Study on the performance of palm methyl ester in a combustion system

Nowadays, the world is adversely affected by the rapid growth of various industries which use fossil diesel fuel as a main source to power their respective industries. As such, this phenomenon has contributed to environmental pollution apart from these natural resources are increasingly reduced thus...

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Main Author: Musthafa, Anas Basri
Format: Thesis
Published: 2015
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Online Access:http://eprints.utm.my/id/eprint/48697/
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spelling my.utm.486972020-06-17T04:09:47Z http://eprints.utm.my/id/eprint/48697/ Study on the performance of palm methyl ester in a combustion system Musthafa, Anas Basri QD Chemistry Nowadays, the world is adversely affected by the rapid growth of various industries which use fossil diesel fuel as a main source to power their respective industries. As such, this phenomenon has contributed to environmental pollution apart from these natural resources are increasingly reduced thus resulting in price increments. However, biodiesel fuel has recognized by many researcher as a potential replacement of fossil fuel. A study was conducted to investigate the performance of alternative energy sources that are environmentally friendly and renewable such as palm biodiesel. Therefore, this project presents an investigation on the combustion performance of Palm Methyl Ester (PME) which also known as Palm Biodiesel in an oil burner system. Several Carotino’s palm biodiesel blends (B10, B20, and B40) also have been made by blended with Conventional Diesel Fuel (CDF). Examination of the fuel properties for each blends including CDF and PME have been carried out. The performance of the fuels have been studied based on its wall temperature profile and gas emissions generated such as nitrogen oxides (NOx) and carbon monoxide (CO). The test fuels have been burned in the oil burner combustion chamber at different equivalent ratios and using three different oil burner nozzles (1.25, 1.50 and 1.75 USgal/h). From the test, PME is the lowest emission production compared to CDF but generate a low temperature. For example, at stoichiometric mixture with nozzle 1.25 USgal/h, NOx and CO generated by PME decreased of 27% and 30% respectively compared to CDF. PME has recorded about 12% drop in an average temperature compared to the CDF at the same condition. The higher fuel flow rate used, results more heat and emission generated. The results indicated may be benefits to using biodiesel in industrial processes due to less pollution production. 2015 Thesis NonPeerReviewed Musthafa, Anas Basri (2015) Study on the performance of palm methyl ester in a combustion system. Masters thesis, Universiti Teknologi Malaysia, Faculty of Mechanical Engineering. http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:82160?queryType=vitalDismax&query=Study+on+the+performance+of+palm+methyl+ester+in+a+combustion+system&public=true
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QD Chemistry
spellingShingle QD Chemistry
Musthafa, Anas Basri
Study on the performance of palm methyl ester in a combustion system
description Nowadays, the world is adversely affected by the rapid growth of various industries which use fossil diesel fuel as a main source to power their respective industries. As such, this phenomenon has contributed to environmental pollution apart from these natural resources are increasingly reduced thus resulting in price increments. However, biodiesel fuel has recognized by many researcher as a potential replacement of fossil fuel. A study was conducted to investigate the performance of alternative energy sources that are environmentally friendly and renewable such as palm biodiesel. Therefore, this project presents an investigation on the combustion performance of Palm Methyl Ester (PME) which also known as Palm Biodiesel in an oil burner system. Several Carotino’s palm biodiesel blends (B10, B20, and B40) also have been made by blended with Conventional Diesel Fuel (CDF). Examination of the fuel properties for each blends including CDF and PME have been carried out. The performance of the fuels have been studied based on its wall temperature profile and gas emissions generated such as nitrogen oxides (NOx) and carbon monoxide (CO). The test fuels have been burned in the oil burner combustion chamber at different equivalent ratios and using three different oil burner nozzles (1.25, 1.50 and 1.75 USgal/h). From the test, PME is the lowest emission production compared to CDF but generate a low temperature. For example, at stoichiometric mixture with nozzle 1.25 USgal/h, NOx and CO generated by PME decreased of 27% and 30% respectively compared to CDF. PME has recorded about 12% drop in an average temperature compared to the CDF at the same condition. The higher fuel flow rate used, results more heat and emission generated. The results indicated may be benefits to using biodiesel in industrial processes due to less pollution production.
format Thesis
author Musthafa, Anas Basri
author_facet Musthafa, Anas Basri
author_sort Musthafa, Anas Basri
title Study on the performance of palm methyl ester in a combustion system
title_short Study on the performance of palm methyl ester in a combustion system
title_full Study on the performance of palm methyl ester in a combustion system
title_fullStr Study on the performance of palm methyl ester in a combustion system
title_full_unstemmed Study on the performance of palm methyl ester in a combustion system
title_sort study on the performance of palm methyl ester in a combustion system
publishDate 2015
url http://eprints.utm.my/id/eprint/48697/
http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:82160?queryType=vitalDismax&query=Study+on+the+performance+of+palm+methyl+ester+in+a+combustion+system&public=true
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score 13.160551