A prediction of defluidization time in biomass fired fluidized bed combustion

被引:28
作者
Chaivatamaset, Pawin [1 ]
Sricharoon, Panchan [1 ]
Tia, Suvit [1 ]
Bilitewski, Bernd [2 ]
机构
[1] King Mongkuts Univ Technol Thonburi, Dept Chem Engn, Combust Res Lab, Bangkok 10140, Thailand
[2] Tech Univ Dresden, Inst Waste Management & Contaminated Sites Treatm, D-01796 Pirna, Germany
关键词
Bed agglomeration; Fluidized bed combustion; Biomass; Defluidization time; TEMPERATURE GAS FLUIDIZATION; EXPERIMENTAL-VERIFICATION; AGGLOMERATION; PARTICLES; SPHERES; FUELS; DESTABILIZATION; MODEL; ASH;
D O I
10.1016/j.applthermaleng.2012.08.019
中图分类号
O414.1 [热力学];
学科分类号
摘要
Two mathematical models to describe the complete defluidization time in biomass FBC were presented in this study; one was newly developed and another was a modified model. They considered the effects of the chemical properties of fuel ash and bed operating conditions such as air velocity, bed particle size and static bed height. The model formulations employed the approach of force balance, defining the viscous flow sintering and the gas bubble behaviors to evaluate the adhesive and segregated forces, respectively. The models were achieved by the statistical regression analyzes with the early laboratory scale experimental results and then verified by the pilot scale experimental results and previous published data. The regression analyzes revealed that the inorganic composition of ash in the fuel and temperature were most significant. In addition, the fluidizing velocity showed a strong effect among the observed operating variables. The model predictive results followed the lab scale data with the error range of +/- 22% and +/- 35% and provided fairly well predictability with the pilot scale and published data of previous bed agglomeration tests, carried out with several kinds of biomass fuels. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:722 / 731
页数:10
相关论文
共 50 条
  • [31] Mechanisms and mitigation of agglomeration during fluidized bed combustion of biomass: A review
    Morris, Jonathan D.
    Daood, Syed Sheraz
    Chilton, Stephen
    Nimmo, William
    FUEL, 2018, 230 : 452 - 473
  • [32] Fluidized bed combustion of pelletized biomass and waste-derived fuels
    Chirone, R.
    Salatino, P.
    Scala, F.
    Solimene, R.
    Urciuolo, M.
    COMBUSTION AND FLAME, 2008, 155 (1-2) : 21 - 36
  • [33] Detecting and Counteracting Agglomeration in Fluidized Bed Biomass Combustion
    Bartels, Malte
    Nijenhuis, John
    Lensselink, Jasper
    Siedlecki, Marcin
    de Jong, Wiebren
    Kapteijn, Freek
    van Ommen, J. Ruud
    ENERGY & FUELS, 2009, 23 (1-2) : 157 - 169
  • [34] Active control of biomass fluidized bed combustion environments
    Ventzas, DE
    Tsiakaras, P
    CONTROL APPLICATIONS & ERGONOMICS IN AGRICULTURE, 1999, : 251 - 257
  • [35] Oxy-combustion of biomass in a circulating fluidized bed
    Kosowska-Golachowska, Monika
    Kijo-Kleczkowska, Agnieszka
    Luckos, Adam
    Wolski, Krzysztof
    Musial, Tomasz
    ARCHIVES OF THERMODYNAMICS, 2016, 37 (01) : 17 - 30
  • [36] Concepts of Emission Reduction in Fluidized Bed Combustion of Biomass
    Purgar, Amon
    Winter, Franz
    ACTA POLYTECHNICA, 2012, 52 (04) : 103 - 107
  • [37] Research Progress on Effect of Active Additives on Combustion Characteristics of Biomass-fired Circulating Fluidized Bed Combustor
    Ma, Yuchen
    Zhang, Yizhen
    Tang, Xueyu
    Qi, Jungang
    Wei, Lubin
    Huang, Zhong
    Lyu, Junfu
    Ke, Xiwei
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 44 (19): : 7693 - 7705
  • [38] Fluidized bed combustion of some woody biomass fuels
    Han, J.
    Kim, H.
    Cho, S.
    Shimizu, T.
    ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2008, 30 (19) : 1820 - 1829
  • [39] Prediction of the combustion process in fluidized bed based on physical-chemical properties of biomass particles and their hydrodynamic behaviors
    Pecora, Arai A. B.
    Avila, Ivonete
    Lira, Claudio S.
    Cruz, Glauber
    Crnkovic, Paula M.
    FUEL PROCESSING TECHNOLOGY, 2014, 124 : 188 - 197
  • [40] Agglomeration mechanism in biomass fluidized bed combustion - Reaction between potassium carbonate and silica sand
    Anicic, Bozidar
    Lin, Weigang
    Dam-Johansen, Kim
    Wu, Hao
    FUEL PROCESSING TECHNOLOGY, 2018, 173 : 182 - 190