Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles

Sustainable kaolin particles can be used as supplementary cementitious materials in the construction industry, helping to achieve the goal of promoting sustainability. To achieve it, kaolin particles must be calcined in order to change into the most reactive form of metakaolin. However, calcination...

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Published in:IOP Conference Series: Earth and Environmental Science
Main Author: Shakrani S.A.; Ayob A.; Rahim M.A.A.; Alias S.
Format: Conference paper
Language:English
Published: Institute of Physics 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188209210&doi=10.1088%2f1755-1315%2f1303%2f1%2f012006&partnerID=40&md5=3d2faf4ba47e8f1c4fbfaddc22ae6b63
id 2-s2.0-85188209210
spelling 2-s2.0-85188209210
Shakrani S.A.; Ayob A.; Rahim M.A.A.; Alias S.
Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
2024
IOP Conference Series: Earth and Environmental Science
1303
1
10.1088/1755-1315/1303/1/012006
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188209210&doi=10.1088%2f1755-1315%2f1303%2f1%2f012006&partnerID=40&md5=3d2faf4ba47e8f1c4fbfaddc22ae6b63
Sustainable kaolin particles can be used as supplementary cementitious materials in the construction industry, helping to achieve the goal of promoting sustainability. To achieve it, kaolin particles must be calcined in order to change into the most reactive form of metakaolin. However, calcination processes can influence the crystallite, grain, and particle size of kaolin, affecting its reactivity degree. In this study, water-washed kaolin particles were calcined by using a general purpose furnace at various calcination processes (temperatures = 600°C, 700°C and 800°C, duration = 3 h and 4 h, and heating rate = 10°C/min). The effects of calcination processes to the crystallite, grain, and particle size of kaolin particles were investigated. The crystallite size was computed by using the Scherrer equation, the grain size was measured by using ImageJ software, and the particle size was determined using the Zetasizer particle size analyzer. The size of the crystallite increased from 302.94 nm to 680.93 nm, while the temperature was elevated from 600°C to 800°C for 3 h to 4 h. Similarly, as calcination temperatures and duration increased, the average grain size increased from 580.15 nm to 843.19 nm. Meanwhile, as calcination temperatures and duration increased, the average particle size increased from 4168.88 nm to 4295.35 nm. It can be seen that the gap value showed only a very slightly increase with increasing calcination processes in the crystallite, grain, and particle size of kaolin particles. However, this increased sizing can reduce the degree of pozzolanic reactivity of the kaolin particles. © Published under licence by IOP Publishing Ltd.
Institute of Physics
17551307
English
Conference paper

author Shakrani S.A.; Ayob A.; Rahim M.A.A.; Alias S.
spellingShingle Shakrani S.A.; Ayob A.; Rahim M.A.A.; Alias S.
Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
author_facet Shakrani S.A.; Ayob A.; Rahim M.A.A.; Alias S.
author_sort Shakrani S.A.; Ayob A.; Rahim M.A.A.; Alias S.
title Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
title_short Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
title_full Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
title_fullStr Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
title_full_unstemmed Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
title_sort Effect of Calcination Processes on the Crystallite Size, Grain Size and Particle Size of Water-Washed Kaolin Particles
publishDate 2024
container_title IOP Conference Series: Earth and Environmental Science
container_volume 1303
container_issue 1
doi_str_mv 10.1088/1755-1315/1303/1/012006
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188209210&doi=10.1088%2f1755-1315%2f1303%2f1%2f012006&partnerID=40&md5=3d2faf4ba47e8f1c4fbfaddc22ae6b63
description Sustainable kaolin particles can be used as supplementary cementitious materials in the construction industry, helping to achieve the goal of promoting sustainability. To achieve it, kaolin particles must be calcined in order to change into the most reactive form of metakaolin. However, calcination processes can influence the crystallite, grain, and particle size of kaolin, affecting its reactivity degree. In this study, water-washed kaolin particles were calcined by using a general purpose furnace at various calcination processes (temperatures = 600°C, 700°C and 800°C, duration = 3 h and 4 h, and heating rate = 10°C/min). The effects of calcination processes to the crystallite, grain, and particle size of kaolin particles were investigated. The crystallite size was computed by using the Scherrer equation, the grain size was measured by using ImageJ software, and the particle size was determined using the Zetasizer particle size analyzer. The size of the crystallite increased from 302.94 nm to 680.93 nm, while the temperature was elevated from 600°C to 800°C for 3 h to 4 h. Similarly, as calcination temperatures and duration increased, the average grain size increased from 580.15 nm to 843.19 nm. Meanwhile, as calcination temperatures and duration increased, the average particle size increased from 4168.88 nm to 4295.35 nm. It can be seen that the gap value showed only a very slightly increase with increasing calcination processes in the crystallite, grain, and particle size of kaolin particles. However, this increased sizing can reduce the degree of pozzolanic reactivity of the kaolin particles. © Published under licence by IOP Publishing Ltd.
publisher Institute of Physics
issn 17551307
language English
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