Tri-generation of sensible heat, hydrogen, and electricity in an aluminum-air flow battery (AAB) system

被引:0
|
作者
Oh, Jeongseog [1 ,3 ]
Yoon, Siwon [4 ]
Kim, Woocheol [2 ]
机构
[1] Korea Inst Energy Res, Energy Convergence Syst Res Dept, Daejeon 34129, South Korea
[2] Korea Dist Heating Corp, Plant Technol Off, Seongnam, South Korea
[3] Univ Sci & Technol, KIER Sch, Div Energy Syst Engn, Daejeon, South Korea
[4] Jeonbuk Natl Univ, Dept Smart Farm, Jeonju, South Korea
关键词
Aluminum-air flow battery; Tri-generation system; Sensible heat storage; Hydrogen production; Electric power generation; PERFORMANCE; ANODES;
D O I
10.1016/j.applthermaleng.2024.124432
中图分类号
O414.1 [热力学];
学科分类号
摘要
The performance of an aluminum-air flow battery (AAB) unit cell is experimentally studied for application to a tri-generation system as a district heating resource of sensible heat storage, hydrogen production, and electric power generation. A layer-type unit cell is designed to protect against leakage of hydrogen gas during operation and to ensure electrolyte circulation in the AAB system. The electrolyte is made with NaOH pellets dissolved in purified water. A direct current (DC) loader is used to measure the electric power of the AAB unit cell, while a resistance temperature detector (RTD) is used to measure the electrolyte temperature at the unit cell inlet and outlet. The objective of the present work is to study the effect of operation parameters [i.e., electrolyte temperature (T-in), mass flow rate ((m) over dot(NaOH)), and molar concentration (X-NaOH)] on the performance of the tri-generation AAB system. The electric power of the AAB unit cell increases in the electrolyte temperature from 20 degree celsius to 50 degree celsius with increases in the NaOH molar concentration from 1 M to 4 M. The performance measurement of the AAB unit cell shows that the total surface power density of sensible heat, hydrogen, and electric power increased with increases in electrolyte temperature from 35 degree celsius to 55 degree celsius. The tri-generation system operates for 140 min under the condition of T-in = 40 degree celsius, (m) over dot(NaOH)=14.48 g/s, and X-NaOH=4 M.
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页数:10
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