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Natural pigments and biogas recovery from microalgae grown in wastewater

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10.1021/acssuschemeng.0c01106
 
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Arashiro, Larissa TerumiMés informació
Ferrer Martí, IvetMés informacióMés informacióMés informació
Cruañas Pániker, Catalina
Gómez Pinchetti, Juan Luis
Rousseau, Diederik
van Hulle, Stijn
Garfi, MariannaMés informacióMés informacióMés informació
Document typeArticle
Defense date2020-07
PublisherAmerican Chemical Society (ACS)
Rights accessOpen Access
All rights reserved. This work is protected by the corresponding intellectual and industrial property rights. Without prejudice to any existing legal exemptions, reproduction, distribution, public communication or transformation of this work are prohibited without permission of the copyright holder
ProjectMICROALGAS PARA LA PRODUCCION SOSTENIBLE DE BIOPRODUCTOS Y AGUA REGENERADA (AEI-RTI2018-099495-B-C21)
SuPER-W - Sustainable Product, Energy and Resource Recovery from Wastewater (EC-H2020-676070)
Abstract
This study assessed the recovery of natural pigments (phycobiliproteins) and bioenergy (biogas) from microalgae grown in wastewater. A consortium of microalgae, mainly composed by Nostoc, Phormidium, and Geitlerinema, known to have high phycobiliproteins content, was grown in photobioreactors. The growth medium was composed by secondary effluent from a high rate algal pond (HRAP) along with the anaerobic digestion centrate, which aimed to enhance the N/P ratio, given the lack of nutrients in the secondary effluent. Additionally, the centrate is still a challenging anaerobic digestion residue since the high nitrogen concentrations have to be removed before disposal. Removal efficiencies up to 52% of COD, 86% of NH4+-N, and 100% of phosphorus were observed. The biomass composition was monitored over the experimental period in order to ensure stable cyanobacterial dominance in the mixed culture. Phycocyanin and phycoerythrin were extracted from harvested biomass, achieving maximum concentrations of 20.1 and 8.1 mg/g dry weight, respectively. The residual biomass from phycobiliproteins extraction was then used to produce biogas, with final methane yields ranging from 159 to 199 mL CH4/g VS. According to the results, by combining the extraction of pigments and the production of biogas from residual biomass, we would not only obtain high-value compounds, but also more energy (around 5–10% higher), as compared to the single recovery of biogas. The proposed process poses an example of resource recovery from biomass grown in wastewater, moving toward a circular bioeconomy.
CitationArashiro, L. [et al.]. Natural pigments and biogas recovery from microalgae grown in wastewater. "ACS sustainable chemistry & engineering", Juliol 2020, vol. 8, núm. 29, p. 10691-10701. 
URIhttp://hdl.handle.net/2117/333342
DOI10.1021/acssuschemeng.0c01106
ISSN2168-0485
Publisher versionhttps://pubs.acs.org/doi/10.1021/acssuschemeng.0c01106
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  • GEMMA - Grup d'Enginyeria i Microbiologia del Medi Ambient - Articles de revista [183]
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