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1.
J Environ Manage ; 369: 122385, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39243421

RESUMEN

Microalgae-based wastewater treatment is a promising technology efficient for nutrient recycling and biomass production. Studies continuously optimize processes to reduce costs and increase productivity. However, changes in the operational conditions affect not only biomass productivity but the dynamics of the overall microbial community. This study characterizes a microalgae culture from an 80 m2 pilot-scale raceway reactor fed with untreated urban wastewater. Operational conditions such as pH, dissolved oxygen control strategies (On-off, PI, Event-based, no control), and culture height were varied to assess microbial population changes. Results demonstrate that increased culture height significantly promotes higher microalgal and bacterial diversity. pH, dissolved oxygen and culture height highly affects nitrifying bacteria activity and nitrogen accumulation. Furthermore, the system exhibited high disinfection capability with average Logarithmic Reduction Values (LRV) of 3.36 for E. coli and 2.57 for Clostridium perfringens. Finally, the fungi species detected included Chytridiomycota and Ascomycota, while purple photosynthetic bacteria were also found in significant abundance within the medium.


Asunto(s)
Microalgas , Aguas Residuales , Aguas Residuales/microbiología , Microalgas/crecimiento & desarrollo , Biomasa , Eliminación de Residuos Líquidos/métodos , Nitrógeno/metabolismo , Reactores Biológicos/microbiología , Bacterias/metabolismo
2.
N Biotechnol ; 77: 90-99, 2023 Nov 25.
Artículo en Inglés | MEDLINE | ID: mdl-37532220

RESUMEN

The role of microalgae in the production of bioproducts and biofuels, along with their ability to provide a sustainable pathway for wastewater treatment, makes them promising alternatives to conventional processes. Nevertheless, large-scale downstream processing requires an understanding of biomass rheology that needs to be addressed further. This study aimed to characterize microalgal concentrates rheologically in different culture media. The presence of bacteria was quantified by photorespirometry and plate counting techniques. The culture medium was found to significantly influence viscosity, with primary wastewater exhibiting the highest viscosity and seawater plus pig slurry the lowest. The concentration of heterotrophic bacteria was directly related to the viscosity. Extracellular polysaccharides (EPS) in supernatant exhibited an inverse viscosity trend compared to biomass concentrates, with pig slurry cultures having higher concentrations. These findings emphasize the profound influence of culture medium and EPS on the rheology of microalgal biomass, underscoring the need for continued research aimed at facilitating and optimizing large-scale downstream processes within the framework of a circular economy and the attainment of the Sustainable Development Goals (6,8, and 12).


Asunto(s)
Microalgas , Animales , Porcinos , Microalgas/metabolismo , Medios de Cultivo/farmacología , Medios de Cultivo/metabolismo , Aguas Residuales , Polisacáridos/metabolismo , Biocombustibles , Biomasa
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