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  4. A review of autotrophic denitrification for groundwater remediation: A special focus on bioelectrochemical reactors
 
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A review of autotrophic denitrification for groundwater remediation: A special focus on bioelectrochemical reactors

Revista
Journal of Environmental Chemical Engineering
ISSN
22133437
Fecha de publicación
2024-02-01
Autor
Ortega-Martínez, Eduardo 
Toledo-Alarcón, Javiera 
Fernández, Edel 
Campos, José Luis 
Oyarzún, Ricardo 
Etchebehere, Claudia 
Cardeña, René 
Cabezas, Angela 
Koók, László 
Bakonyi, Péter 
Magdalena, José Antonio 
Trably, Eric 
Bernet, Nicolas 
Jeison N., David 
Scopus ID
SCOPUS_ID:85179125482
DOI
10.1016/j.jece.2023.111552
Acceso oficial vía DOI
https://doi.org/10.1016/j.jece.2023.111552
Resumen
Groundwater is an important resource that can help in climate change adaptation. However, the pollution of these aquifers with nitrate is a widespread problem of growing concern. Biological denitrification using inorganic electron donors shows significant advantages in treating nitrate-polluted groundwater where organic matter presence is negligible. However, mass transfer limitations and secondary contamination seem to be the major hinderance to spread the use of these technologies. This could be solved by the use of bioelectrochemical systems (BES), which emerge as an attractive technology to solve these problems due to the reported low energy demand and high denitrification rates. However, technical and operational issues must be considered to replicate these results at full-scale. This review summarizes the biological basis of autotrophic denitrification and the key aspects of its application in bioelectrochemical systems. In addition, an estimation of the capital costs required for the implementation of a BES considering different population sizes and initial nitrate concentration in the groundwater is made.
Derechos de acceso
closed access
Materias

Autotrophic denitrifi...

Bioelectrochemical sy...

Bioremediation

Groundwater recuperat...

Investment costs

Microbial community

 

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