Title Biocrude production via non-catalytic supercritical hydrothermal liquefaction of fucus vesiculosus seaweed processing residues /
Authors Jasiūnas, Lukas ; Pedersen, Thomas Helmer ; Rosendahl, Lasse Aistrup
DOI 10.3390/recycling6030045
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Is Part of Recycling.. Basel : MDPI. 2021, vol. 6, iss. 3, art. no. 45, p. 1-18.. ISSN 2313-4321
Keywords [eng] residue valorization ; hydrothermal liquefaction ; biorefinery ; macroalgae ; value-added products
Abstract [eng] The potential of using cold water brown macroalgae Fucus vesiculosus for biocrude production via non-catalytic supercritical hydrothermal liquefaction (HTL) was studied. Demineralization, residue neutralization, and high value-added product (alginate and fucoidan) extraction processes were carried out before using the biomass for HTL biocrude production. Acid leaching was carried out using three demineralization agents: distilled water, dilute citric acid solution, and the diluted acidic aqueous by-product from a continuous HTL pilot facility. Alginate was extracted via H2SO4 and NaCO3 bathing, and fucoidan was extracted using CaCl2. Experimental data show that none of the leaching agents was greatly efficient in removing inorganics, with citric acid leaching with extensive neutralization reaching the highest ash removal efficiency of 47%. The produced 6 sets of biocrudes were characterized by elemental and thermogravimetric analyses. Short (10-min retention) HTL and the extent of leaching residue neutralization were also investigated. Highest biocrude yields were recorded when liquefying non-neutralized citric acid leaching, alginate, and fucoidan extraction residues. On the other hand, thermochemical conversions of short retention time HTL, full neutralization extent, and baseline (dried raw macroalgae) biomass performed worse. Specifically, the highest biocrude yield of 28.2 ± 2.5 wt.% on dry ash-free feedstock basis was recorded when liquefying alginate extraction residues. Moreover, the highest energy recovery of 52.8% was recorded when converting fucoidan extraction residues.
Published Basel : MDPI
Type Journal article
Language English
Publication date 2021
CC license CC license description