In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent

The conventional process for production of biodiesel often requires large amounts of energy and the use of toxic and flammable solvents like hexane. The low miscibility of oil in methanol reduces the contact between the reactants and slows down the overall reaction. In order to address these problem...

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Main Author: Khang, Dinh Sy
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Language:English
Published: Animo Repository 2012
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Online Access:https://animorepository.dlsu.edu.ph/etd_masteral/6903
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etd_masteral-136962023-11-07T02:12:57Z In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent Khang, Dinh Sy The conventional process for production of biodiesel often requires large amounts of energy and the use of toxic and flammable solvents like hexane. The low miscibility of oil in methanol reduces the contact between the reactants and slows down the overall reaction. In order to address these problems, this study applied an in situ process to transesterify the coconut oil in copra directly, without prior extraction of the oil, using H2SO4 catalyst and methanol and THF as co-solvents. Agitation and heating was continued until the system reached equilibrium, as indicated by successively constant readings of the refractive index. Gas chromatographic analysis was used to determine glycerol, mono-, di- and triglycerides in the upper phase. These results were used to determine yield. The results show that the in situ process produced biodiesel from copra can have a yield as high as 96.72%. The FAME yield increased significantly when the ratio of THF/methanol increased but only up to a THF/methanol ratio of 0.4. Beyond this ratio, there were no further increases in yield. The yield increased considerably from 87.2% to 96.72% when the temperature was changed from 400C to 600C. The yield was also dependent on the ratio of methanol to copra. The yield observed at a methanol:copra ratio of 150ml/100g was 93.81% whereas the yield observed at a methanol:copra ratio of 200ml/100g was 95.86%. However, there was no further change observed when the ratio is over 200ml methanol/100g copra. The amount of solvent bound on the marc decreased when the reaction temperature was change from 400C to 600C. 2012-08-26T07:00:00Z text https://animorepository.dlsu.edu.ph/etd_masteral/6903 Master's Theses English Animo Repository Transesterification Energy crops Esters Solvents Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Transesterification
Energy crops
Esters
Solvents
Chemical Engineering
spellingShingle Transesterification
Energy crops
Esters
Solvents
Chemical Engineering
Khang, Dinh Sy
In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
description The conventional process for production of biodiesel often requires large amounts of energy and the use of toxic and flammable solvents like hexane. The low miscibility of oil in methanol reduces the contact between the reactants and slows down the overall reaction. In order to address these problems, this study applied an in situ process to transesterify the coconut oil in copra directly, without prior extraction of the oil, using H2SO4 catalyst and methanol and THF as co-solvents. Agitation and heating was continued until the system reached equilibrium, as indicated by successively constant readings of the refractive index. Gas chromatographic analysis was used to determine glycerol, mono-, di- and triglycerides in the upper phase. These results were used to determine yield. The results show that the in situ process produced biodiesel from copra can have a yield as high as 96.72%. The FAME yield increased significantly when the ratio of THF/methanol increased but only up to a THF/methanol ratio of 0.4. Beyond this ratio, there were no further increases in yield. The yield increased considerably from 87.2% to 96.72% when the temperature was changed from 400C to 600C. The yield was also dependent on the ratio of methanol to copra. The yield observed at a methanol:copra ratio of 150ml/100g was 93.81% whereas the yield observed at a methanol:copra ratio of 200ml/100g was 95.86%. However, there was no further change observed when the ratio is over 200ml methanol/100g copra. The amount of solvent bound on the marc decreased when the reaction temperature was change from 400C to 600C.
format text
author Khang, Dinh Sy
author_facet Khang, Dinh Sy
author_sort Khang, Dinh Sy
title In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
title_short In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
title_full In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
title_fullStr In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
title_full_unstemmed In situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
title_sort in situ production of fatty acid methyl esters from copra using methanol and tetrahydrofuran as co-solvent
publisher Animo Repository
publishDate 2012
url https://animorepository.dlsu.edu.ph/etd_masteral/6903
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