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Performance and electrochemical characteristics of a high temperature PEMFC stack under different reformate mixtures
Chen Yu Chen
, Wei Mon Yan, Kuo Yao Cheng
機械工程學系
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Keyphrases
Performance Characteristics
100%
Electrochemical Characteristics
100%
Carbon Monoxide Concentration
100%
Membrane Electrolyte Assembly
100%
PEMFC Stack
100%
Reformate Gas
100%
Reformate
100%
High Temperature PEMFC
100%
Carbon Dioxide
50%
Operating Temperature
50%
Proton Exchange Membrane Fuel Cell (PEMFC)
50%
Carbon Effect
50%
Temperature Rise
50%
Charge Transfer Resistance
50%
Electrochemical Impedance Spectroscopy
50%
Mass Transfer Resistance
50%
Nitrogen Effect
50%
Phosphoric Acid
50%
Real Application
50%
Dilution Effect
50%
Nitrogen Concentration
50%
Fuel Cell Stack
50%
Poisoning Effect
50%
Nitrogen Monoxide
50%
Membrane System
50%
CO Tolerance
50%
Hydrogen Energy Technologies
50%
Stack Performance
50%
Carbon Monoxide Tolerance
50%
Gas Conditions
50%
High Temperature Proton Exchange Membrane
50%
Low-cost Catalyst
50%
Engineering
Proton-Exchange Membrane Fuel Cells
100%
Reformates
100%
Fits and Tolerances
50%
Operating Temperature
25%
Charge Transfer Resistance
25%
Dilution
25%
Temperature Increase
25%
Hydrogen Energy
25%
Real Application
25%
Fuel Cell Stack
25%
Energy Technology
25%
Proton Exchange Membrane
25%
Material Science
Proton-Exchange Membrane Fuel Cells
100%
Carbon Monoxide
100%
Dielectric Spectroscopy
25%
Nitric Oxide
25%
Dilution
25%