Disruption or partitioning? Deep eutectic solvent biphasic systems for integrated seaweed biorefineries

In this study, a DES-based biphasic system (FABU) was evaluated for the multiproduct extraction of compounds from Saccharina latissima. The system combined a hydrophobic fatty-acid phase (dodecanoic acid–octanoic acid, FA) for fucoxanthin extraction with a hydrophilic betaine-urea-phase (BU) for alginate recovery, together with citric acid pretreatment for fucoidan and mannitol recovery. While fucoxanthin partitioning into the FA phase was limited (41–58 µg g− 1), a substantially higher fucoxanthin concentration (563 ± 8 µg g− 1) was recovered during the subsequent alkaline extraction step. This behaviour indicates that the DES-based system likely acts as a medium that enhances biomass permeability rather than directly promoting partitioning. Chromatographic profiles further showed enhanced fucoxanthin preservation relative to conventional pigment extraction, suggesting a protective role of the DES matrix. These findings highlight a decoupling between biomass disruption and solubilisation in DES-based systems. Our research shows new opportunities to deploy biphasic DES systems as powerful pretreatment platforms within integrated seaweed biorefineries, thereby offering a new strategy for preserving and recovering sensitive compounds. Graphical abstract

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Journal
Bioresources and Bioprocessing
Published
2026-09-25
DOI
https://doi.org/10.1186/s40643-026-01139-9
Primary Topic
Seaweed-derived Bioactive Compounds
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article
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article

Disruption or partitioning? Deep eutectic solvent biphasic systems for integrated seaweed biorefineries

René H. Wijffels, Antoinette Kazbar, Michel H. M. Eppink, Wimar Reynaga-Navarro et al.
Bioresources and Bioprocessing
Seaweed-derived Bioactive Compounds
article

Disruption or partitioning? Deep eutectic solvent biphasic systems for integrated seaweed biorefineries

René H. Wijffels, Antoinette Kazbar, Michel H. M. Eppink, Wimar Reynaga-Navarro, Isa S. A. Hiemstra
article en

Abstract

In this study, a DES-based biphasic system (FABU) was evaluated for the multiproduct extraction of compounds from Saccharina latissima. The system combined a hydrophobic fatty-acid phase (dodecanoic acid–octanoic acid, FA) for fucoxanthin extraction with a hydrophilic betaine-urea-phase (BU) for alginate recovery, together with citric acid pretreatment for fucoidan and mannitol recovery. While fucoxanthin partitioning into the FA phase was limited (41–58 µg g− 1), a substantially higher fucoxanthin concentration (563 ± 8 µg g− 1) was recovered during the subsequent alkaline extraction step. This behaviour indicates that the DES-based system likely acts as a medium that enhances biomass permeability rather than directly promoting partitioning. Chromatographic profiles further showed enhanced fucoxanthin preservation relative to conventional pigment extraction, suggesting a protective role of the DES matrix. These findings highlight a decoupling between biomass disruption and solubilisation in DES-based systems. Our research shows new opportunities to deploy biphasic DES systems as powerful pretreatment platforms within integrated seaweed biorefineries, thereby offering a new strategy for preserving and recovering sensitive compounds. Graphical abstract

Bioresources and BioprocessingVol. 13(1)
Nord University (NO), Wageningen University & Research (NL), Delft University of Technology (NL)
Life below water
Openalex Percentile: Top 7%
Seaweed-derived Bioactive Compounds
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Disruption or partitioning? Deep eutectic solvent biphasic systems for integrated seaweed biorefineries — René H. Wijffels, Antoinette Kazbar, et al. · Bioresources and Bioprocessing (2026) | TGRS Research Map | TGRS