Isochrysis galbana (I. galbana) is a microalgae
species rich in biomolecules of high commercial
value and industrial relevance. Despite the numerous studies done
on the extraction of different compounds from microalgae, the complete
valorization of the biomass under the biorefinery concept is scarce
or even inexistent. The mixture of different compounds found in the
different extracts obtained from the microalgae biomass is one of
the most important drawbacks in the field. Despite the large interest
of academia and industry in the different classes of bioactive compounds
composing microalgae, these are still poorly explored due to the low
efficiency of the downstream processes used up to date. In this context,
this work proposes the development of an efficient purification process
by applying ionic liquid (IL)-based aqueous biphasic systems (ABS)
to separate proteins from arabinose- and glucose-rich polysaccharides.
For this purpose, the nature of the inorganic salt, the IL structural
features (anion and alkyl chain length) and the extraction point (using
different inorganic salt concentrations) were the conditions optimized.
After the proper selection of the most performant IL-ABS (%EEcarb = 71.21 ± 5.21% to the bottom phase and %EEprot = 100% to the top phase), a complete downstream process was developed
and implemented, in which the isolation of the target biomolecules
(proteins, arabinose- and glucose-rich polysaccharides) and the reuse
of the phase formers and main solvents applied was considered. In
summary, the approach proposed using IL-ABS appears as a simple and
efficient method of purification easily integrated into continuous
flow processes, thus demonstrating its industrial potential.
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