ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS

Abstract We applied ultrasonic technology for the transesterification of soybean oil catalyzed by a mixture of lipases (combi-lipase: 75 % Novozym 435; 10 % Lipozyme TL-IM; and 15 % Lipozyme RM-IM), verifying the effects of ultrasonic amplitude, pulse conditions, the ethanol:oil molar ratio, enzyme...

Full description

Bibliographic Details
Main Authors: Vitória O. de Freitas, Carla R. Matte, Jakeline K. Poppe, Rafael C. Rodrigues, Marco A. Z. Ayub
Format: Article
Language:English
Published: Brazilian Society of Chemical Engineering
Series:Brazilian Journal of Chemical Engineering
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322019000200995&lng=en&tlng=en
id doaj-1594525a67c54932a7a844fb3449a841
record_format Article
spelling doaj-1594525a67c54932a7a844fb3449a8412020-11-25T02:00:27ZengBrazilian Society of Chemical EngineeringBrazilian Journal of Chemical Engineering1678-4383362995100510.1590/0104-6632.20190362s20180455S0104-66322019000200995ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTSVitória O. de FreitasCarla R. MatteJakeline K. PoppeRafael C. RodriguesMarco A. Z. AyubAbstract We applied ultrasonic technology for the transesterification of soybean oil catalyzed by a mixture of lipases (combi-lipase: 75 % Novozym 435; 10 % Lipozyme TL-IM; and 15 % Lipozyme RM-IM), verifying the effects of ultrasonic amplitude, pulse conditions, the ethanol:oil molar ratio, enzyme concentration, and the influence of solvent (tert-butanol on the reaction. We also compared this system against ultrasound combined with mechanical stirring, and the efficiency of the combi-lipase, compared with the individual use of each lipase. The optimum conditions for the transesterification reaction were determined as enzyme concentration of 15 % (in relation to oil mass); ethanol:oil molar ratio of 3:1; ultrasonic amplitude of 30 %, duty cycle of 50 % and time pulse of 15 sec. The yields of conversion of ethyl esters with and without solvent were similar, indicating that the use of solvents during enzymatic transesterification reactions is not necessary when ultrasonic technology is applied to the system. The combination of mechanical stirring and ultrasound did not improve the yields of conversion compared to ultrasonic technology alone. The proposed combi-lipase produced higher yields of ethyl esters (75 %) than the individual lipases (55 %) in 5 h under ultrasonic-assisted batch reactions.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322019000200995&lng=en&tlng=enTransesterificationCombi-lipaseUltrasound-assisted technologyBiodiesel
collection DOAJ
language English
format Article
sources DOAJ
author Vitória O. de Freitas
Carla R. Matte
Jakeline K. Poppe
Rafael C. Rodrigues
Marco A. Z. Ayub
spellingShingle Vitória O. de Freitas
Carla R. Matte
Jakeline K. Poppe
Rafael C. Rodrigues
Marco A. Z. Ayub
ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS
Brazilian Journal of Chemical Engineering
Transesterification
Combi-lipase
Ultrasound-assisted technology
Biodiesel
author_facet Vitória O. de Freitas
Carla R. Matte
Jakeline K. Poppe
Rafael C. Rodrigues
Marco A. Z. Ayub
author_sort Vitória O. de Freitas
title ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS
title_short ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS
title_full ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS
title_fullStr ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS
title_full_unstemmed ULTRASOUND-ASSISTED TRANSESTERIFICATION OF SOYBEAN OIL USING COMBI-LIPASE BIOCATALYSTS
title_sort ultrasound-assisted transesterification of soybean oil using combi-lipase biocatalysts
publisher Brazilian Society of Chemical Engineering
series Brazilian Journal of Chemical Engineering
issn 1678-4383
description Abstract We applied ultrasonic technology for the transesterification of soybean oil catalyzed by a mixture of lipases (combi-lipase: 75 % Novozym 435; 10 % Lipozyme TL-IM; and 15 % Lipozyme RM-IM), verifying the effects of ultrasonic amplitude, pulse conditions, the ethanol:oil molar ratio, enzyme concentration, and the influence of solvent (tert-butanol on the reaction. We also compared this system against ultrasound combined with mechanical stirring, and the efficiency of the combi-lipase, compared with the individual use of each lipase. The optimum conditions for the transesterification reaction were determined as enzyme concentration of 15 % (in relation to oil mass); ethanol:oil molar ratio of 3:1; ultrasonic amplitude of 30 %, duty cycle of 50 % and time pulse of 15 sec. The yields of conversion of ethyl esters with and without solvent were similar, indicating that the use of solvents during enzymatic transesterification reactions is not necessary when ultrasonic technology is applied to the system. The combination of mechanical stirring and ultrasound did not improve the yields of conversion compared to ultrasonic technology alone. The proposed combi-lipase produced higher yields of ethyl esters (75 %) than the individual lipases (55 %) in 5 h under ultrasonic-assisted batch reactions.
topic Transesterification
Combi-lipase
Ultrasound-assisted technology
Biodiesel
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322019000200995&lng=en&tlng=en
work_keys_str_mv AT vitoriaodefreitas ultrasoundassistedtransesterificationofsoybeanoilusingcombilipasebiocatalysts
AT carlarmatte ultrasoundassistedtransesterificationofsoybeanoilusingcombilipasebiocatalysts
AT jakelinekpoppe ultrasoundassistedtransesterificationofsoybeanoilusingcombilipasebiocatalysts
AT rafaelcrodrigues ultrasoundassistedtransesterificationofsoybeanoilusingcombilipasebiocatalysts
AT marcoazayub ultrasoundassistedtransesterificationofsoybeanoilusingcombilipasebiocatalysts
_version_ 1724960431544467456