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质子传导陶瓷电解质燃料电池特性分析
引用本文:谭小耀, ,孟波, ,杨乃涛, ,K.Li.质子传导陶瓷电解质燃料电池特性分析[J].中国化学工程学报,2005,13(1):107-117.
作者姓名:谭小耀     孟波     杨乃涛     K.Li
作者单位:[1]FuelCellResearchCenter,ShandongUniversityofTechnology,Zibo255012,China [2]DepartmentofChemicalEngineeringandChemicalTechnology,ImperialCollegeLondon,LondonSW72AZ,U.K.
摘    要:An electrolyte model for the solid oxide fuel cell (SOFC) with proton conducting perovskite electrolyte is developed in this study, in which four types of charge carriers including proton, oxygen vacancy (oxide ion), free electron and electron hole are taken into consideration. The electrochemical process within the SOFC with hydrogen as the fuel is theoretically analyzed. With the present model, the effects of some parameters, such as the thickness of electrolyte, operating temperature and gas composition, on the ionic transport (or gas permeation) through the electrolyte and the electrical performance, i.e., the electromotive force (EMF) and internal resistance of the cell, are investigated in detail. The theoretical results are tested partly by comparing with the experimental data obtained from SrCe0.05M0.05O3-α(M=Yb, Y) cells.

关 键 词:固体氧化物燃料电池  质子传导性能  钙钛矿  电解液
修稿时间: 

Characteristic Analysis of the Solid Oxide Fuel Cell with Proton Conducting Ceramic Electrolyte
TAN Xiaoyao,MENG Bo,YANG Naitao,K.Li ,.Characteristic Analysis of the Solid Oxide Fuel Cell with Proton Conducting Ceramic Electrolyte[J].Chinese Journal of Chemical Engineering,2005,13(1):107-117.
Authors:TAN Xiaoyao  MENG Bo  YANG Naitao  KLi   
Affiliation: Fuel Cell ResearchCenter, Shandong University of Technology, Zibo 255012, China   Department of Chemical Engineering and Chemical Technology, Imperial CollegeLondon, London SW7 2AZ, U.K.
Abstract:An electrolyte model for the solid oxide fuel cell (SOFC) with proton conducting perovskite electrolyte is developed in this study, in which four types of charge carriers including proton, oxygen vacancy (oxide ion), free electron and electron hole are taken into consideration. The electrochemical process within the SOFC with hydrogen as the fuel is theoretically analyzed. With the present model, the effects of some parameters, such as the thickness of electrolyte, operating temperature and gas composition, on the ionic transport (or gas permeation) through the electrolyte and the electrical performance, i.e., the electromotive force (EMF) and internal resistance of the cell, are investigated in detail. The theoretical results are tested partly by comparing with the experimental data obtained from SrCe0.95M0.05O3-α (M=Yb, Y) cells.
Keywords:solid oxide fuel cell  proton conducting ceramic  perovskite oxide electrolyte
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