Performance of a mixed-conducting ceramic membrane reactor with high oxygen permeability for methane conversion

Zongping Shao, Hui Dong, Guoxing Xiong, You Cong, Weishen Yang

Research output: Contribution to journalArticlepeer-review

246 Scopus citations

Abstract

A mixed-conducting perovskite-type Ba0.5Sr0.5Co0.8Fe0.2 O3-δ (BSCFO) ceramic membrane reactor with high oxygen permeability was applied for the activation of methane. The membrane reactor has intrinsic catalytic activities for methane conversion to ethane and ethylene. C2 selectivity up to 40-70% was achieved, albeit that conversion rate were low, typically 0.5-3.5% at 800-900°C with a 50% helium diluted methane inlet stream at a flow rate of 34ml/min. Large amount of unreacted molecular oxygen was detected in the eluted gas and the oxygen permeation flux improved only slightly compared with that under non-reactive air/He experiments. The partial oxidation of methane to syngas in a BSCFO membrane reactor was also performed by packing LiLaNiO/γ-Al2O3 with 10% Ni loading as the catalyst. At the initial stage, oxygen permeation flux, methane conversion and CO selectivity were closely related with the state of the catalyst. Less than 21h was needed for the oxygen permeation flux to reach its steady state. 98.5% CH4 conversion, 93.0% CO selectivity and 10.45ml/cm2min oxygen permeation flux were achieved under steady state at 850°C. Methane conversion and oxygen permeation flux increased with increasing temperature. No fracture of the membrane reactor was observed during syngas production. However, H2-TPR investigation demonstrated that the BSCFO was unstable under reducing atmosphere, yet the material was found to have excellent phase reversibility. A membrane reactor made from BSCFO was successfully operated for the POM reaction at 875°C for more than 500h without failure, with a stable oxygen permeation flux of about 11.5 ml/cm2min.

Original languageEnglish
Pages (from-to)181-192
Number of pages12
JournalJournal of Membrane Science
Volume183
Issue number2
DOIs
StatePublished - 1 Mar 2001
Externally publishedYes

Keywords

  • BaSrCoFe O
  • Membrane reactor
  • Oxidative coupling of methane
  • Oxygen permeation
  • Partial oxidation of methane
  • Perovskite

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