Jute stick pyrolysis for bio-oil production in fluidized bed reactor

被引:111
作者
Asadullah, M. [1 ]
Rahman, M. Anisur [1 ]
Ali, M. Mohsin [1 ]
Motin, M. Abdul [1 ]
Sultan, M. Borhanus [1 ]
Alam, M. Robiul [1 ]
Rahman, M. Sahedur [1 ]
机构
[1] Rajshahi Univ, Dept Appl Chem & Chem Technol, Rajshahi 6205, Bangladesh
关键词
jute stick; pyrolysis; bio-oil; renewable fuel; fluidized-bed reactor;
D O I
10.1016/j.biortech.2006.12.002
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Pyrolysis of jute stick for bio-oil production has been investigated in a continuous feeding fluidized bed reactor at different temperatures ranging from 300 degrees C to 600 degrees C. At 500 degrees C, the yields of bio-oil, char and non-condensable gas were 66.70 wt%, 22.60 wt% and 10.70 wt%, respectively based on jute stick. The carbon based non-condensable gas was the mixture of carbon monoxide, carbon dioxide, methane, ethane, ethene, propane and propene. The density and viscosity of bio-oil were found to be 1.11 g/mL and 2.34 cP, respectively. The lower heating value (LHV) of bio-oil was found to be 18.25 MJ/kg. Since bio-oil contains some organic acids such as formic acid, acetic acid, etc., the pH and acid value of the bio-oil were found to be around 4 and 135 mg KOH/g, respectively. The water, lignin, solid and ash contents of bio-oil were determined and found to be around 15 wt%, 4.90 wt%, 0.02 wt% and 0.10 wt%, respectively. (C) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:44 / 50
页数:7
相关论文
共 50 条
[41]   Modeling and analysis of the pyrolysis of bio-oil aqueous fraction in a fixed-bed reactor [J].
Liu, Shaomin ;
Chu, Lei ;
Chen, Mingqiang ;
Zhang, Wentao ;
Xin, Wenping .
FUEL, 2014, 133 :1-6
[42]   Pyrolysis of babool seeds (Acacia nilotica) in a fixed bed reactor and bio-oil characterization [J].
Garg, Rahul ;
Anand, Neeru ;
Kumar, Dinesh .
RENEWABLE ENERGY, 2016, 96 :167-171
[43]   Fixed bed pyrolysis of lemongrass (Cymbopogon flexuosus): Bio-oil production and characterization [J].
Madhu, P. ;
Livingston, T. Stephen ;
Manickam, I. Neethi .
ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2017, 39 (13) :1359-1368
[44]   Catalytic Steam Reforming of Fast Pyrolysis Bio-Oil in Fixed Bed and Fluidized Bed Reactors [J].
Lan, Ping ;
Xu, Qingli ;
Zhou, Ming ;
Lan, Lihong ;
Zhang, Suping ;
Yan, Yongjie .
CHEMICAL ENGINEERING & TECHNOLOGY, 2010, 33 (12) :2021-2028
[45]   Pyrolysis of agricultural residues for bio-oil production [J].
Alper, Koray ;
Tekin, Kubilay ;
Karagoz, Selhan .
CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY, 2015, 17 (01) :211-223
[46]   Pyrolysis of agricultural residues for bio-oil production [J].
Koray Alper ;
Kubilay Tekin ;
Selhan Karagöz .
Clean Technologies and Environmental Policy, 2015, 17 :211-223
[47]   Fractional condensation of bio-oil vapors from pyrolysis of various sawdust wastes in a bench-scale bubbling fluidized bed reactor [J].
Chai S. ;
Kang B.S. ;
Valizadeh B. ;
Valizadeh S. ;
Hong J. ;
Jae J. ;
Andrew Lin K.-Y. ;
Khan M.A. ;
Jeon B.-H. ;
Park Y.-K. ;
Seo M.W. .
Chemosphere, 2024, 350
[48]   Production of bio-oil with low contents of copper and chlorine by fast pyrolysis of alkaline copper quaternary-treated wood in a fluidized bed reactor [J].
Koo, Won-Mo ;
Jung, Su-Hwa ;
Kim, Joo-Sik .
ENERGY, 2014, 68 :555-561
[49]   Effects of hot filtration on yield and quality of bio-oil from fast pyrolysis of chinese fir in fluidized bed reactor [J].
Zhu, Shen-Jia ;
Liu, Yun-Quan ;
Wang, Duo ;
Ye, Yue-Yuan ;
Li, Shui-Rong .
Chemistry and Industry of Forest Products, 2015, 35 (03) :13-19
[50]   Upgrading of Bio-oil from Energy Crops via Fast Pyrolysis using Nanocatalyst in a Bubbling Fluidized Bed Reactor [J].
Chanathaworn, Jutaporn ;
Yatongchai, Chokchai .
INTERNATIONAL ENERGY JOURNAL, 2022, 22 (01) :71-80