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Conversion of Methane to Ethylene with BaCe_(0.9)Y_(0.1)Co_xO_(3-δ) Hydrogen Permeation Membrane
摘    要:
Dehydrogenation coupling of methane (DCM),which can be effectively used to produce low carbon alkenes,has the advantages of rich raw materials,simple reaction device,low energy consumption,etc.Herein,we report a series of Co doped perovskite porous-dense Ba Ce_(0.9)Y_(0.1)Co_xO_(3-δ)(BCYCx) membrane for DCM.After treatment in a reduced atmosphere,a large number of Co nanoparticles will exsolute on the surface of BCY.The metal-oxide interface is helpful to activate the C–H bonds,inhibit the carbon deposition,and so on.The XRD,SEM and XPS prove that Co nanoparticles homogeneously distributed on the BCYCx porous layers,which will create a large quantity of catalytic active sites.At 1100℃,the highest concentration of C_2 product was 5.66%(5.25%ethane+0.41%ethylene)in output gas when methane conversion reaches a maximum value of 24.8%,and the C_2 selectivity gets to 45.6%.We further demonstrate the catalytic performance of high-temperature DCM without obvious decrease after running for 30hours.

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