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Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth

The production of succinic acid from fermentation is a promising approach for obtaining building-block chemicals from renewable sources. However, the limited bio-succinic yield from fermentation and the complexity of purification has been making the bio-succinic acid production not competitive with...

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Autores principales: Malanca, Alina Anamaria, Mancini, Enrico, Yusuf, Mohamed, Khensir, Gabriel Kjær, Mansouri, Seyed Soheil, Skiadas, Ioannis V., Gavala, Hariklia N., Pinelo, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144686/
https://www.ncbi.nlm.nih.gov/pubmed/35629868
http://dx.doi.org/10.3390/membranes12050542
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author Malanca, Alina Anamaria
Mancini, Enrico
Yusuf, Mohamed
Khensir, Gabriel Kjær
Mansouri, Seyed Soheil
Skiadas, Ioannis V.
Gavala, Hariklia N.
Pinelo, Manuel
author_facet Malanca, Alina Anamaria
Mancini, Enrico
Yusuf, Mohamed
Khensir, Gabriel Kjær
Mansouri, Seyed Soheil
Skiadas, Ioannis V.
Gavala, Hariklia N.
Pinelo, Manuel
author_sort Malanca, Alina Anamaria
collection PubMed
description The production of succinic acid from fermentation is a promising approach for obtaining building-block chemicals from renewable sources. However, the limited bio-succinic yield from fermentation and the complexity of purification has been making the bio-succinic acid production not competitive with petroleum-based succinic acid. Membrane electrolysis has been identified to be a promising technology in both production and separation stages of fermentation processes. This work focuses on identifying the key operational parameters affecting the performance of the electrolytic cell for separating succinic acid from fermentation broth through an anionic exchange membrane. Indeed, while efforts are mainly focused on studying the performance of an integrated fermenter-electrolytic cell system, a lack of understanding remains in how to tune the electrolytic cell and which main parameters are involved. The results show that a single electrolytic cell of operating volume 250 mL was able to extract up to 3 g L(−1) h(−1) of succinic acid. The production of OH(−) ions by water electrolysis can act as a buffer for the fermenter and it could be tuned as a function of the extraction rate. Furthermore, as the complexity of the solution in terms of the quantity and composition of the ions increased, the energy required for the separation process decreased.
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spelling pubmed-91446862022-05-29 Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth Malanca, Alina Anamaria Mancini, Enrico Yusuf, Mohamed Khensir, Gabriel Kjær Mansouri, Seyed Soheil Skiadas, Ioannis V. Gavala, Hariklia N. Pinelo, Manuel Membranes (Basel) Article The production of succinic acid from fermentation is a promising approach for obtaining building-block chemicals from renewable sources. However, the limited bio-succinic yield from fermentation and the complexity of purification has been making the bio-succinic acid production not competitive with petroleum-based succinic acid. Membrane electrolysis has been identified to be a promising technology in both production and separation stages of fermentation processes. This work focuses on identifying the key operational parameters affecting the performance of the electrolytic cell for separating succinic acid from fermentation broth through an anionic exchange membrane. Indeed, while efforts are mainly focused on studying the performance of an integrated fermenter-electrolytic cell system, a lack of understanding remains in how to tune the electrolytic cell and which main parameters are involved. The results show that a single electrolytic cell of operating volume 250 mL was able to extract up to 3 g L(−1) h(−1) of succinic acid. The production of OH(−) ions by water electrolysis can act as a buffer for the fermenter and it could be tuned as a function of the extraction rate. Furthermore, as the complexity of the solution in terms of the quantity and composition of the ions increased, the energy required for the separation process decreased. MDPI 2022-05-23 /pmc/articles/PMC9144686/ /pubmed/35629868 http://dx.doi.org/10.3390/membranes12050542 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Malanca, Alina Anamaria
Mancini, Enrico
Yusuf, Mohamed
Khensir, Gabriel Kjær
Mansouri, Seyed Soheil
Skiadas, Ioannis V.
Gavala, Hariklia N.
Pinelo, Manuel
Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth
title Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth
title_full Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth
title_fullStr Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth
title_full_unstemmed Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth
title_short Variables and Mechanisms Affecting Electro-Membrane Extraction of Bio-Succinic Acid from Fermentation Broth
title_sort variables and mechanisms affecting electro-membrane extraction of bio-succinic acid from fermentation broth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144686/
https://www.ncbi.nlm.nih.gov/pubmed/35629868
http://dx.doi.org/10.3390/membranes12050542
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