Zobrazeno 1 - 10
of 57
pro vyhledávání: '"M Dolors Balaguer"'
Autor:
Ariadna Vilar-Sanz, Sebastià Puig, Arantzazu García-Lledó, Rosalia Trias, M Dolors Balaguer, Jesús Colprim, Lluís Bañeras
Publikováno v:
PLoS ONE, Vol 8, Iss 5, p e63460 (2013)
The biocathodic reduction of nitrate in Microbial Fuel Cells (MFCs) is an alternative to remove nitrogen in low carbon to nitrogen wastewater and relies entirely on microbial activity. In this paper the community composition of denitrifiers in the ca
Externí odkaz:
https://doaj.org/article/e81d89fa777042f2b2781c1c9bdabb94
Autor:
Meritxell Romans-Casas, Laura Feliu-Paradeda, Michele Tedesco, Hubertus V.M. Hamelers, Lluis Bañeras, M. Dolors Balaguer, Sebastià Puig, Paolo Dessì
Publikováno v:
Environmental Science and Ecotechnology, Vol 17, Iss , Pp 100303- (2024)
Microbial electrosynthesis (MES) is a promising carbon utilization technology, but the low-value products (i.e., acetate or methane) and the high electric power demand hinder its industrial adoption. In this study, electrically efficient MES cells wi
Externí odkaz:
https://doaj.org/article/c5f5ba31c5ce4191ab900b249ee27204
Biofilms in aquatic ecosystems colonize various surfaces (sand, rocks, leaves) and play a key role in the environment. Aquatic biofilms supply energy and organic matter to the food chain, they are important in recycling organic matter and contribute
Autor:
Miguel Osset-Álvarez, Narcís Pous, Shadi W. Hasan, Vincenzo Naddeo, M. Dolors Balaguer, Sebastià Puig
Publikováno v:
Case Studies in Chemical and Environmental Engineering, Vol 4, Iss , Pp 100143- (2021)
Externí odkaz:
https://doaj.org/article/c98ae18ac28a4139a5099214e31586a2
Publikováno v:
Bioresource Technology, 2022, vol. 365, art.núm.128161
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
instname
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
instname
Human activities release more carbon dioxide (CO2) into the atmosphere than the natural process can remove. This study attempts to address the main challenges for the thermophilic (50 °C) bioelectrochemical conversion of CO2 into acetate. First, rea
Akademický článek
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Publikováno v:
Bioresource technology. 354
Anaerobic gas fermentation is a promising approach to transform carbon dioxide (CO
Autor:
Miguel Osset-Álvarez, Narcis Pous, Paola Chiluiza-Ramos, Lluís Bañeras, M. Dolors Balaguer, Sebastià Puig
Publikováno v:
Bioresource Technology Reports
Bioresource Technology Reports, 2022, vol. 17, art. núm. 100975
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
instname
Bioresource Technology Reports, 2022, vol. 17, art. núm. 100975
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
instname
Microbial electricity-driven anoxic ammonium removal could remove ammonium from wastewater without the presence of oxygen (aeration) using electricity. This study aims at unveiling the potential biologic pathways for the bioelectrochemical oxidation
Publikováno v:
Bioresource Technology, 2022, art. núm.127181
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
Universidad de Cantabria (UC)
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
Universidad de Cantabria (UC)
Anaerobic gas fermentation is a promising approach to transform carbon dioxide (CO2) into chemical building blocks. However, the main operational conditions to enhance the process and its selectivity are still unknown. The main objective of this stud
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::eb96089aac4d5702d288d9782ef2fb0a
http://hdl.handle.net/10256/20869
http://hdl.handle.net/10256/20869
Autor:
Narcís Pous, M. Dolors Balaguer, Silvio Matassa, Paola Chiluiza-Ramos, Lluis Bañeras, Sebastià Puig
Publikováno v:
Bioresource Technology Reports, 2022, vol. 18, art.núm. 101010
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
instname
Articles publicats (D-EQATA)
DUGiDocs – Universitat de Girona
instname
Hydrogen-oxidizing bacteria (HOBs) are prime candidates for the sustainable production of microbial protein because of their high nutritional value and simple metabolic requirements, which could allow a simple resource recycling of NH4+ and CO2 into
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2ed4dc3f5dc889bfa604f88c7071ffdd
http://hdl.handle.net/10256/20821
http://hdl.handle.net/10256/20821