Emerging risk assessment in areas affected by the Valencia DANA flood: Microplastics and pathogens in sediment and dust

This study aims to quantify the concentration and characterize the morphology of microplastics (MPs) and microbial contaminants in sediment and dust samples from areas affected by the "DANA", an Isolated High-Level Depression or cold drop. The floods caused by the DANA on October 29th, 202...

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Detalles Bibliográficos
Autores: Sánchez Alberola, Santiago, Núñez, Eugenia, López Gómez, Félix Antonio, Sánchez Moragas, Gloria, Pérez-Cataluña, Alba, Allende, Ana, Truchado, Pilar, Galindo Jiménez, Inés, García López-Davalillo, Juan Carlos, López-Rubio, Amparo, Fabra, María José
Tipo de recurso: artículo
Estado:Versión aceptada para publicación
Fecha de publicación:2026
País:España
Institución:Consejo Superior de Investigaciones Científicas (CSIC)
Repositorio:DIGITAL.CSIC. Repositorio Institucional del CSIC
OAI Identifier:oai:dnet:digitalcsic_::c8da19b9a3d84ef34c228660f300e552
Acceso en línea:http://hdl.handle.net/10261/426034
Access Level:acceso embargado
Palabra clave:Dust
Flooding
Human health
Microbial contaminants
Microplastics
Pathogens
Sediment
human health
flooding
contaminants
microplastics
pathogens
Descripción
Sumario:This study aims to quantify the concentration and characterize the morphology of microplastics (MPs) and microbial contaminants in sediment and dust samples from areas affected by the "DANA", an Isolated High-Level Depression or cold drop. The floods caused by the DANA on October 29th, 2024, resulted in significant damage across several regions in eastern Spain, transporting sediments and (emerging)-contaminants to urban, agricultural, and aquatic ecosystems. Samples were collected from the main affected municipalities. MPs were identified using Raman spectroscopy, while microbial contaminants were analyzed through ISO-standard culture methods, plaque assays for coliphages, and RT-qPCR for enteric viruses. The results of this study showed that dust samples contained twice the concentration of MPs per gram compared to sediment samples, primarily composed of polyethylene (PE), polypropylene (PP), polystyrene (PS), polyvinyl chloride (PVC), rubber (SBR) and polyethylene terephthalate (PET). Morphological analysis revealed a prevalence of fragments over fibres and films, with smaller particle sizes in the dust samples, increasing their potential for dispersion and inhalation. The presence of microbial contaminants in dust was low. In contrast, the sediments were identified as key reservoirs of pathogenic microorganisms, including Salmonella spp., Escherichia coli, and human enteric viruses, which may lead to prolonged environmental persistence and increased risks to ecosystems and human health. These results confirm that flood events can redistribute MPs and pathogens differently across sludge and dust, representing a critical pathway for human exposure. These findings underline the urgent need for control and mitigation strategies to limit the environmental dispersal of these contaminants. Given their potential impacts on ecosystems, soil quality, and human health, further research is required to evaluate the long-term consequences of microplastics and associated pollutants in the affected regions.