Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil

Esters; Furfural; Potassium hydroxide; Transesterification; Bio-energy; Biodiesel production; Methyl esters; Non-edible oil; Optimisations; Process Variables; Rice bran oil; Rice brans; Sterculia foetida; Transesterification process; Biodiesel

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Main Authors: Kusumo F., Mahlia T.M.I., Shamsuddin A.H., Ahmad A.R., Silitonga A.S., Dharma S., Mofijur M., Ideris F., Ong H.C., Sebayang R., Milano J., Hassan M.H., Varman M.
Other Authors: 56611974900
Format: Article
Published: Taylor and Francis Ltd. 2023
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spelling my.uniten.dspace-271652023-05-29T17:40:23Z Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil Kusumo F. Mahlia T.M.I. Shamsuddin A.H. Ahmad A.R. Silitonga A.S. Dharma S. Mofijur M. Ideris F. Ong H.C. Sebayang R. Milano J. Hassan M.H. Varman M. 56611974900 56997615100 57937112600 35589598800 39262559400 57217370281 57204492012 7801415444 55310784800 56370044900 57052617200 9232771700 12345090400 Esters; Furfural; Potassium hydroxide; Transesterification; Bio-energy; Biodiesel production; Methyl esters; Non-edible oil; Optimisations; Process Variables; Rice bran oil; Rice brans; Sterculia foetida; Transesterification process; Biodiesel The present study is to investigate the feasibility of mixed non-edible oils, Sterculia foetida (SFO), and rice bran oil (RBO) for biodiesel production. The transesterification process variables of SFO50RBO50 as the suitable blend were optimised using response surface methodology. The optimum conditions of the transesterification process are as follow; KOH catalyst concentration of 0.7% wt, the ratio of methanol to oil of 42%, the reaction time of 50.64 min, resulted in the methyl ester yield of 98.93%. The result shows that the SF50RB50 methyl ester properties satisfy the biodiesel requirements laid in ASTM D6751 and EN 14214 standards. � 2022 Informa UK Limited, trading as Taylor & Francis Group. Final 2023-05-29T09:40:23Z 2023-05-29T09:40:23Z 2022 Article 10.1080/01430750.2021.1888802 2-s2.0-85133469891 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85133469891&doi=10.1080%2f01430750.2021.1888802&partnerID=40&md5=dee25803567eced57fd890f4a141de6c https://irepository.uniten.edu.my/handle/123456789/27165 43 1 4380 4390 Taylor and Francis Ltd. Scopus
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 Esters; Furfural; Potassium hydroxide; Transesterification; Bio-energy; Biodiesel production; Methyl esters; Non-edible oil; Optimisations; Process Variables; Rice bran oil; Rice brans; Sterculia foetida; Transesterification process; Biodiesel
author2 56611974900
author_facet 56611974900
Kusumo F.
Mahlia T.M.I.
Shamsuddin A.H.
Ahmad A.R.
Silitonga A.S.
Dharma S.
Mofijur M.
Ideris F.
Ong H.C.
Sebayang R.
Milano J.
Hassan M.H.
Varman M.
format Article
author Kusumo F.
Mahlia T.M.I.
Shamsuddin A.H.
Ahmad A.R.
Silitonga A.S.
Dharma S.
Mofijur M.
Ideris F.
Ong H.C.
Sebayang R.
Milano J.
Hassan M.H.
Varman M.
spellingShingle Kusumo F.
Mahlia T.M.I.
Shamsuddin A.H.
Ahmad A.R.
Silitonga A.S.
Dharma S.
Mofijur M.
Ideris F.
Ong H.C.
Sebayang R.
Milano J.
Hassan M.H.
Varman M.
Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil
author_sort Kusumo F.
title Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil
title_short Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil
title_full Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil
title_fullStr Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil
title_full_unstemmed Optimisation of biodiesel production from mixed Sterculia foetida and rice bran oil
title_sort optimisation of biodiesel production from mixed sterculia foetida and rice bran oil
publisher Taylor and Francis Ltd.
publishDate 2023
_version_ 1806428033769275392
score 13.222552