Upgrading biomethane for low carbon fuel

Biomethane is a result of the process removing of the CO2 in the biogas to get the high purity of methane content up to 97% using the adsorption process. This technology could be potential to use in the fuel production as nowadays the production of fuel was slowly depleted. Biomethane is one of the...

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Main Authors: Mel, Maizirwan, Mohd Ghauth, Nor Farhana, Ithnin, Mohamad Hafiz, Mohamad Fozi, Aidil Azim, Salleh, Md Noor, Ihsan, Sany Izan, Hassan, Md Sadikin
Format: Proceeding Paper
Language:English
Published: Ministry of Higher Education Malaysia (MOHE) 2017
Subjects:
Online Access:http://irep.iium.edu.my/61349/
http://irep.iium.edu.my/61349/12/61349_Upgrading%20biomethane%20for%20low%20carbon%20fuel_text_complete.pdf
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author Mel, Maizirwan
Mohd Ghauth, Nor Farhana
Ithnin, Mohamad Hafiz
Mohamad Fozi, Aidil Azim
Salleh, Md Noor
Ihsan, Sany Izan
Hassan, Md Sadikin
author_facet Mel, Maizirwan
Mohd Ghauth, Nor Farhana
Ithnin, Mohamad Hafiz
Mohamad Fozi, Aidil Azim
Salleh, Md Noor
Ihsan, Sany Izan
Hassan, Md Sadikin
author_sort Mel, Maizirwan
building IIUM Repository
collection Online Access
description Biomethane is a result of the process removing of the CO2 in the biogas to get the high purity of methane content up to 97% using the adsorption process. This technology could be potential to use in the fuel production as nowadays the production of fuel was slowly depleted. Biomethane is one of the sources that closely resembling the natural gas to act as a source of energy to rural areas and has been researched for many years due to their potential as renewable energy for future. There are several methods that have been developed to increase the purity of biomethane such as chemical/physical absorption, water scrubbing, membrane separation and pressure swing adsorption (PSA). The demand of the technologies for biomethane upgrading in industries keeps increasing by year as used as vehicle fuel. The PSA method has been focused in this project. The method was used to increase the content of biomethane to reduce the amount of carbon dioxide in the gases and to eliminate some impurities. The PSA system basically use the application of the absorbent such as activated carbon and molecular sieve at high pressure condition in adsorption column. It is proved that the PSA method is a good method to separate the CO2 from the biogas to get high content of methane (over 90%) using selected adsorbent. By using the upgrading technologies process will give the opportunities to develop high quality production of biomethane with environmentally friendly and lower operational cost.
first_indexed 2025-11-14T16:56:37Z
format Proceeding Paper
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institution International Islamic University Malaysia
institution_category Local University
language English
last_indexed 2025-11-14T16:56:37Z
publishDate 2017
publisher Ministry of Higher Education Malaysia (MOHE)
recordtype eprints
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spelling iium-613492018-01-17T07:55:56Z http://irep.iium.edu.my/61349/ Upgrading biomethane for low carbon fuel Mel, Maizirwan Mohd Ghauth, Nor Farhana Ithnin, Mohamad Hafiz Mohamad Fozi, Aidil Azim Salleh, Md Noor Ihsan, Sany Izan Hassan, Md Sadikin TP155 Chemical engineering TP248.13 Biotechnology Biomethane is a result of the process removing of the CO2 in the biogas to get the high purity of methane content up to 97% using the adsorption process. This technology could be potential to use in the fuel production as nowadays the production of fuel was slowly depleted. Biomethane is one of the sources that closely resembling the natural gas to act as a source of energy to rural areas and has been researched for many years due to their potential as renewable energy for future. There are several methods that have been developed to increase the purity of biomethane such as chemical/physical absorption, water scrubbing, membrane separation and pressure swing adsorption (PSA). The demand of the technologies for biomethane upgrading in industries keeps increasing by year as used as vehicle fuel. The PSA method has been focused in this project. The method was used to increase the content of biomethane to reduce the amount of carbon dioxide in the gases and to eliminate some impurities. The PSA system basically use the application of the absorbent such as activated carbon and molecular sieve at high pressure condition in adsorption column. It is proved that the PSA method is a good method to separate the CO2 from the biogas to get high content of methane (over 90%) using selected adsorbent. By using the upgrading technologies process will give the opportunities to develop high quality production of biomethane with environmentally friendly and lower operational cost. Ministry of Higher Education Malaysia (MOHE) 2017-12-11 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/61349/12/61349_Upgrading%20biomethane%20for%20low%20carbon%20fuel_text_complete.pdf Mel, Maizirwan and Mohd Ghauth, Nor Farhana and Ithnin, Mohamad Hafiz and Mohamad Fozi, Aidil Azim and Salleh, Md Noor and Ihsan, Sany Izan and Hassan, Md Sadikin (2017) Upgrading biomethane for low carbon fuel. In: ''4th NATIONAL CONFERENCE ON KNOWLEDGE TRANSFER (NCKT'17)'' “Knowledge Translation for National Transformation”, 11th - 12th December 2017, EDC Hotel & Resorts, UUM Sintok, Kedah. (Unpublished) http://www.ckt.usm.my/
spellingShingle TP155 Chemical engineering
TP248.13 Biotechnology
Mel, Maizirwan
Mohd Ghauth, Nor Farhana
Ithnin, Mohamad Hafiz
Mohamad Fozi, Aidil Azim
Salleh, Md Noor
Ihsan, Sany Izan
Hassan, Md Sadikin
Upgrading biomethane for low carbon fuel
title Upgrading biomethane for low carbon fuel
title_full Upgrading biomethane for low carbon fuel
title_fullStr Upgrading biomethane for low carbon fuel
title_full_unstemmed Upgrading biomethane for low carbon fuel
title_short Upgrading biomethane for low carbon fuel
title_sort upgrading biomethane for low carbon fuel
topic TP155 Chemical engineering
TP248.13 Biotechnology
url http://irep.iium.edu.my/61349/
http://irep.iium.edu.my/61349/
http://irep.iium.edu.my/61349/12/61349_Upgrading%20biomethane%20for%20low%20carbon%20fuel_text_complete.pdf