 1323 K (1050 degrees C) and the sweep gas flow rate of 2.42 cm(3)/s. The results indicate that the oxygen permeation flux obtained is much higher (4.9-11.2 times) than that obtained from conventional LSCF hollow fibre membranes mainly due to the reduced thickness of the membrane as well as the porous surface on the permeate side. In addition, despite a very thin dense layer, the LSCF hollow fibre membrane possessed a reasonable mechanical strength (113.22 MPa).
机译:使用湿法纺丝/烧结法制备了用于提高氧气渗透通量的超薄La0.6Sr0.4Co0.2Fe0.8O3-δ(LSCF)中空纤维膜。该膜表现出高度不对称的结构,该结构包括非常薄的致密外层,该外层由在内表面上完全敞开的手指状结构支撑。使用吹扫气作为操作模式进行氧气渗透测量。详细研究了操作温度和吹扫气流速对氧气渗透通量的影响。最高的氧气渗透通量,即0.096 cm(3)/ cm(2)s(5.77 cm(3)/ cm(2)min)是从超薄中空纤维膜在1323 K(1050摄氏度)和吹扫下获得的气体流速为2.42 cm(3)/ s。结果表明,所获得的氧渗透通量比从常规LSCF中空纤维膜获得的氧渗透通量高得多(4.9-11.2倍),这主要是由于膜的厚度减小以及渗透侧的多孔表面。此外,尽管LSCF中空纤维膜的致密层非常薄,但仍具有合理的机械强度(113.22 MPa)。

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