Reduction of iron ore/empty fruit bunch char briquette composite

Utilization of Malaysian low grade iron ore is an attractive option of domestic iron resource; however, extra energy consumption is required and thus contributes to greenhouse gases. In this study, incorporation of low grade iron ore deposits with oil palm waste as substitution of coke was studied...

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Main Authors: Yunus, Nurul Azhani, Ani, Mohd Hanafi, Mohd. Salleh, Hamzah, Jusoh @ Abd Rashid, Rusila Zamani, Akiyama, Tomohiro, Purwanto, Hadi
Format: Article
Language:English
Published: The Iron and Steel Institute of Japan 2013
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Online Access:http://irep.iium.edu.my/32351/1/isij-nurl_azani.pdf
http://irep.iium.edu.my/32351/
https://www.isij.or.jp/journal/isijinternational/?lang=english
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Institution: Universiti Islam Antarabangsa Malaysia
Language: English
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spelling my.iium.irep.323512021-07-14T09:29:57Z http://irep.iium.edu.my/32351/ Reduction of iron ore/empty fruit bunch char briquette composite Yunus, Nurul Azhani Ani, Mohd Hanafi Mohd. Salleh, Hamzah Jusoh @ Abd Rashid, Rusila Zamani Akiyama, Tomohiro Purwanto, Hadi TN600 Metallurgy Utilization of Malaysian low grade iron ore is an attractive option of domestic iron resource; however, extra energy consumption is required and thus contributes to greenhouse gases. In this study, incorporation of low grade iron ore deposits with oil palm waste as substitution of coke was studied. Briquette composites of iron ore and char derived from oil palm empty fruit bunch (EFB) pyrolysis were produced with minute amount of distilled water. Reduction processes were carried out at 873 K to 1 173 K under argon atmosphere in an electric furnace for briquette composites with different mass ratio of ore/char. For kinetic analysis, briquette with 8:2 ore/char ratio was used and reduction was carried out by varying the residence time. The percentage of reduction was estimated by oxygen removal and considering the weight loss. The structural and chemical changes of raw materials and briquettes were characterized using XRD, TG/DTA, and XRF. The results indicate that increasing in temperature, time and EFB char content in the briquette will increase the percentage of reduction. XRD and XRF results show that the original iron oxide hydrate has been transformed into partial wustite by several stages and the iron content increased up to 62.7 wt% for 6:4 ore/char ratio briquette. Kinetic results suggest that reduction of iron is controlled by gasification of carbon and the activation energy is 43.21 kJ. EFB char appears to be a promising energy source for replacing part of coal consumption in iron making, and reducing CO2 emission. The Iron and Steel Institute of Japan 2013-10 Article PeerReviewed application/pdf en http://irep.iium.edu.my/32351/1/isij-nurl_azani.pdf Yunus, Nurul Azhani and Ani, Mohd Hanafi and Mohd. Salleh, Hamzah and Jusoh @ Abd Rashid, Rusila Zamani and Akiyama, Tomohiro and Purwanto, Hadi (2013) Reduction of iron ore/empty fruit bunch char briquette composite. ISIJ International, 53 (10). pp. 1749-1755. ISSN 1347-5460 (O), 0915-1559 (P) https://www.isij.or.jp/journal/isijinternational/?lang=english 10.2355/isijinternational.53.1749
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TN600 Metallurgy
spellingShingle TN600 Metallurgy
Yunus, Nurul Azhani
Ani, Mohd Hanafi
Mohd. Salleh, Hamzah
Jusoh @ Abd Rashid, Rusila Zamani
Akiyama, Tomohiro
Purwanto, Hadi
Reduction of iron ore/empty fruit bunch char briquette composite
description Utilization of Malaysian low grade iron ore is an attractive option of domestic iron resource; however, extra energy consumption is required and thus contributes to greenhouse gases. In this study, incorporation of low grade iron ore deposits with oil palm waste as substitution of coke was studied. Briquette composites of iron ore and char derived from oil palm empty fruit bunch (EFB) pyrolysis were produced with minute amount of distilled water. Reduction processes were carried out at 873 K to 1 173 K under argon atmosphere in an electric furnace for briquette composites with different mass ratio of ore/char. For kinetic analysis, briquette with 8:2 ore/char ratio was used and reduction was carried out by varying the residence time. The percentage of reduction was estimated by oxygen removal and considering the weight loss. The structural and chemical changes of raw materials and briquettes were characterized using XRD, TG/DTA, and XRF. The results indicate that increasing in temperature, time and EFB char content in the briquette will increase the percentage of reduction. XRD and XRF results show that the original iron oxide hydrate has been transformed into partial wustite by several stages and the iron content increased up to 62.7 wt% for 6:4 ore/char ratio briquette. Kinetic results suggest that reduction of iron is controlled by gasification of carbon and the activation energy is 43.21 kJ. EFB char appears to be a promising energy source for replacing part of coal consumption in iron making, and reducing CO2 emission.
format Article
author Yunus, Nurul Azhani
Ani, Mohd Hanafi
Mohd. Salleh, Hamzah
Jusoh @ Abd Rashid, Rusila Zamani
Akiyama, Tomohiro
Purwanto, Hadi
author_facet Yunus, Nurul Azhani
Ani, Mohd Hanafi
Mohd. Salleh, Hamzah
Jusoh @ Abd Rashid, Rusila Zamani
Akiyama, Tomohiro
Purwanto, Hadi
author_sort Yunus, Nurul Azhani
title Reduction of iron ore/empty fruit bunch char briquette composite
title_short Reduction of iron ore/empty fruit bunch char briquette composite
title_full Reduction of iron ore/empty fruit bunch char briquette composite
title_fullStr Reduction of iron ore/empty fruit bunch char briquette composite
title_full_unstemmed Reduction of iron ore/empty fruit bunch char briquette composite
title_sort reduction of iron ore/empty fruit bunch char briquette composite
publisher The Iron and Steel Institute of Japan
publishDate 2013
url http://irep.iium.edu.my/32351/1/isij-nurl_azani.pdf
http://irep.iium.edu.my/32351/
https://www.isij.or.jp/journal/isijinternational/?lang=english
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