A study of spray granulation in vibrated fluidized bed with internal heating tubes

被引:5
|
作者
Xiaoheng Pan
Shichao Ye
Zeguang Zhang
Li Zhang
Xuejun Zhu
机构
[1] Sichuan University,School of Chemical Engineering
[2] Panzhihua University,College of Biology and Chemical Engineering
来源
关键词
vibrated fluidized bed; immersed horizontal; horizontal heating tubes; spray granulation; particle growth model;
D O I
10.1007/s11705-009-0084-x
中图分类号
学科分类号
摘要
The granulation process in a vibrated fluidized bed with immersed horizontal heating tubes was studied in this paper, with small monoammonium phosphate particles as the initial particles and monoammonium phosphate solution sprayed on them. The concrete influences on the granulating performance of the immersed horizontal heating power, fluidizing gas velocity, vibration frequency and amplitude had been analyzed theoretically. The results show that appropriate vibration intensity is a preferred condition for the growth of partials, but the fine dust will become much more along with prolonged vibration. Increasing the heating power is beneficial to raise the growth rate. Particles will grow faster if the fluidizing gas velocity is higher, but this will cause more fine dust. The optimized condition of A = 0.002 m, f = 6.67 Hz, u = 1.4 m/s was given after the analysis of the experimental results. In the end, a semiempirical formula was derived from the experiment data, and the calculation results show good agreement with the experimental data.
引用
收藏
相关论文
共 50 条
  • [31] Fluidized bed spray granulation - Investigation of the coating process on a single sphere
    Link, KC
    Schlunder, EU
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 1997, 36 (06) : 443 - 457
  • [32] Investigation on Side-Spray Fluidized Bed Granulation with Swirling Airflow
    Poh Mun Wong
    Lai Wah Chan
    Paul Wan Sia Heng
    AAPS PharmSciTech, 2013, 14 : 211 - 221
  • [33] Influence of drying conditions on layer porosity in fluidized bed spray granulation
    Rieck, C.
    Hoffmann, T.
    Bueck, A.
    Peglow, M.
    Tsotsas, E.
    POWDER TECHNOLOGY, 2015, 272 : 120 - 131
  • [34] Control of Multi-Chamber Continuous Fluidized Bed Spray Granulation
    Palis, Stefan
    IFAC PAPERSONLINE, 2019, 52 (01): : 406 - 411
  • [35] Inferential control of product properties for fluidized bed spray granulation layering
    Duerr, Robert
    Neugebauer, Christoph
    Palis, Stefan
    Bueck, Andreas
    Kienle, Achim
    IFAC PAPERSONLINE, 2020, 53 (02): : 11410 - 11415
  • [36] Separation characteristics of vibrated fluidized bed
    Luo, Zhenfu
    Chen, Qingru
    Zhongguo Kuangye Daxue Xuebao/Journal of China University of Mining and Technology, 2000, 29 (06): : 566 - 570
  • [37] Study on the hydromechanical behavior of rubber particles in vibrated fluidized bed
    Wang, Xiaoxin
    Yuan, Xiugan
    Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics, 1998, 24 (06): : 730 - 733
  • [38] Entropy-based control of continuous fluidized bed spray granulation processes
    Palis, Stefan
    Bueck, Andreas
    Kienle, Achim
    IFAC PAPERSONLINE, 2015, 48 (13): : 154 - 157
  • [39] Identification of thermal zones and population balance modelling of fluidized bed spray granulation
    Turchiuli, C.
    Jimenez, T.
    Dumoulin, E.
    POWDER TECHNOLOGY, 2011, 208 (02) : 542 - 552
  • [40] A new comprehensive model and simulation package for fluidized bed spray granulation processes
    Ihlow, M
    Drechsler, J
    Peglow, M
    Henneberg, M
    Mörl, L
    CHEMICAL ENGINEERING & TECHNOLOGY, 2004, 27 (11) : 1139 - 1143