TY - JOUR
T1 - A comparative study of the performance of SrCo0.76 Fe 0.19 Al0.1 Ox and (SrCo0.8 Fe 0.2 O3-δ)0.95(SrAl2 O 4)0.05 mixed-conducting membranes
AU - Zhu, Na
AU - Zhang, Guangru
AU - Liu, Zhengkun
AU - Dong, Xueliang
AU - Jin, Wanqin
AU - Liu, Shaomin
PY - 2013/4
Y1 - 2013/4
N2 - Dense oxygen permeable ceramic membranes are promising materials for separating oxygen from air and for syngas production. The crystal structure, oxygen vacancy, microstructure, thermal expansion behavior, electrical conductivity, and oxygen permeability of two mixed-conducting ceramics: 5 mol% SrAl2O4-doped SrCo0.8Fe0.2O 3-δ (SCF-SA) and SrCo0.76Fe0.19Al 0.1Ox (SCFA), with the same overall cation composition, were systematically investigated in this work. The main phases of SCFA and SCF-SA are cubic perovskite and no orthorhombic brownmillerite appears from 700°C to 900°C in air, while SCF-SA presents minor unidentified phases. SCF-SA shows lower electrical conductivity than SCFA. SCFA membranes exhibit lower oxygen permeation flux than SCF-SA. At 850°C, the oxygen permeation fluxes of SCFA and SCF-SA are 1.23 and 1.46 mL/cm2/min, respectively, under the oxygen partial pressure gradient of 0.21 × 105/1 × 102 Pa.
AB - Dense oxygen permeable ceramic membranes are promising materials for separating oxygen from air and for syngas production. The crystal structure, oxygen vacancy, microstructure, thermal expansion behavior, electrical conductivity, and oxygen permeability of two mixed-conducting ceramics: 5 mol% SrAl2O4-doped SrCo0.8Fe0.2O 3-δ (SCF-SA) and SrCo0.76Fe0.19Al 0.1Ox (SCFA), with the same overall cation composition, were systematically investigated in this work. The main phases of SCFA and SCF-SA are cubic perovskite and no orthorhombic brownmillerite appears from 700°C to 900°C in air, while SCF-SA presents minor unidentified phases. SCF-SA shows lower electrical conductivity than SCFA. SCFA membranes exhibit lower oxygen permeation flux than SCF-SA. At 850°C, the oxygen permeation fluxes of SCFA and SCF-SA are 1.23 and 1.46 mL/cm2/min, respectively, under the oxygen partial pressure gradient of 0.21 × 105/1 × 102 Pa.
UR - http://www.scopus.com/inward/record.url?scp=84876145833&partnerID=8YFLogxK
U2 - 10.1111/jace.12248
DO - 10.1111/jace.12248
M3 - 文章
AN - SCOPUS:84876145833
SN - 0002-7820
VL - 96
SP - 1285
EP - 1291
JO - Journal of the American Ceramic Society
JF - Journal of the American Ceramic Society
IS - 4
ER -