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Preparation and characterization of dual layer thin layer lanthanum strontium cobalt ferrite /alumina hollow fiber membrane usinguddip-coating and brush-coating techniques

机译:用 ud制备双层薄层镧锶锶铁氧体/氧化铝中空纤维膜及其表征浸涂和刷涂技术

摘要

This paper reports the preparation of the dual layer ceramic hollow fiber membrane that made of alumina and a mixed ion electron conducting (MIEC) material for simultaneous reaction and separation applications. Alumina hollow fiber membrane was prepared using the phase inversion process followed by a sintering technique at elevated temperature. The alumina hollow fiber membrane was used as membrane support onto which a thin and dense layer of lanthanum strontium cobalt ferrite (LSCF) was deposited. The main objective of this study was to investigate the LSCF coating formulations used in the deposition of LSCF layer onto alumina substrate membrane. The sintering temperature of thin LSCF layer was varied to investigate gas-tightness properties of LSCF membrane. A series of characterizations were conducted for both the support and the LSCF membrane. The result showed that the thin layer membranes with thicknesses ranging from 3 to 20 μm were successfully deposited on the surface of alumina hollow fiber support. The sintering process improved the gas-tightness properties but the sintering temperature above 1150oC caused defects on the surface of LSCF membrane.
机译:本文报道了由氧化铝和混合离子电子传导(MIEC)材料制成的双层陶瓷中空纤维膜的制备,用于同时反应和分离应用。使用相转化工艺,然后在高温下烧结技术,制备氧化铝中空纤维膜。氧化铝中空纤维膜用作膜载体,在其上沉积了一层薄而致密的镧锶钴铁氧体(LSCF)。这项研究的主要目的是研究用于将LSCF层沉积到氧化铝基底膜上的LSCF涂料配方。改变薄LSCF层的烧结温度以研究LSCF膜的气密性。对载体和LSCF膜都进行了一系列表征。结果表明,厚度为3至20μm的薄层膜成功地沉积在氧化铝中空纤维载体的表面上。烧结过程改善了气密性,但高于1150oC的烧结温度导致LSCF膜表面出现缺陷。

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