Predictive modeling and experimental implementation of organic acids in stream recovery by reactive extraction in membrane contactors

2021 ◽  
pp. 134067
Author(s):  
F. Chemarin ◽  
V. Athès ◽  
W. Buquet ◽  
M. Bedu ◽  
F. Allais ◽  
...  
Fermentation ◽  
2021 ◽  
Vol 7 (1) ◽  
pp. 26
Author(s):  
Pieter De Brabander ◽  
Evelien Uitterhaegen ◽  
Ellen Verhoeven ◽  
Cedric Vander Cruyssen ◽  
Karel De Winter ◽  
...  

In situ product recovery (ISPR), in the form of an extractive fermentation process, can increase productivity and product titers in the sustainable production of platform chemicals. To establish a guideline for the development of industrially relevant production processes for such bio-based compounds, a wide screening was performed, mapping the potential of an extensive range of solvents and solvent mixtures. Besides solvent biocompatibility with Saccharomyces cerevisiae, distribution coefficients of three organic acids (protocatechuic acid, adipic acid and para-aminobenzoic acid) and four fragrance compounds (2-phenylethanol, geraniol, trans-cinnamaldehyde and β-ionone) were determined. While for highly hydrophobic fragrance compounds, multiple pure solvents were identified that were able to extract more than 98%, reactive extraction mixtures were proven effective for more challenging compounds including organic acids and hydrophilic alcohols. For example, a reactive mixture consisting of 12.5% of the extractant CYTOP 503 in canola oil was found to be biocompatible and showed superior extraction efficiency for the challenging compounds as compared to any biocompatible single solvent. This mapping of biocompatible solvents and solvent mixtures for the extraction of various classes of industrial platform chemicals can be a tremendous step forward in the development of extractive fermentations.


1999 ◽  
Vol 15 (4) ◽  
Author(s):  
N. Kapucu ◽  
Α. Güvenç ◽  
Ü. Mehmetoğlu ◽  
A. Çalimli

2013 ◽  
Vol 15 (4) ◽  
Author(s):  
Dominika Szternel ◽  
Magdalena Regel-Rosocka ◽  
Maciej Wiśniewski

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