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首页> 外文期刊>CERAMICS INTERNATIONAL >Fabrication of lanthanum-based perovskites membranes on porous alumina hollow fibre (AHF) substrates for oxygen enrichment
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Fabrication of lanthanum-based perovskites membranes on porous alumina hollow fibre (AHF) substrates for oxygen enrichment

机译:基于镧的钙菌的植物植物膜膜的制备用于氧富集的多孔氧化铝中空纤维(AHF)底物

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In this work, two types of lanthanum-based MIEC perovskite oxides, namely La(0.6)Sr(0.4)Co(0.2)Fe(0.8)o(3-delta) (LSCF) and La-0.6.Sr(0.4)Co(0.2)Ni(0.8)o(3-delta) (LSCNi), were deposited onto porous alumina hollow fibre (AHF) substrates and used for oxygen enrichment. Such structure was developed to shorten oxygen ion diffusion distances in dense membranes and simultaneously leading to higher oxygen flux. The perovskite oxides were prepared using Pechini sol-gel method and deposited via a vacuum-assisted technique. The deposition of lanthanum-based membranes onto the outer and inner sides of the porous AHF has been facilitated through numerous microchannels in the AHF substrates. The effects of operating temperature and argon sweep gas flowrate on oxygen permeation flux of lanthanum-based AHF membrane were investigated. The results revealed that the oxygen permeation flux of LSCF-AHF and LSCNi-AHF increased with operating temperatures due to the improvement of bulk diffusion and surface exchange properties after the lanthanum-based perovskite deposition. Higher oxygen flux was observed for LSCNi-AHF as LSCNi possessed balanced oxygen ionic and electronic conductivities as compared to LSCF membranes. Benefitting from improved oxygen activation and vacancy generation properties after Ni substitution into the B-site ion of LSC perovskite, a dramatic increased oxygen fluxes up to 4.5 mL/mincm(2) was observed at 950 degrees C. The present work demonstrated a feasible method for fabricating oxygen transport membrane (OTM) using porous AHF substrates
机译:在这项工作中,两种类型的基于镧的MiEc钙钛矿氧化物,即La(0.6)Sr(0.4)Co(0.2)Fe(0.8)O(3-Δ)(LSCF)和La-0.6.SR(0.4)Co (0.2)Ni(0.8)O(3-Δ)(LSCNI)沉积在多孔氧化铝中空纤维(AHF)基材上并用于氧富集。开发了这种结构以缩短致密膜中的氧离子扩散距离,同时导致更高的氧气通量。使用Pechini溶胶 - 凝胶法制备钙钛矿氧化物并通过真空辅助技术沉积。通过AHF基材中的许多微通道促进了基于镧的膜沉积到多孔AHF的外侧和内侧。研究了工作温度和氩气扫气体流动对基于镧的AHF膜氧渗透通量的影响。结果表明,由于在镧系钙钛矿沉积后的散装扩散和表面交换性能的提高,LSCF-AHF和LSCNI-AHF的氧渗透通量随工作温度而增加。对于LSCNI-AHF,观察到LSCNI-AHF的较高的氧气通量,与LSCF膜相比,LSCNI具有平衡的氧离子和电子导电性。从改善氧气活化和空位产生性能后,Ni替代到LSC Perovskite的B位离子后,在950℃下观察到高达4.5ml / mincm(2)的显着增加的氧气通量。本工作证明了一种可行的方法用于使用多孔AHF基材制造氧输送膜(OTM)

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