TY - JOUR
T1 - Nickel zirconia cerate cermet for catalytic partial oxidation of ethanol in a solid oxide fuel cell system
AU - Wang, Wei
AU - Su, Chao
AU - Zheng, Tao
AU - Liao, Mingming
AU - Shao, Zongping
PY - 2012/5
Y1 - 2012/5
N2 - Ni + Ce xZr 1-xO 2 (x = 0.0, 0.2, 0.4, 0.6, 0.8 and 1.0) cermets were synthesized and their catalytic performance for partial oxidation of ethanol (POE) reaction was studied. The structure, reducibility properties and carbon deposition behavior of the various catalysts were investigated. Among the various catalysts, Ni + Ce 0.8Zr 0.2O 2 displayed the best catalytic activity in terms of H 2 selectivity and also the highest coking resistance. The fuel cell with Ni + Ce 0.8Zr 0.2O 2 catalyst layer delivered a peak power density of 692 mW cm -2 at 700°C when operating on ethanol-O 2 gas mixtures, comparable to that applying hydrogen fuel. The fuel cell also showed an improved operation stability on ethanol-O 2 fuel for 150 h at 700°C. Ni + Ce 0.8Zr 0.2O 2 is promising as an active and coke-tolerant catalyst layer for solid oxide fuel cells operating on ethanol-O 2 fuel, which makes it highly attractive by applying biofuel in an SOFC system for efficiency electric power generation.
AB - Ni + Ce xZr 1-xO 2 (x = 0.0, 0.2, 0.4, 0.6, 0.8 and 1.0) cermets were synthesized and their catalytic performance for partial oxidation of ethanol (POE) reaction was studied. The structure, reducibility properties and carbon deposition behavior of the various catalysts were investigated. Among the various catalysts, Ni + Ce 0.8Zr 0.2O 2 displayed the best catalytic activity in terms of H 2 selectivity and also the highest coking resistance. The fuel cell with Ni + Ce 0.8Zr 0.2O 2 catalyst layer delivered a peak power density of 692 mW cm -2 at 700°C when operating on ethanol-O 2 gas mixtures, comparable to that applying hydrogen fuel. The fuel cell also showed an improved operation stability on ethanol-O 2 fuel for 150 h at 700°C. Ni + Ce 0.8Zr 0.2O 2 is promising as an active and coke-tolerant catalyst layer for solid oxide fuel cells operating on ethanol-O 2 fuel, which makes it highly attractive by applying biofuel in an SOFC system for efficiency electric power generation.
KW - Bio-ethanol
KW - Nickel zirconia cerate
KW - Partial oxidation of ethanol
KW - Renewable energy
KW - Solid oxide fuel cells
UR - http://www.scopus.com/inward/record.url?scp=84860378810&partnerID=8YFLogxK
U2 - 10.1016/j.ijhydene.2012.02.138
DO - 10.1016/j.ijhydene.2012.02.138
M3 - 文章
AN - SCOPUS:84860378810
SN - 0360-3199
VL - 37
SP - 8603
EP - 8612
JO - International Journal of Hydrogen Energy
JF - International Journal of Hydrogen Energy
IS - 10
ER -