4.5 Article

Catalyst-modified perovskite hollow fiber membrane for oxidative coupling of methane

期刊

CHINESE JOURNAL OF CHEMICAL ENGINEERING
卷 41, 期 -, 页码 412-419

出版社

CHEMICAL INDUSTRY PRESS CO LTD
DOI: 10.1016/j.cjche.2021.11.012

关键词

Hollow fiber; Membrane reactor; Oxidative coupling of methane (OCM); Perovskite

资金

  1. National Natural Science Foundation of China [21805206, 22179073]

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The study evaluated the effects of adding BCG and BSCF catalyst layers on LSCF hollow fibers, demonstrating the complex interplay between oxygen permeation and OCM performance.
The catalytic oxidative coupling of methane (OCM) to C-2 hydrocarbons (C2H6 and C2H4) represents one of the most effective ways to convert natural gas to more useful products, which can be performed effectively using La0.6Sr0.4Co0.2Fe0.8O3-delta (LSCF) perovskite hollow fiber membrane microreactor. In this work, the effects of adding a thin BaCe0.8Gd0.2O3-delta (BCG) catalyst film onto the inner LSCF fiber surface as the 0CM catalyst and a porous Ba0.5Sr0.6Co0.8Fe0.2O3-delta (BSCF) perovskite layer onto the outer LSCF surface to improve the oxygen permeation were evaluated. Between 700 degrees C and 1000 degrees C, methane conversion increased in the order of uncoated, BCG and BSCF-coated, and BCG-coated LSCF hollow fiber while C-2-selectivity and C-2-yield increased in the order of BCG and BSCP-coated, uncoated, and BCG-coated LSCF hollow fiber. Oxygen permeation flux at the same temperature range, on the other hand, was enhanced in the order of uncoated, BCG-coated, and BCG and BSCF-coated LSCF hollow fiber. This finding demonstrates the complex interplay between oxygen permeation and OCM performance. The BCG and BSCF-coated hollow fiber was also subjected to thermal cycles between 850 degrees C and 900 degrees C for up to 175 hours during which the fiber showed minor degradation in oxygen permeation fluxes and relatively stable OCM performance. (C) 2021 The Chemical Industry and Engineering Society of China, and Chemical Industry Press Co., Ltd. All rights reserved.

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