Investigation of thermal behavior of pine sawdust and coal during co-pyrolysis and co-combustion

被引:42
作者
Laouge, Zakari Boubacar [1 ]
Merdun, Hasan [1 ]
机构
[1] Akdeniz Univ, Fac Engn, Dept Environm Engn, TR-07058 Antalya, Turkey
关键词
Coal; Kinetic; Pine sawdust; Synergistic effect; TGA; Thermodynamic; THERMOGRAVIMETRIC ANALYSIS; PILOT-SCALE; BIOMASS; KINETICS; GASIFICATION; COMBUSTION; LIGNITE; SWITCHGRASS; WASTES; GANGUE;
D O I
10.1016/j.energy.2021.120895
中图分类号
O414.1 [热力学];
学科分类号
摘要
Nowadays, most of the recent large-scale installations are configured to use more than one fuel. Thermal analysis allows us to properly design and operate especially such a large-scale co-pyrolysis and/or co-combustion process. In this study, thermal behaviours of pine sawdust (PS), coals, and their blends were investigated by using thermogravimetric analysis (TGA) under nitrogen and air atmospheres with different heating rates of 10, 20, and 40 degrees C min(-1). Kinetic parameter such as activation energy (Ea) was calculated by using Kissenger-Akahira-Sunose (KAS), Flynn-Wall-Ozawa (FWO), and Starink models. The results showed the existence of an obvious synergistic effect between PS and coal during pyrolysis and combustion processes. The initial, maximum, and burnout temperatures of the reactions; the mass loss rate; and total mass loss were influenced by the proportions of PS and coal in the blend. For pyrolysis the average Ea of 25PS calculated by KAS, FWO, and Starink models was found as 31.57, 40.45, and 32.55 while that of 50PS was 166.80, 168.64, and 167.25 kJ mol(-1), respectively. For combustion, the average Ea of 25PS calculated by KAS, FWO, and Starink models was found as 59.57, 67.74, and 60.52 while that of 50PS was 66.60, 74.20, and 67.49 kJ mol(-1), respectively. According to the Ea value, the blend of 25PS was more suitable than 50PS for energy production through both pyrolysis and combustion. This synergistic effect between PS and coal may be further detailed with more different blend ratios. (C) 2021 Elsevier Ltd. All rights reserved.
引用
收藏
页数:12
相关论文
共 46 条
[1]   Kinetic analyses and pyrolytic behavior of Para grass (Urochloa mutica) for its bioenergy potential [J].
Ahmad, Muhammad Sajjad ;
Mehmood, Muhammad Aamer ;
Al Ayed, Omar S. ;
Ye, Guangbin ;
Luo, Huibo ;
Ibrahim, Muhammad ;
Rashid, Umer ;
Nehdi, Imededdine Arbi ;
Qadir, Ghulam .
BIORESOURCE TECHNOLOGY, 2017, 224 :708-713
[2]  
Akahira T., 1971, RES REPORT CHIBA I T, V16, P22
[3]   Co-pyrolysis of bamboo sawdust and plastic: Synergistic effects and kinetics [J].
Alam, Mahboob ;
Bhavanam, Anjireddy ;
Jana, Ashirbad ;
Viroja, Jaimin Kumar S. ;
Peela, Nageswara Rao .
RENEWABLE ENERGY, 2020, 149 :1133-1145
[4]   How to determine consistent biomass pyrolysis kinetics in a parallel reaction scheme [J].
Anca-Couce, Andres ;
Berger, Anka ;
Zobel, Nico .
FUEL, 2014, 123 :230-240
[5]   Devolatilisation kinetics and pyrolytic analyses of Tectona grandis (teak) [J].
Balogun, A. O. ;
Lasode, O. A. ;
McDonald, A. G. .
BIORESOURCE TECHNOLOGY, 2014, 156 :57-62
[6]   Insights into pyrolytic feedstock potential of date palm industry wastes: Kinetic study and product characterization [J].
Bensidhom, Gmar ;
Trabelsi, Aida Ben Hassen ;
Mahmood, Marwan A. ;
Ceylan, Selim .
FUEL, 2021, 285
[7]   Mineral matter interactions during co-pyrolysis of coal and biomass and their impact on intrinsic char co-gasification reactivity [J].
Ellis, Naoko ;
Masnadi, Mohammad S. ;
Roberts, Daniel G. ;
Kochanek, Mark A. ;
Ilyushechkin, Alexander Y. .
CHEMICAL ENGINEERING JOURNAL, 2015, 279 :402-408
[8]   Kinetic study of regional agro-industrial wastes pyrolysis using non-isothermal TGA analysis [J].
Fernandez, Anabel ;
Saffe, Alejandra ;
Pereyra, Regina ;
Mazza, German ;
Rodriguez, Rosa .
APPLIED THERMAL ENGINEERING, 2016, 106 :1157-1164
[9]   A QUICK DIRECT METHOD FOR DETERMINATION OF ACTIVATION ENERGY FROM THERMOGRAVIMETRIC DATA [J].
FLYNN, JH ;
WALL, LA .
JOURNAL OF POLYMER SCIENCE PART B-POLYMER LETTERS, 1966, 4 (5PB) :323-&
[10]   Thermogravimetric analysis on the co-combustion of biomass pellets with lignite and bituminous coal [J].
Guo, Feihong ;
He, Yi ;
Hassanpour, Ali ;
Gardy, Jabbar ;
Zhong, Zhaoping .
ENERGY, 2020, 197