Membrane-assisted extraction of monoterpenes: from in silico solvent screening towards biotechnological process application

Author:

Janoschek L.ORCID,Grozdev L.ORCID,Berensmeier S.ORCID

Abstract

This work focuses on the process development of membrane-assisted solvent extraction of hydrophobic compounds such as monoterpenes. Beginning with the choice of suitable solvents, quantum chemical calculations with the simulation tool COSMO-RS were carried out to predict the partition coefficient (log P ) of (S)-(+)-carvone and terpinen-4-ol in various solvent–water systems and validated afterwards with experimental data. COSMO-RS results show good prediction accuracy for non-polar solvents such as n-hexane, ethyl acetate and n-heptane even in the presence of salts and glycerol in an aqueous medium. Based on the high log P value, n-heptane was chosen for the extraction of (S)-(+)-carvone in a lab-scale hollow-fibre membrane contactor. Two operation modes are investigated where experimental and theoretical mass transfer values, based on their related partition coefficients, were compared. In addition, the process is evaluated in terms of extraction efficiency and overall product recovery, and its biotechnological application potential is discussed. Our work demonstrates that the combination of in silico prediction by COSMO-RS with membrane-assisted extraction is a promising approach for the recovery of hydrophobic compounds from aqueous solutions.

Publisher

The Royal Society

Subject

Multidisciplinary

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Membrane contactors-assisted liquid-liquid extraction of biomolecules from biorefinery liquid streams: A case study on organic acids;Separation and Purification Technology;2023-07

2. COSMO-RS blind prediction of distribution coefficients and aqueous pKa values from the SAMPL8 challenge;Journal of Computer-Aided Molecular Design;2023-06-27

3. Facilitated solvent screening for membrane-based extraction of chiral amines via a priori simulations;Journal of Molecular Liquids;2023-04

4. Terpenoids and Biotechnology;Terpenoids: Recent Advances in Extraction, Biochemistry and Biotechnology;2022-09-28

5. Efficient membrane-based affinity separations for chemical applications: A review;Chemical Engineering and Processing - Process Intensification;2021-12

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