The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits

Nowadays, engine problems such as higher NOx, increase in smoke content and low brake power output due to biofuel fueled engine have been reduced by several improvements by using additives or modifications on engine itself. This paper presents a type of compositions and proper combination of selecte...

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Main Authors: Husnawan, M., Masjuki, H.H., Mahlia, T.M.I., Saifullah, M.G., Kalam, M.A.
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Published: 2017
Online Access:http://dspace.uniten.edu.my/jspui/handle/123456789/6234
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spelling my.uniten.dspace-62342017-12-08T09:12:17Z The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits Husnawan, M. Masjuki, H.H. Mahlia, T.M.I. Saifullah, M.G. Kalam, M.A. Nowadays, engine problems such as higher NOx, increase in smoke content and low brake power output due to biofuel fueled engine have been reduced by several improvements by using additives or modifications on engine itself. This paper presents a type of compositions and proper combination of selected chemical components which may be used in palm olein-diesel blends namely "Envo-Diesel". The blended component was designed as an additive package which was blended with diesel-biofuel at 99:1 up to 95:5 percent ratios. Blended fuels with additive have been used in the single cylinder engine which operated under 2000 rpm for 100 hours. Engine performance and emissions tests were conducted as well as engine deposit analysis was done after 100 hours engine operation time. The result was found that by using combined additive engine fuel consumption was decreased about 5%, NOx and SO x emission also reduced about 10% and carbon deposit was found less compared to other fuels especially for higher percentage of additive. Other results such as engine power and CO emission were found quite similar with 100% diesel fuel. These phenomena was shown that by using selected additive in certain amount found to be suitable to reduce diesel engine consumption and exhaust emissions as well as minimizing carbon deposit. Copyright © 2009 SAE International. 2017-12-08T09:12:17Z 2017-12-08T09:12:17Z 2009 http://dspace.uniten.edu.my/jspui/handle/123456789/6234
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Nowadays, engine problems such as higher NOx, increase in smoke content and low brake power output due to biofuel fueled engine have been reduced by several improvements by using additives or modifications on engine itself. This paper presents a type of compositions and proper combination of selected chemical components which may be used in palm olein-diesel blends namely "Envo-Diesel". The blended component was designed as an additive package which was blended with diesel-biofuel at 99:1 up to 95:5 percent ratios. Blended fuels with additive have been used in the single cylinder engine which operated under 2000 rpm for 100 hours. Engine performance and emissions tests were conducted as well as engine deposit analysis was done after 100 hours engine operation time. The result was found that by using combined additive engine fuel consumption was decreased about 5%, NOx and SO x emission also reduced about 10% and carbon deposit was found less compared to other fuels especially for higher percentage of additive. Other results such as engine power and CO emission were found quite similar with 100% diesel fuel. These phenomena was shown that by using selected additive in certain amount found to be suitable to reduce diesel engine consumption and exhaust emissions as well as minimizing carbon deposit. Copyright © 2009 SAE International.
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author Husnawan, M.
Masjuki, H.H.
Mahlia, T.M.I.
Saifullah, M.G.
Kalam, M.A.
spellingShingle Husnawan, M.
Masjuki, H.H.
Mahlia, T.M.I.
Saifullah, M.G.
Kalam, M.A.
The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits
author_facet Husnawan, M.
Masjuki, H.H.
Mahlia, T.M.I.
Saifullah, M.G.
Kalam, M.A.
author_sort Husnawan, M.
title The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits
title_short The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits
title_full The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits
title_fullStr The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits
title_full_unstemmed The use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce C.I. engine gaseous emissions and carbon deposits
title_sort use of dihydroxy fatty acid and palm-based polyol as selected components of envo-diesel fuel blends to reduce c.i. engine gaseous emissions and carbon deposits
publishDate 2017
url http://dspace.uniten.edu.my/jspui/handle/123456789/6234
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score 13.222552