Transient Multi-Physics Modeling and Performance Degradation Evaluation of Direct Internal Reforming Solid Oxide Fuel Cell Focusing on Carbon Deposition Effect

被引:0
|
作者
Li, Zheng [1 ]
Yang, Guogang [1 ]
Shen, Qiuwan [1 ]
Li, Shian [1 ]
Wang, Hao [1 ]
Liao, Jiadong [1 ]
Jiang, Ziheng [1 ]
Zhang, Guoling [1 ]
机构
[1] Dalian Maritime Univ, Marine Engn Coll, Dalian 116026, Peoples R China
基金
中国国家自然科学基金;
关键词
solid oxide fuel cell; carbon deposition effect; transient multi-physics modeling; long-term performance evaluation; METHANE; ANODES; GASIFICATION; REGENERATION; CATALYST; REMOVAL; DESIGN; STEAM; STATE; SOFC;
D O I
10.3390/en16010124
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The performance degradation issue caused by carbon deposition has limited the commercial application of natural-gas-fueled solid oxide fuel cells. Most previous corresponding studies are based on thermodynamic equilibrium analyses, while long-term transient evaluation work is lacking. Therefore, a transient multi-physics numerical model is developed in present work. The corresponding long-term performance degradation evaluation is then conducted. The results show that, for a direct internal reforming solid oxide fuel cell, the increase in carbon deposition and deterioration of performance degradation were concentrated in the first 180 days of steady-state operation and slowed down at the later stage. The electrode inlet rapidly developed a high concentration of carbon deposition after 180 days of steady-state operation. The deposited carbon deteriorated the gas transport and decayed reaction activity within the porous electrode, eventually inducing a deactivation zone with 0 current density at the inlet. Key measures to inhibit carbon deposition should be implemented within the first 180 days of operation, and the pre-reformed operation of natural gas is encouraged for natural-gas-fueled solid oxide fuel cells.
引用
收藏
页数:20
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