Oxygen updraft gasification of euro cotton banknotes waste for hydrogen-rich syngas production

被引:0
|
作者
Yousef, Samy [1 ]
Eimontas, Justas [2 ]
Zakarauskas, K. estutis [2 ]
Striugas, Nerijus [2 ]
机构
[1] Kaunas Univ Technol, Fac Mech Engn & Design, Dept Prod Engn, LT-51424 Kaunas, Lithuania
[2] Lithuanian Energy Inst, Lab Combust Proc, Breslaujos 3, LT-44403 Kaunas, Lithuania
关键词
Euro banknotes waste; Gasification; Syngas; Hydrogen; Tar; BIOMASS; TAR; PYROLYSIS;
D O I
10.1016/j.joei.2024.101906
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Euro cotton banknote waste (BW) is one of the challenges that the EU region has recently sought vigorously to integrate into the circular economy and to encourage research and investment in its valorisation in order to preserve this sector and reduce its environmental risks. Within this framework, this research aims to study the possibility of treating BW using gasification process and converting it into hydrogen (H2)-rich syngas. Gasification experiments were performed on euro banknote-based cotton waste that underwent pre-pelletizing treatment to produce uniform BW granules. The conversion process was carried out using a continuous updraft gasifier system with a capacity up to 1 kg/h in oxygen agent. To optimize the process and obtain ideal conditions that can release the maximum amount of H2 into the synthesized gas, the experiments were conducted at different temperatures (700, 800, 900 degrees C) and air-fuel equivalence ratios (ER: 0.19, 0.24, 0.29). The syngas, tar, and soot gasification products were characterized using Gas chromatography, Scanning electron microscope (SEM), and Fourier-transform infrared spectroscopy (FTIR). The results show that at 700 degrees C (ER = 0.24), the maximum syngas production rate (1.16 kg/h) with HHV 9.1 MJ/kg can be obtained together with production of 0.05 kg/h (tar) and 0.79 kg/h (soot). Meanwhile, the highest H2 content (up to 19 %) was obtained at 900 degrees C (ER = 0.19) with less tar (0.01 kg/h) and soot (0.49 kg/h). Accordingly, BW treatment using the gasification process is a promising technology for its disposal, especially at a high temperature (900 degrees C) to convert it into H2-rich syngas with smaller quantity of tar and soot components.
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页数:11
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