TY - JOUR
T1 - Exergy flow and energy utilization of direct methanol fuel cells based on a mathematic model
AU - Li, Xianglin
AU - He, Yaling
AU - Yin, Benhao
AU - Miao, Zheng
AU - Li, Xiaoyue
PY - 2008/3/15
Y1 - 2008/3/15
N2 - An exergetic analysis model for direct methanol fuel cell (DMFC) is established in the present paper. Expressions of electrical, thermal and total exergetic efficiencies have been deduced with consideration of methanol crossover and over potential in operation. Furthermore, energy utilization of a DMFC system is quantitatively calculated and changes of electrical efficiency and thermal efficiency at various current density, methanol concentration, operating temperature, and cathode pressure have been investigated. Some suggestions of optimal operating conditions of direct methanol fuel cell based on our findings are put forward. Results show that the thermal energy generated in a DMFC takes up a significant amount of exergy in total energy and should be sufficiently used to obtain high total efficiency in a DMFC, high methanol crossover rate is the predominant cause of energy loss when the fuel cell operates at low current density, and total exergetic efficiency of a DMFC reaches its peak value at relatively high current density.
AB - An exergetic analysis model for direct methanol fuel cell (DMFC) is established in the present paper. Expressions of electrical, thermal and total exergetic efficiencies have been deduced with consideration of methanol crossover and over potential in operation. Furthermore, energy utilization of a DMFC system is quantitatively calculated and changes of electrical efficiency and thermal efficiency at various current density, methanol concentration, operating temperature, and cathode pressure have been investigated. Some suggestions of optimal operating conditions of direct methanol fuel cell based on our findings are put forward. Results show that the thermal energy generated in a DMFC takes up a significant amount of exergy in total energy and should be sufficiently used to obtain high total efficiency in a DMFC, high methanol crossover rate is the predominant cause of energy loss when the fuel cell operates at low current density, and total exergetic efficiency of a DMFC reaches its peak value at relatively high current density.
KW - Direct methanol fuel cell
KW - Efficiency
KW - Exergetic analysis
KW - Methanol crossover
KW - Model
UR - https://www.scopus.com/pages/publications/39149130679
U2 - 10.1016/j.jpowsour.2007.08.019
DO - 10.1016/j.jpowsour.2007.08.019
M3 - Article
AN - SCOPUS:39149130679
SN - 0378-7753
VL - 178
SP - 344
EP - 352
JO - Journal of Power Sources
JF - Journal of Power Sources
IS - 1
ER -