Assessment of a novel microalgae-cork based technology for removing antibiotics, pesticides and nitrates from groundwater

Autor/a

Rambaldo, Lorenzo

Ávila, Héctor

Escolà Casas, Mònica

Guivernau, Miriam

Viñas, Marc

Trobajo, Rosa

Pérez-Burillo, Javier

Mann, David G.

Fernández, Belén

Biel, Carme

Rizzo, Luigi

Bayona, Josep M.

Matamoros, Víctor

Fecha de publicación

2022-04-29



Resumen

Groundwater pollution has increased in recent years due to the intensification of agricultural and livestock activities. This results in a significant reduction in available freshwater resources. Here, we have studied the long term assessment of a green technology (1–4 L/day) based on a photobioreactor (PBR) containing immobilised microalgae–bacteria in polyurethane foam (PF) followed by a cork filter (CF) for removing nitrates, pesticides (atrazine and bromacil), and antibiotics (sulfamethoxazole and sulfacetamide) from groundwater. The prototype was moderately effective for removing nitrates (58%) at an HRT of 8 days, while its efficiency decreased at a HRT of 4 and 2 days (<20% removal). The combined use of PBR-CF enabled antibiotics and pesticides to be attenuated by up to 95% at an HRT of 8 days, but their attenuation decreased with shorter HRT, with pesticides being the compounds most affected (reducing from 97 to 98% at an HRT of 8 days to 23–45% at an HRT of 2 days). Pesticide transformation products were identified after the CF, supporting biodegradation as the main attenuation process. A gene-based metataxonomic assessment linked the attenuation of micropollutants to the presence of specific pesticide biodegradation species (e.g. genus Phenylobacterium, Sphingomonadaceae, and Caulobacteraceae). Therefore, the results highlighted the potential use of microalgae and cork to treat polluted groundwater.

Tipo de documento

Artículo

Versión del documento

Versión publicada

Lengua

Inglés

Materias CDU

502 - Naturaleza. Estudio, conservación y protección de la naturaleza

Páginas

10

Publicado por

Elsevier

Es versión de

Chemosphere

Número del acuerdo de la subvención

EC/LIFE/LIFE18 ENV-ES-000199/EU/Green solutions for treating groundwater pollution to meet drinking water directive standards/LIFE SPOT

MINECO/Programa Estatal de fomento de la investigación científica y técnica de excelencia/CTM2017-91355-EXP/ES/EXPLORANDO LA QUIMICA DE LA SIMBIOSIS EN LA ATENUACION DE CONTAMINANTES EMERGENTES. AVANCES EN EL TRATAMIENTO BIOLOGICO DE AGUAS RESIDUALES/SIMAGUA

Derechos

Attribution 4.0 International

Attribution 4.0 International

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