共 65 条
Experimental and Model Investigation of a Solid Oxide Fuel Cell Operated Under Low Fuel Flow Rate
被引:3
作者:

Neri, Jacopo
论文数: 0 引用数: 0
h-index: 0
机构:
Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy

Cammarata, Alberto
论文数: 0 引用数: 0
h-index: 0
机构:
Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy

Donazzi, Alessandro
论文数: 0 引用数: 0
h-index: 0
机构:
Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy
机构:
[1] Politecn Milan, Dipartimento Energia, I-20156 Milan, Italy
关键词:
ELECTROCHEMICAL IMPEDANCE SPECTRA;
THERMAL-PROPERTIES;
PERFORMANCE;
ELECTRODE;
TRANSPORT;
PROGRESS;
STACKS;
YSZ;
DEGRADATION;
SIMULATION;
D O I:
10.1149/1945-7111/ad1166
中图分类号:
O646 [电化学、电解、磁化学];
学科分类号:
081704 ;
摘要:
A state-of-the-art anode-supported Ni-YSZ/YSZ/GSC/LSC SOFC with 16 cm2 cathode area was tested at low anodic flow rate (6.25 Ncc min-1 cm-2) and large excess of air (93.75 Ncm3 min-1 cm-2). These conditions are typical of stacks, where high H2 utilization is targeted, but are uncommon in single cell testing. H2-based mixtures were supplied between 550 degrees C and 750 degrees C, varying the partial pressure of H2 (between 93% and 21% with 7% H2O mol/mol) and H2O (between 10% and 50% H2O with 50% H2). I/V and EIS measurements were collected and analyzed with a 1D+1D model of a SOFC with rectangular duct interconnectors. At 750 degrees C and 93% H2, 58% fuel utilization was obtained, which raised to 81% at 21% H2, driving the SOFC under internal diffusion control. The model analysis confirmed that nearly-isothermal conditions were retained thanks to efficient heat dissipation, and that air acted as a coolant. During testing, the contact resistance grew to 0.16 omega cm2 at 750 degrees C, limiting the SOFC's performance to a maximum power density of 340 W cm-2 with 7% humidified H2. The kinetic parameters of the anodic reaction were derived by fitting, finding a positive order for H2 (+0.9), and a negative order for H2O (-0.58).
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