Cargando…

New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets

BACKGROUND: This investigation comprises a contribution on the production of a new generation biofuel using the industrial liquid waste of bioethanol distilleries, known as vinasse. This study focuses on the exploitation of vinasse as an acidogenesis substrate for volatile fatty acids and simultaneo...

Descripción completa

Detalles Bibliográficos
Autores principales: Lappa, Katerina, Kandylis, Panagiotis, Bastas, Nikolaos, Klaoudatos, Stavros, Athanasopoulos, Nikolaos, Bekatorou, Argyro, Kanellaki, Maria, Koutinas, Athanasios A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4436871/
https://www.ncbi.nlm.nih.gov/pubmed/25991923
http://dx.doi.org/10.1186/s13068-015-0255-6
_version_ 1782372149411971072
author Lappa, Katerina
Kandylis, Panagiotis
Bastas, Nikolaos
Klaoudatos, Stavros
Athanasopoulos, Nikolaos
Bekatorou, Argyro
Kanellaki, Maria
Koutinas, Athanasios A
author_facet Lappa, Katerina
Kandylis, Panagiotis
Bastas, Nikolaos
Klaoudatos, Stavros
Athanasopoulos, Nikolaos
Bekatorou, Argyro
Kanellaki, Maria
Koutinas, Athanasios A
author_sort Lappa, Katerina
collection PubMed
description BACKGROUND: This investigation comprises a contribution on the production of a new generation biofuel using the industrial liquid waste of bioethanol distilleries, known as vinasse. This study focuses on the exploitation of vinasse as an acidogenesis substrate for volatile fatty acids and simultaneous ethanol production. These products can be used for ester production, which is the new generation biofuel. Therefore, the aims of the present study are (i) to examine any promotional effect of γ-alumina on acidogenesis of a sucrose-raffinose mixture simulating vinasse, (ii) to study the operational stability of the continuous acidogenesis of sucrose and raffinose and subsequently of vinasse, and (iii) to determine the volatile fatty acid chemical composition and ethanol formation. RESULTS: Batch acidogenesis of sucrose and raffinose mixtures showed that γ-alumina promoted fermentation leading to an increase in the volatile fatty acid yield factor from 40% to 95% compared to free cells. The application of the system in continuous mode for more than 3 months showed that the continuous volatile fatty acid productivity obtained was higher than 7 g/L/day. Lactic acid was the predominant acid when sucrose and raffinose were used while butyric acid in the case of vinasse. The highest volatile fatty acid concentration reached was 19 g/L for vinasse. CONCLUSIONS: A promoting effect of γ-alumina in acidogenic fermentation of sucrose-raffinose and vinasse is reported. Continuous acidogenesis of sucrose-raffinose mixtures and vinasse using γ-alumina with immobilized cells showed high operational stability (more than 3 months). These findings result in easy scale up of the process that will produce a high annual added value of $11,000,000 in a daily bioethanol production plant of 50,000 L.
format Online
Article
Text
id pubmed-4436871
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-44368712015-05-20 New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets Lappa, Katerina Kandylis, Panagiotis Bastas, Nikolaos Klaoudatos, Stavros Athanasopoulos, Nikolaos Bekatorou, Argyro Kanellaki, Maria Koutinas, Athanasios A Biotechnol Biofuels Research Article BACKGROUND: This investigation comprises a contribution on the production of a new generation biofuel using the industrial liquid waste of bioethanol distilleries, known as vinasse. This study focuses on the exploitation of vinasse as an acidogenesis substrate for volatile fatty acids and simultaneous ethanol production. These products can be used for ester production, which is the new generation biofuel. Therefore, the aims of the present study are (i) to examine any promotional effect of γ-alumina on acidogenesis of a sucrose-raffinose mixture simulating vinasse, (ii) to study the operational stability of the continuous acidogenesis of sucrose and raffinose and subsequently of vinasse, and (iii) to determine the volatile fatty acid chemical composition and ethanol formation. RESULTS: Batch acidogenesis of sucrose and raffinose mixtures showed that γ-alumina promoted fermentation leading to an increase in the volatile fatty acid yield factor from 40% to 95% compared to free cells. The application of the system in continuous mode for more than 3 months showed that the continuous volatile fatty acid productivity obtained was higher than 7 g/L/day. Lactic acid was the predominant acid when sucrose and raffinose were used while butyric acid in the case of vinasse. The highest volatile fatty acid concentration reached was 19 g/L for vinasse. CONCLUSIONS: A promoting effect of γ-alumina in acidogenic fermentation of sucrose-raffinose and vinasse is reported. Continuous acidogenesis of sucrose-raffinose mixtures and vinasse using γ-alumina with immobilized cells showed high operational stability (more than 3 months). These findings result in easy scale up of the process that will produce a high annual added value of $11,000,000 in a daily bioethanol production plant of 50,000 L. BioMed Central 2015-05-07 /pmc/articles/PMC4436871/ /pubmed/25991923 http://dx.doi.org/10.1186/s13068-015-0255-6 Text en © Lappa et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Lappa, Katerina
Kandylis, Panagiotis
Bastas, Nikolaos
Klaoudatos, Stavros
Athanasopoulos, Nikolaos
Bekatorou, Argyro
Kanellaki, Maria
Koutinas, Athanasios A
New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
title New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
title_full New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
title_fullStr New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
title_full_unstemmed New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
title_short New generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
title_sort new generation biofuel: continuous acidogenesis of sucrose-raffinose mixture simulating vinasse is promoted by γ-alumina pellets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4436871/
https://www.ncbi.nlm.nih.gov/pubmed/25991923
http://dx.doi.org/10.1186/s13068-015-0255-6
work_keys_str_mv AT lappakaterina newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT kandylispanagiotis newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT bastasnikolaos newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT klaoudatosstavros newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT athanasopoulosnikolaos newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT bekatorouargyro newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT kanellakimaria newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets
AT koutinasathanasiosa newgenerationbiofuelcontinuousacidogenesisofsucroseraffinosemixturesimulatingvinasseispromotedbygaluminapellets