Carbon monoxide reduction in solid oxide fuel cell–mini gas turbine hybrid power system

被引:0
作者
M. Y. A. Jamalabadi
机构
[1] Ton Duc Thang University,Department for Management of Science and Technology Development
[2] Ton Duc Thang University,Faculty of Civil Engineering
来源
Journal of Thermal Analysis and Calorimetry | 2019年 / 135卷
关键词
Mini turbine; Solid compound cell; Entropy generation; Exergy analysis;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, combined heat and power frameworks employing solid oxide fuel cell power module and a small-scale gas turbine are presented. The offered system is utilized as heat and power supply for residential consumers with a carbon dioxide sorption circulating fluidized bed. As well a favorable solution for the high penalties associated with CO2 capture and reuse of the CO contents is offered. The combined heat and power system considered by a different arrangement in order to high proficiency, controllability, heat recovery and high capacity of energy. In the proposed system, the unburned product from the solid oxide fuel cell is re-extracted and utilized as a fuel source. The suggested system is analyzed by the first and second law of thermodynamics. During this study, comprehensive calculations of chemistry and thermal within the fuel cell are performed to get accurate results. The impact of various parameters, for example fuel and oxidant rate, carbon dioxide removal, operating pressure, compressor parameter on work and heat output of the cycle as well as the discharge of carbon dioxide contamination, is investigated. The optimal pressure ratio of the compressor to minimize the carbon dioxide production is found.
引用
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页码:1871 / 1880
页数:9
相关论文
共 95 条
[1]  
Jamalabadi MYA(2013)Electrochemical and exergetic modeling of a CHP system using tubular solid oxide fuel cell and mini gas turbine ASME J Fuel Cell Sci Technol 10 051007-574
[2]  
Jamalabadi MYA(2014)Economic and environmental modelling of a MGT-SOFC hybrid combined heat and power system for ship applications Middle-East J Sci Res 22 561-1781
[3]  
Jamalabadi MYA(2014)Economic and environmental modelling of a micro gas turbine and solid oxide fuel cell hybrid combined heat and power system Int J Appl Environ Sci 9 1769-348
[4]  
Park JH(2014)Impedance spectroscopy study and system identification of a solid-oxide fuel cell stack With Hammerstein-Wiener Model J Electrochem Environ Conserv Store 14 021002-671
[5]  
Lee CY(1994)Three-dimensional and time-dependent simulation of a planar solid oxide fuel cell stack J Power Sources 49 333-28
[6]  
Jamalabadi MYA(2014)Simulation of electrochemical impedance spectroscopy of a solid oxide fuel cell anodes World Appl Sci J 32 667-154
[7]  
Achenbach E(2015)Numerical investigation of thermal radiation effects on electrochemical impedance spectroscopy of a solid oxide fuel cell anode Mater Perform Charact 4 1-222
[8]  
Jamalabadi MYA(2001)3D model calculation for planar SOFC J Power Sources 102 144-74
[9]  
Jamalabadi MYA(1996)Three-dimensional numerical simulation for various geometries of solid oxide fuel cells J Power Sources 58 109-786
[10]  
Yakabe H(2003)A general mathematical model for analyzing the performance of fuel-cell membrane-electrode assemblies J Power Sources 117 61-4007