TY - JOUR
T1 - Comparison and analysis of heat exchange and off-gas recycle strategies in tri-reforming-SOFC system
AU - Wang, Xuan
AU - Hou, Ruijun
N1 - Publisher Copyright:
© 2023 Hydrogen Energy Publications LLC
PY - 2023/11/1
Y1 - 2023/11/1
N2 - Integrating tri-reforming into SOFC system can convert fuels flexibly and reduce carbon emissions. The tri-reformer-SOFC system requires heat management to reduce energy consumption and to average temperature profiles. In this paper, four system configurations were built with two gas recirculation strategies (anode off gas recycling and burner off-gas recycling) and two reformer types (with heat exchange and oxygen injections). 1-D spatial distributions in the reformer/SOFC and the effect of recirculation ratio (RR) are explored. It is found that the two recirculation strategies can enhance the system electric efficiency due to the recycled fuel and heat, and the two reformers can both average the temperature profiles. Among the four configurations, configuration A exhibits the best performance, and higher RR increases the system electric efficiency, decreases the max temperature gradient in the SOFC and decreases the system global efficiency slightly. This work proposes novel strategies for SOFC system and provides important data for practice.
AB - Integrating tri-reforming into SOFC system can convert fuels flexibly and reduce carbon emissions. The tri-reformer-SOFC system requires heat management to reduce energy consumption and to average temperature profiles. In this paper, four system configurations were built with two gas recirculation strategies (anode off gas recycling and burner off-gas recycling) and two reformer types (with heat exchange and oxygen injections). 1-D spatial distributions in the reformer/SOFC and the effect of recirculation ratio (RR) are explored. It is found that the two recirculation strategies can enhance the system electric efficiency due to the recycled fuel and heat, and the two reformers can both average the temperature profiles. Among the four configurations, configuration A exhibits the best performance, and higher RR increases the system electric efficiency, decreases the max temperature gradient in the SOFC and decreases the system global efficiency slightly. This work proposes novel strategies for SOFC system and provides important data for practice.
KW - Anode off-gas recirculation
KW - Burner off-gas recirculation
KW - Recirculation ratio
KW - Reformer heat management
KW - Solid oxide fuel cell
KW - Tri-reforming
UR - http://www.scopus.com/inward/record.url?scp=85161670911&partnerID=8YFLogxK
U2 - 10.1016/j.ijhydene.2023.04.221
DO - 10.1016/j.ijhydene.2023.04.221
M3 - Article
AN - SCOPUS:85161670911
SN - 0360-3199
VL - 48
SP - 34945
EP - 34960
JO - International Journal of Hydrogen Energy
JF - International Journal of Hydrogen Energy
IS - 89
ER -