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Investigation of the Effect of Thermal Shields on the Calcination of Petroleum Coke in Rotary Disc Kilns

Saki, A; Mehdipour, R; Ozgoli, H A; Baniamerian, Z

Investigation of the Effect of Thermal Shields on the Calcination of Petroleum Coke in Rotary Disc Kilns Thumbnail


Authors

A Saki

H A Ozgoli

Dr ZAHRA BANIAMERIAN Zahra.Baniamerian1@nottingham.ac.uk
Research Fellow in Advanced Thermo-Mechanical Energy Storage



Abstract

Due to various impurities, impure petroleum coke obtained during extraction processes is unsuitable for optimal use. The calcination process, commonly called coke baking, has gained considerable attention for its ability to purify coke and remove waste materials. Various devices and methods are available for coke calcination, among which the rotary disc kiln has been investigated in this study. This research aims to propose a simple numerical model for simulating heat transfer processes within a rotary disc kiln. It was observed that during the layer-by-layer baking of coke, the intense heat flux of the gaseous phase inside the kiln leads to a rapid temperature rise in the first and second coke layers. To address this, a novel thermal shield was introduced in this study to reduce the heat flux reaching the coke bed in the initial layers. Results demonstrated that applying a thermal shield reduced the coke bed temperature in the first and second layers by up to 8% and 52%, respectively, while maintaining the overall calcination process. Increasing the shield's thickness by 20% decreased the temperatures by 7% and 17% in these layers. The model also achieved an accuracy of less than 2% error compared to reference data, confirming its reliability. Additionally, using the shield reduced the refractory lining temperature by up to 7.74%, improving kiln durability and energy efficiency.

Citation

Saki, A., Mehdipour, R., Ozgoli, H. A., & Baniamerian, Z. (2025). Investigation of the Effect of Thermal Shields on the Calcination of Petroleum Coke in Rotary Disc Kilns. Contributions of Science and Technology for Engineering, 1(4), 1-15

Journal Article Type Article
Acceptance Date Dec 24, 2024
Online Publication Date Mar 5, 2025
Publication Date 2025-03
Deposit Date May 14, 2025
Publicly Available Date May 14, 2025
Journal Contributions of Science and Technology for Engineering
Electronic ISSN 3060-6578
Peer Reviewed Peer Reviewed
Volume 1
Issue 4
Pages 1-15
Keywords Petroleum Coke; Coke Calcination; Rotary Disc Kiln; Thermal Shield; Heat Transfer; Numerical Modeling
Public URL https://nottingham-repository.worktribe.com/output/48986680
Publisher URL https://cste.journals.umz.ac.ir/article_5243.html

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Publisher Licence URL
https://creativecommons.org/licenses/by/4.0/

Copyright Statement
© 2025 by the authors. Licensee CSTE, Babolsar, Mazandaran. This article is an open access article distributed under the terms and
conditions of the Creative Commons Attribution (CC-BY) license (https://creativecommons.org/licenses/by/4.0/deed.en)





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