dc.contributor.author |
Naidoo, R
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|
dc.contributor.author |
Sithole, Bishop B
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|
dc.contributor.author |
Obwaka, E
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|
dc.date.accessioned |
2016-07-20T11:07:54Z |
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dc.date.available |
2016-07-20T11:07:54Z |
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dc.date.issued |
2016-03 |
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dc.identifier.citation |
Naidoo, R., Sithole, B.B. and Obwaka, E. 2016. Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil. Journal of Scientific & Industrial Research, 75(3), 188-193 |
en_US |
dc.identifier.issn |
0022-4456 |
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dc.identifier.uri |
http://nopr.niscair.res.in/handle/123456789/33830
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dc.identifier.uri |
http://hdl.handle.net/10204/8664
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dc.description |
Copyright: 2016 National Institute of Science Communication. Due to copyright restrictions, the attached PDF file only contains the abstract of the full text item. For access to the full text item, please consult the publisher's website. The definitive version of the work is published in Journal of Scientific & Industrial Research, 75(3), 188-193 |
en_US |
dc.description.abstract |
The report focuses on optimisation of alkali catalysis as a process for producing biodiesel from waste cooking oils. Biodiesel production parameters that were optimised were methanol to oil ratio, catalyst concentration, reaction temperature, and reaction time. A statistical experimental design was conducted using the central composite design method and surface methodology, and the results obtained were analysed using a statistical software package to predict the optimal yields and parameters for the process. The predictions were analysed and the most suitable parameters for biodiesel production were selected. From the results the optimum parameters for biodiesel production were a reaction temperature of 68.4oC, a reaction time of 1.9 hours, a catalyst concentration of 0.75 wt % potassium hydroxide, and a 0.3:1 methanol to oil weight ratio. The optimum yield of biodiesel from these optimum parameters was predicted to be 98.5%. Thus, alkali catatlysis was determined to be a suitable process for production of biodiesel from waste cooking oil. |
en_US |
dc.language.iso |
en |
en_US |
dc.publisher |
National Institute of Science Communication |
en_US |
dc.relation.ispartofseries |
Workflow;17115 |
|
dc.subject |
Biodiesel |
en_US |
dc.subject |
Waste oil |
en_US |
dc.subject |
Catalysis |
en_US |
dc.subject |
Optimisation |
en_US |
dc.title |
Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil |
en_US |
dc.type |
Article |
en_US |
dc.identifier.apacitation |
Naidoo, R., Sithole, B. B., & Obwaka, E. (2016). Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil. http://hdl.handle.net/10204/8664 |
en_ZA |
dc.identifier.chicagocitation |
Naidoo, R, Bishop B Sithole, and E Obwaka "Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil." (2016) http://hdl.handle.net/10204/8664 |
en_ZA |
dc.identifier.vancouvercitation |
Naidoo R, Sithole BB, Obwaka E. Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil. 2016; http://hdl.handle.net/10204/8664. |
en_ZA |
dc.identifier.ris |
TY - Article
AU - Naidoo, R
AU - Sithole, Bishop B
AU - Obwaka, E
AB - The report focuses on optimisation of alkali catalysis as a process for producing biodiesel from waste cooking oils. Biodiesel production parameters that were optimised were methanol to oil ratio, catalyst concentration, reaction temperature, and reaction time. A statistical experimental design was conducted using the central composite design method and surface methodology, and the results obtained were analysed using a statistical software package to predict the optimal yields and parameters for the process. The predictions were analysed and the most suitable parameters for biodiesel production were selected. From the results the optimum parameters for biodiesel production were a reaction temperature of 68.4oC, a reaction time of 1.9 hours, a catalyst concentration of 0.75 wt % potassium hydroxide, and a 0.3:1 methanol to oil weight ratio. The optimum yield of biodiesel from these optimum parameters was predicted to be 98.5%. Thus, alkali catatlysis was determined to be a suitable process for production of biodiesel from waste cooking oil.
DA - 2016-03
DB - ResearchSpace
DP - CSIR
KW - Biodiesel
KW - Waste oil
KW - Catalysis
KW - Optimisation
LK - https://researchspace.csir.co.za
PY - 2016
SM - 0022-4456
T1 - Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil
TI - Using response surface methodology in optimisation of biodiesel production via alkali catalysed transesterification of waste cooking oil
UR - http://hdl.handle.net/10204/8664
ER -
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en_ZA |