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An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell

Torrefaction process of biomass material is essential in converting them into biofuel with improved calorific value and physical strength. However, the production of torrefied biomass is loose, powdery, and nonuniform. One method of upgrading this material to improve their handling and combustion pr...

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Autores principales: Hamid, M. Fadzli, Idroas, M. Yusof, Ishak, M. Zulfikar, Zainal Alauddin, Z. Alimuddin, Miskam, M. Azman, Abdullah, M. Khalil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4932184/
https://www.ncbi.nlm.nih.gov/pubmed/27419127
http://dx.doi.org/10.1155/2016/1679734
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author Hamid, M. Fadzli
Idroas, M. Yusof
Ishak, M. Zulfikar
Zainal Alauddin, Z. Alimuddin
Miskam, M. Azman
Abdullah, M. Khalil
author_facet Hamid, M. Fadzli
Idroas, M. Yusof
Ishak, M. Zulfikar
Zainal Alauddin, Z. Alimuddin
Miskam, M. Azman
Abdullah, M. Khalil
author_sort Hamid, M. Fadzli
collection PubMed
description Torrefaction process of biomass material is essential in converting them into biofuel with improved calorific value and physical strength. However, the production of torrefied biomass is loose, powdery, and nonuniform. One method of upgrading this material to improve their handling and combustion properties is by densification into briquettes of higher density than the original bulk density of the material. The effects of critical parameters of briquetting process that includes the type of biomass material used for torrefaction and briquetting, densification temperature, and composition of binder for torrefied biomass are studied and characterized. Starch is used as a binder in the study. The results showed that the briquette of torrefied rubber seed kernel (RSK) is better than torrefied palm oil shell (POS) in both calorific value and compressive strength. The best quality of briquettes is yielded from torrefied RSK at the ambient temperature of briquetting process with the composition of 60% water and 5% binder. The maximum compressive load for the briquettes of torrefied RSK is 141 N and the calorific value is 16 MJ/kg. Based on the economic evaluation analysis, the return of investment (ROI) for the mass production of both RSK and POS briquettes is estimated in 2-year period and the annual profit after payback was approximately 107,428.6 USD.
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spelling pubmed-49321842016-07-14 An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell Hamid, M. Fadzli Idroas, M. Yusof Ishak, M. Zulfikar Zainal Alauddin, Z. Alimuddin Miskam, M. Azman Abdullah, M. Khalil Biomed Res Int Research Article Torrefaction process of biomass material is essential in converting them into biofuel with improved calorific value and physical strength. However, the production of torrefied biomass is loose, powdery, and nonuniform. One method of upgrading this material to improve their handling and combustion properties is by densification into briquettes of higher density than the original bulk density of the material. The effects of critical parameters of briquetting process that includes the type of biomass material used for torrefaction and briquetting, densification temperature, and composition of binder for torrefied biomass are studied and characterized. Starch is used as a binder in the study. The results showed that the briquette of torrefied rubber seed kernel (RSK) is better than torrefied palm oil shell (POS) in both calorific value and compressive strength. The best quality of briquettes is yielded from torrefied RSK at the ambient temperature of briquetting process with the composition of 60% water and 5% binder. The maximum compressive load for the briquettes of torrefied RSK is 141 N and the calorific value is 16 MJ/kg. Based on the economic evaluation analysis, the return of investment (ROI) for the mass production of both RSK and POS briquettes is estimated in 2-year period and the annual profit after payback was approximately 107,428.6 USD. Hindawi Publishing Corporation 2016 2016-06-21 /pmc/articles/PMC4932184/ /pubmed/27419127 http://dx.doi.org/10.1155/2016/1679734 Text en Copyright © 2016 M. Fadzli Hamid et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hamid, M. Fadzli
Idroas, M. Yusof
Ishak, M. Zulfikar
Zainal Alauddin, Z. Alimuddin
Miskam, M. Azman
Abdullah, M. Khalil
An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell
title An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell
title_full An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell
title_fullStr An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell
title_full_unstemmed An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell
title_short An Experimental Study of Briquetting Process of Torrefied Rubber Seed Kernel and Palm Oil Shell
title_sort experimental study of briquetting process of torrefied rubber seed kernel and palm oil shell
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4932184/
https://www.ncbi.nlm.nih.gov/pubmed/27419127
http://dx.doi.org/10.1155/2016/1679734
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