Regeneration of Waste Frying Oil for Biodiesel Production

Author(s):  
Fetta Danane ◽  
Aida Cherifa Ahmia ◽  
Rhiad Alloune ◽  
Rahma Bessah
2020 ◽  
Vol 10 (10) ◽  
pp. 3566
Author(s):  
Mary Angélica Ferreira Vela ◽  
Juan C. Acevedo-Páez ◽  
Nestor Urbina-Suárez ◽  
Yeily Adriana Rangel Basto ◽  
Ángel Darío González-Delgado

The search for innovation and biotechnological strategies in the biodiesel production chain have become a topic of interest for scientific community owing the importance of renewable energy sources. This work aimed to implement an enzymatic transesterification process to obtain biodiesel from waste frying oil (WFO). The transesterification was performed by varying reaction times (8 h, 12 h and 16 h), enzyme concentrations of lipase XX 25 split (14%, 16% and 18%), pH of reaction media (6, 7 and 8) and reaction temperature (35, 38 and 40 °C) with a fixed alcohol–oil molar ratio of 3:1. The optimum operating conditions were selected to quantify the amount of fatty acid methyl esters (FAMEs) generated. The highest biodiesel production was reached with an enzyme concentration of 14%, reaction time of 8 h, pH of 7 and temperature of 38 °C. It was estimated a FAMEs production of 42.86% for the selected experiment; however, best physicochemical characteristics of biodiesel were achieved with an enzyme concentration of 16% and reaction time of 8 h. Results suggested that enzymatic transesterification process was favorable because the amount of methyl esters obtained was similar to the content of fatty acids in the WFO.


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Author(s):  
Adeyinka S. Yusuff ◽  
Olalekan D. Adeniyi ◽  
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Amanda Carvalho Miranda ◽  
Thadeu Alfredo Farias Silva ◽  
Felipe Araújo Calarge ◽  
Roberto Rodrigues de Souza ◽  
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Vol 148 ◽  
pp. 742-749 ◽  
Author(s):  
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Sami Ullah ◽  
Abrar Inayat ◽  
Aamir Hussain Bhat ◽  
Sintayehu Mekuria Hailegiorgis

2011 ◽  
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pp. 85-90 ◽  
Author(s):  
Trupti W. Charpe ◽  
Virendra K. Rathod

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