A novel technique that can prevent the disruption of agglomerates when sampling the agglomerates from a fluidized bed has been developed and has been applied to the investigation of the agglomeration behaviour of cohesive particles during fluidization with and without mechanical vibration. A new model for the prediction of agglomerate size has also been established on the basis of the energy balance between the agglomerate collision energy, the energy due to cohesive forces and the energy generated by vibration. The accuracy of the model is tested by comparing the theoretical results with the experimental data obtained both in the present work and in the literature. Effects of gas velocity and mechanical vibration on agglomeration for two cohesive (Geldart group C) powders in fluidization are examined experimentally and theoretically. The experimental results prove that mechanical vibration can significantly reduce both the average size and the degree of the size-segregation of the agglomerates throughout the whole bed. However, the experiments also reveal that the mean agglomerate size decreases initially with the vibration intensity, but increases gradually as the vibration intensity exceeds a critical value. This suggests that the vibration cannot only facilitate breaking the agglomerates due to the increased agglomerate collision energy but can also favour the growth of the agglomerates due to the enhanced contacting probability between particles and/or agglomerates. Both the experimental and theoretical results show that a higher gas velocity leads to a smaller agglomerate size. (c) 2005 Elsevier Ltd. All rights reserved.
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Petr Inst, Dept Chem Engn, Abu Dhabi, U Arab Emirates
King Abdullah Univ Sci & Technol, Clean Combust Res Ctr, Thuwal, Saudi ArabiaPetr Inst, Dept Chem Engn, Abu Dhabi, U Arab Emirates
Raj, Abhijeet
Yang, Seung Yeon
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King Abdullah Univ Sci & Technol, Clean Combust Res Ctr, Thuwal, Saudi ArabiaPetr Inst, Dept Chem Engn, Abu Dhabi, U Arab Emirates
Yang, Seung Yeon
Cha, Dongkyu
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King Abdullah Univ Sci & Technol, Adv Nanofabricat Imaging & Characterizat Core Lab, Thuwal, Saudi ArabiaPetr Inst, Dept Chem Engn, Abu Dhabi, U Arab Emirates
Cha, Dongkyu
Tayouo, Russell
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King Abdullah Univ Sci & Technol, Water Desalinat & Reuse Ctr, Thuwal, Saudi ArabiaPetr Inst, Dept Chem Engn, Abu Dhabi, U Arab Emirates
Tayouo, Russell
Chung, Suk Ho
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King Abdullah Univ Sci & Technol, Clean Combust Res Ctr, Thuwal, Saudi ArabiaPetr Inst, Dept Chem Engn, Abu Dhabi, U Arab Emirates
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Chengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Chengdu Univ Technol, State Key Lab Geohazard Prevent & Geoprotect, Chengdu, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Zhao, Meng
Wu, Hong-Gang
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China Northwest Res Inst Co Ltd CREC, Lanzhou, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Wu, Hong-Gang
Guo, Wei
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Chengdu Univ Technol, State Key Lab Geohazard Prevent & Geoprotect, Chengdu, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Guo, Wei
Tan, Bo-Ren
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Chengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Tan, Bo-Ren
Hu, Cheng
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Chengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Hu, Cheng
Deng, Rui
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Chengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China
Deng, Rui
Chen, Li-Yi
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Chengdu Univ Technol, State Key Lab Geohazard Prevent & Geoprotect, Chengdu, Peoples R ChinaChengdu Univ, Sichuan Engn Res Ctr Mech Properties & Engn Techno, Chengdu, Peoples R China