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Updated: May 21, 2025

Author Spotlight: Scaling Microalgal Biotechnology for Enhanced Biomethane Production
Published on: March 22, 2024
Carotenoids and biogas recovery from microalgae treating wastewater
Evelyn Ruales1, Marta Bellver1, Ana Álvarez-González1
1GEMMA - Environmental Engineering and Microbiology Research Group, Department of Civil and Environmental Engineering, Universitat Politècnica de Catalunya - BarcelonaTech, c/ Jordi Girona 1-3, Building D1, E-08034 Barcelona, Spain.
Abstract:
This study evaluated the potential of microalgal biomass grown in wastewater for carotenoid and biogas recovery in a biorefinery approach. Microalgal biomass was harvested from two pilot high rate algal ponds treating urban wastewater with hydraulic retention times (HRTs) of 8 and 6 days. The maximum carotenoid content in harvested biomass was 4 mg·g total suspended solids (TSS)-1 with a HRT of 8 days, while it reached around 1.5-2 mg·gTSS-1 with a HRT of 6 days. Biochemical methane potential tests showed no significant differences between the methane yield of raw (159 NmLCH4·gVS-1) and carotenoid-extracted biomass (136 NmLCH4·gVS-1). Moreover, co-digestion of raw and carotenoid-extracted biomass with primary sludge increased the methane yield by 58 % and 86 %, respectively (75:25 ratio), and by 28 % and 44 %, respectively (50:50 ratio). These results demonstrate that wastewater-grown microalgae biorefineries enable the simultaneous recovery of value-added carotenoids and bioenergy, in the framework of a circular bioeconomy.

