Conceptual design and multi-objective optimization of a hybrid system based on direct ammonia protonic ceramic fuel cell and alkali metal thermal electric converter

被引:2
作者
Han, Yuan [1 ]
Gao, Wenzhi [1 ]
Qin, Yanzhou [1 ]
机构
[1] Tianjin Univ, State Key Lab Engines, Tianjin 3000350, Peoples R China
关键词
Direct ammonia protonic ceramic fuel cell; Alkali metal thermal electric converter; Waste heat recovery; Sensitive analysis; Multi -objective optimization; POWER; REFRIGERATOR; STRATEGIES; MODELS; ENERGY;
D O I
10.1016/j.energy.2024.131287
中图分类号
O414.1 [热力学];
学科分类号
摘要
As a power generation device, direct ammonia protonic ceramic fuel cells (NH3-PCFCs) also produce a significant amount waste heat, which not only results in energy wastage but also abnormal operation if the waste heat is not removed. To address these concerns and enhance generation electricity capacity, a novel waste heat recovery system based upon NH3-PCFC and alkali metal thermal electric converter (AMTEC) is first proposed, wherein the AMTEC converts the high-grade exhaust heat produced by the NH3-PCFC to extra electricity. Considering ammonia decomposition sluggish kinetics, various irreversible overpotential losses of NH3-PCFC as well as thermodynamic losses within the integrated system, the energetic/exergetic performance parameters evaluating the NH3-PCFC, AMTEC and the hybrid system are formulated. The general performance characteristics of the proposed system are revealed, along with a sensitive analysis conducted under specific operational conditions or structural parameters. Numerical calculation exhibited that the maximum attainable power density of the hybrid system has been promoted 20.5 % than that of stand-alone NH3-PCFC system. The multi-objective genetic algorithm is utilized to optimize the hybrid system performance for trade-off the power output and efficiency. Optimized results show the power density and corresponding efficiency of proposed system can respectively reach 6762.3 W m- 2 and 49.8 % in the corresponding optimization conditions.
引用
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页数:13
相关论文
共 59 条
[1]   Design and analysis of a solar tower based integrated system using high temperature electrolyzer for hydrogen production [J].
AlZahrani, Abdullah A. ;
Dincer, Ibrahim .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2016, 41 (19) :8042-8056
[2]   A 5 x 5 cm2 protonic ceramic fuel cell with a power density of 1.3 W cm-2 at 600 °C [J].
An, Hyegsoon ;
Lee, Hae-Weon ;
Kim, Byung-Kook ;
Son, Ji-Won ;
Yoon, Kyung Joong ;
Kim, Hyoungchul ;
Shin, Dongwook ;
Ji, Ho-Il ;
Lee, Jong-Ho .
NATURE ENERGY, 2018, 3 (10) :870-875
[3]   Mechanochemical processing of BaZr1-yYyO3_δ (y=0.15, 0.20) protonic ceramic electrolytes: Phase purity, microstructure, electrical properties and comparison with other preparation routes [J].
Antunes, Isabel ;
Perez-Coll, Domingo ;
Nasani, Narendar ;
Soares, Helena S. ;
Mather, Glenn C. ;
Frade, Jorge R. ;
Fagg, Duncan P. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (25) :13606-13621
[4]   Analysis of a proton-conducting SOFC with direct internal reforming [J].
Arpornwichanop, Amornchai ;
Patcharavorachot, Yaneeporn ;
Assabumrungrat, Suttichai .
CHEMICAL ENGINEERING SCIENCE, 2010, 65 (01) :581-589
[5]  
Cengel Y.A., 2008, THERMODYNAMICS ENG A, V6th
[6]   Fuel-cycle based environmental and economic assessment of hydrogen fuel cell vehicles in China [J].
Chi, Yuanying ;
Xu, Weiyue ;
Xiao, Meng ;
Wang, Zhengzao ;
Zhang, Xufeng ;
Chen, Yahui .
ENERGY, 2023, 282
[7]   THERMOELECTRIC ENERGY-CONVERSION WITH SOLID ELECTROLYTES [J].
COLE, T .
SCIENCE, 1983, 221 (4614) :915-920
[8]   Thermodynamic analysis and parameter optimization of a hybrid system based on SOFC and graphene-collector thermionic energy converter [J].
Ding, Ao ;
Sun, Hongzhe ;
Zhang, Senyu ;
Dai, Xiang ;
Pan, Yue ;
Zhang, Xin ;
Rahman, Ehsanur ;
Guo, Juncheng .
ENERGY CONVERSION AND MANAGEMENT, 2023, 291
[9]   Highly durable, coking and sulfur tolerant, fuel-flexible protonic ceramic fuel cells [J].
Duan, Chuancheng ;
Kee, Robert J. ;
Zhu, Huayang ;
Karakaya, Canan ;
Chen, Yachao ;
Ricote, Sandrine ;
Jarry, Angelique ;
Crumlin, Ethan J. ;
Hook, David ;
Braun, Robert ;
Sullivan, Neal P. ;
O'Hayre, Ryan .
NATURE, 2018, 557 (7704) :217-+
[10]   Optimal Power and Efficiency of Quantum Thermoacoustic Micro-cycle Working in 1D Harmonic Trap [J].
E, Qing ;
Wu, Feng ;
Yin, Yong ;
Liu, XiaoWei .
JOURNAL OF LOW TEMPERATURE PHYSICS, 2017, 189 (1-2) :84-97