The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli

Experimental works to study the fluidization of group C particles in term of the effect of binary mixture were carried out. This binary mixtures which consist of fines group C glutinous flour and group B sand particles were fluidized in a fluidized bed with a diameter and height of 0.05m and 0.9m re...

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Main Author: Ramli, Rosdan
Format: Thesis
Language:English
Published: 2002
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Online Access:https://ir.uitm.edu.my/id/eprint/89758/1/89758.pdf
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spelling my-uitm-ir.897582024-01-22T04:28:19Z The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli 2002 Ramli, Rosdan Data processing Fluidization Experimental works to study the fluidization of group C particles in term of the effect of binary mixture were carried out. This binary mixtures which consist of fines group C glutinous flour and group B sand particles were fluidized in a fluidized bed with a diameter and height of 0.05m and 0.9m respectively. In this experiment, two methods of mixing were used. The first method was performed by mixing the flour with sand randomly and the second method was carried out by placing the sand as a separate layer at the bottom and the cohesive particles on top of the sand in the column. Three different percentages of a sand were used i.e. 10%w/w, 20%w/w and 30%w/w and preliminary experiments where the properties of base element such as bulk density, tapped density, aerated density as well as sieve analysis of the sand and glutinous flour used were also obtained. The experiment indicated that application of different mixing method could lead to different behaviour of fluidization. 2002 Thesis https://ir.uitm.edu.my/id/eprint/89758/ https://ir.uitm.edu.my/id/eprint/89758/1/89758.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Mechanical Engineering Anuar, Nornizar
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Anuar, Nornizar
topic Data processing
Fluidization
spellingShingle Data processing
Fluidization
Ramli, Rosdan
The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli
description Experimental works to study the fluidization of group C particles in term of the effect of binary mixture were carried out. This binary mixtures which consist of fines group C glutinous flour and group B sand particles were fluidized in a fluidized bed with a diameter and height of 0.05m and 0.9m respectively. In this experiment, two methods of mixing were used. The first method was performed by mixing the flour with sand randomly and the second method was carried out by placing the sand as a separate layer at the bottom and the cohesive particles on top of the sand in the column. Three different percentages of a sand were used i.e. 10%w/w, 20%w/w and 30%w/w and preliminary experiments where the properties of base element such as bulk density, tapped density, aerated density as well as sieve analysis of the sand and glutinous flour used were also obtained. The experiment indicated that application of different mixing method could lead to different behaviour of fluidization.
format Thesis
qualification_level Bachelor degree
author Ramli, Rosdan
author_facet Ramli, Rosdan
author_sort Ramli, Rosdan
title The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli
title_short The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli
title_full The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli
title_fullStr The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli
title_full_unstemmed The fluidization of group C particles: the effect of binary mixture / Rosdan Ramli
title_sort fluidization of group c particles: the effect of binary mixture / rosdan ramli
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Mechanical Engineering
publishDate 2002
url https://ir.uitm.edu.my/id/eprint/89758/1/89758.pdf
_version_ 1794192225591099392