TY - JOUR
T1 - Compressed fluid-based technology for downstream isolation of bluish anthocyanin-derived pigments obtained from blueberry surplus
AU - Nunes, Ana N.
AU - Oliveira, Joana
AU - Bronze, Maria Rosário
AU - Matias, Ana A.
N1 - Funding Information:
This work was funded by Funda\u00E7\u00E3o para a Ci\u00EAncia e Tecnologia/Minist\u00E9rio da Ci\u00EAncia, Tecnologia e Ensino Superior (FCT/MCTES, Portugal) through national funds to iNOVA4Health (UIDB/04462/2020 and UIDP/04462/2020), the Associate Laboratory LS4FUTURE (LA/P/0087/2020) and Associated Laboratory for Sustainable Chemistry, Clean Processes, and Technologies LAQV (UIDB/50006/2020 and UIDP/50006/2020). Funding from INTERFACE Programme, through the Innovation, Technology and Circular Economy Fund (FITEC), is gratefully acknowledged. A. N. N. acknowledge FCT for the financial support received through SFRH/BD/144592/2019. J. O. acknowledge LAQV-REQUIMTE her research contract (UIDB/50006/2020). Ana A. Matias thanks for the IF Starting Grant \u2013 GRAPHYT (IF/00723/2014). The authors also acknowledge Del\u00EDcias do Tojal, CultiBaga, and Mirtilsul for kindly supplying the biomass.
Publisher Copyright:
© 2024 The Royal Society of Chemistry.
PY - 2024/6/4
Y1 - 2024/6/4
N2 - A dynamic compressed fluid-based separation process combining carbon dioxide and ethanol was explored to isolate portisins previously hemi-synthesized from blueberry surplus anthocyanins. The influence of process parameters such as pressure (100-500 bar), temperature (40-60 °C), and ethanol content in the compressed fluid mixture (20-50 wt%) on extraction yield, portisins yield, and portisins content in the extract was investigated. The two-step isolation process includes (1) a first step at 100 bar, 60 °C, and 20 wt% ethanol content in the compressed fluid mixture to remove the low polarity compounds; and (2) a second step at 500 bar, 40 °C, and 100 wt% ethanol to recover portisins, resulting in a 1.5-fold increase in portisins content. The performance of the two-step separation process was compared to centrifugal partitional chromatography and conventional reverse phase liquid chromatography already reported in terms of portisins content in the extract, process throughput, process efficiency, and total solvent used. The two-step separation process decreased the total solvent used, although with a decrease in the throughput and efficiency. Nevertheless, the choice of the best separation technology depends on the application, as these techniques result in different portisins purities. Overall, this study contributed to a scalable and more sustainable process for natural colorant production, specifically focusing on blue pigments, with several industrial applications.
AB - A dynamic compressed fluid-based separation process combining carbon dioxide and ethanol was explored to isolate portisins previously hemi-synthesized from blueberry surplus anthocyanins. The influence of process parameters such as pressure (100-500 bar), temperature (40-60 °C), and ethanol content in the compressed fluid mixture (20-50 wt%) on extraction yield, portisins yield, and portisins content in the extract was investigated. The two-step isolation process includes (1) a first step at 100 bar, 60 °C, and 20 wt% ethanol content in the compressed fluid mixture to remove the low polarity compounds; and (2) a second step at 500 bar, 40 °C, and 100 wt% ethanol to recover portisins, resulting in a 1.5-fold increase in portisins content. The performance of the two-step separation process was compared to centrifugal partitional chromatography and conventional reverse phase liquid chromatography already reported in terms of portisins content in the extract, process throughput, process efficiency, and total solvent used. The two-step separation process decreased the total solvent used, although with a decrease in the throughput and efficiency. Nevertheless, the choice of the best separation technology depends on the application, as these techniques result in different portisins purities. Overall, this study contributed to a scalable and more sustainable process for natural colorant production, specifically focusing on blue pigments, with several industrial applications.
UR - http://www.scopus.com/inward/record.url?scp=85193691399&partnerID=8YFLogxK
U2 - 10.1039/d3fo04813f
DO - 10.1039/d3fo04813f
M3 - Article
C2 - 38771590
AN - SCOPUS:85193691399
SN - 2042-6496
VL - 15
SP - 6189
EP - 6198
JO - Food and Function
JF - Food and Function
IS - 11
ER -