Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal

Recycling or ‘re-generation’ of used fuel oil or commonly known as refining method is deemed to be important and necessary. Available process of refining method for petroleum products are liquefaction, gasification and pyrolysis. Among the process available, pyrolysis shown an impressive performance...

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Main Author: Mohd Zainal, Siti Nurfarhanah
Format: Student Project
Language:English
Published: 2022
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Online Access:https://ir.uitm.edu.my/id/eprint/67434/1/67434.pdf
https://ir.uitm.edu.my/id/eprint/67434/
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spelling my.uitm.ir.674342022-10-28T03:37:52Z https://ir.uitm.edu.my/id/eprint/67434/ Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal Mohd Zainal, Siti Nurfarhanah Chemical engineering Special processes and operations Desulphuration Fuel Recycling or ‘re-generation’ of used fuel oil or commonly known as refining method is deemed to be important and necessary. Available process of refining method for petroleum products are liquefaction, gasification and pyrolysis. Among the process available, pyrolysis shown an impressive performance. Refining does not necessarily able to remove most of harmful contaminants and sulphur content present in used fuel oil. Thus, desulphurization method was introduced. The objective of this review study is to do a comparison on the different method used for desulphurization of pyrolysis oil from different sources including from waste engine (WE), waste tires (WT) and plastic waste (WP) oils and to analyse on the influence of parameter control such as temperature, reaction time and amount of acid catalyst/catalyst used on the sulphur removal efficiency based on different literature. Several articles were used as the main reference to do comparison on the different sources of pyrolytic oil. It has been found that, adsorptive desulphurization method was recorded highest on sulphur removal for three types of waste pyrolytic oil. In conclusion, for waste engine oil, the highest sulphur removal recorded were at 87.5%, for waste tire oil the highest sulphur removal is 89.4%. Meanwhile for waste plastic oil, the highest sulphur removal was at 98%. Moreover, the optimum temperature obtained was at (350-3800C), optimum reaction time (50-250 minutes) and optimum amount of acid/acid catalyst acquired was at (0.02-1.0g). 2022 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/67434/1/67434.pdf Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal. (2022) [Student Project] <http://terminalib.uitm.edu.my/67434.pdf> (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Chemical engineering
Special processes and operations
Desulphuration
Fuel
spellingShingle Chemical engineering
Special processes and operations
Desulphuration
Fuel
Mohd Zainal, Siti Nurfarhanah
Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal
description Recycling or ‘re-generation’ of used fuel oil or commonly known as refining method is deemed to be important and necessary. Available process of refining method for petroleum products are liquefaction, gasification and pyrolysis. Among the process available, pyrolysis shown an impressive performance. Refining does not necessarily able to remove most of harmful contaminants and sulphur content present in used fuel oil. Thus, desulphurization method was introduced. The objective of this review study is to do a comparison on the different method used for desulphurization of pyrolysis oil from different sources including from waste engine (WE), waste tires (WT) and plastic waste (WP) oils and to analyse on the influence of parameter control such as temperature, reaction time and amount of acid catalyst/catalyst used on the sulphur removal efficiency based on different literature. Several articles were used as the main reference to do comparison on the different sources of pyrolytic oil. It has been found that, adsorptive desulphurization method was recorded highest on sulphur removal for three types of waste pyrolytic oil. In conclusion, for waste engine oil, the highest sulphur removal recorded were at 87.5%, for waste tire oil the highest sulphur removal is 89.4%. Meanwhile for waste plastic oil, the highest sulphur removal was at 98%. Moreover, the optimum temperature obtained was at (350-3800C), optimum reaction time (50-250 minutes) and optimum amount of acid/acid catalyst acquired was at (0.02-1.0g).
format Student Project
author Mohd Zainal, Siti Nurfarhanah
author_facet Mohd Zainal, Siti Nurfarhanah
author_sort Mohd Zainal, Siti Nurfarhanah
title Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal
title_short Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal
title_full Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal
title_fullStr Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal
title_full_unstemmed Refining of industrial spent fuel oil by using desulfurization method: a review / Siti Nurfarhanah Mohd Zainal
title_sort refining of industrial spent fuel oil by using desulfurization method: a review / siti nurfarhanah mohd zainal
publishDate 2022
url https://ir.uitm.edu.my/id/eprint/67434/1/67434.pdf
https://ir.uitm.edu.my/id/eprint/67434/
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