Potential use of coriander waste as fuel for the generation of electric power

Descripción del Articulo

The increase in the population and its need to produce food has caused the level of contamination by organic waste to increase exponentially in recent years. Innovative methods have been proposed for the use of this waste and thus to mitigate its impact. One of these is to use it as fuel in microbia...

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Detalles Bibliográficos
Autores: Gallozzo Cárdenas, Moisés Miguel, Rojas-Flores, Segundo, De la Cruz-Noriega, Magaly, Cabanillas-Chirinos, Luis, Nazario-Naveda, Renny, Diaz, Félix, Murga-Torres, Emzon
Formato: artículo
Fecha de Publicación:2023
Institución:Universidad Tecnológica del Perú
Repositorio:UTP-Institucional
Lenguaje:español
OAI Identifier:oai:repositorio.utp.edu.pe:20.500.12867/6546
Enlace del recurso:https://hdl.handle.net/20.500.12867/6546
https:// doi.org/10.3390/su15020896
Nivel de acceso:acceso abierto
Materia:Organic waste
Bioelectricity
Microbial fuel cells
https://purl.org/pe-repo/ocde/ford#2.07.03
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dc.title.es_PE.fl_str_mv Potential use of coriander waste as fuel for the generation of electric power
title Potential use of coriander waste as fuel for the generation of electric power
spellingShingle Potential use of coriander waste as fuel for the generation of electric power
Gallozzo Cárdenas, Moisés Miguel
Organic waste
Bioelectricity
Microbial fuel cells
https://purl.org/pe-repo/ocde/ford#2.07.03
title_short Potential use of coriander waste as fuel for the generation of electric power
title_full Potential use of coriander waste as fuel for the generation of electric power
title_fullStr Potential use of coriander waste as fuel for the generation of electric power
title_full_unstemmed Potential use of coriander waste as fuel for the generation of electric power
title_sort Potential use of coriander waste as fuel for the generation of electric power
author Gallozzo Cárdenas, Moisés Miguel
author_facet Gallozzo Cárdenas, Moisés Miguel
Rojas-Flores, Segundo
De la Cruz-Noriega, Magaly
Cabanillas-Chirinos, Luis
Nazario-Naveda, Renny
Diaz, Félix
Murga-Torres, Emzon
author_role author
author2 Rojas-Flores, Segundo
De la Cruz-Noriega, Magaly
Cabanillas-Chirinos, Luis
Nazario-Naveda, Renny
Diaz, Félix
Murga-Torres, Emzon
author2_role author
author
author
author
author
author
dc.contributor.author.fl_str_mv Gallozzo Cárdenas, Moisés Miguel
Rojas-Flores, Segundo
De la Cruz-Noriega, Magaly
Cabanillas-Chirinos, Luis
Nazario-Naveda, Renny
Diaz, Félix
Murga-Torres, Emzon
dc.subject.es_PE.fl_str_mv Organic waste
Bioelectricity
Microbial fuel cells
topic Organic waste
Bioelectricity
Microbial fuel cells
https://purl.org/pe-repo/ocde/ford#2.07.03
dc.subject.ocde.es_PE.fl_str_mv https://purl.org/pe-repo/ocde/ford#2.07.03
description The increase in the population and its need to produce food has caused the level of contamination by organic waste to increase exponentially in recent years. Innovative methods have been proposed for the use of this waste and thus to mitigate its impact. One of these is to use it as fuel in microbial fuel cells to generate electricity. This research aims to generate bioelectricity using coriander waste in microbial fuel cells. The maximum voltage and current observed were 0.882 ± 0.154 V and 2.287 ± 0.072 mA on the seventh and tenth day, respectively, these values were obtained working at an optimum operating pH of 3.9 ± 0.16 and with an electrical conductivity of 160.42 ± 4.54 mS/cm. The internal resistance observed in the cells was 75.581 ± 5.892 Ω, with a power density of 304.325 ± 16.51 mW/cm2 at 5.06 A/cm2 current density. While the intensity of the final FTIR (Fourier transform infrared spectroscopy) spectrum peaks decreased compared to the initial one, likewise, with a percentage of identity, it was possible to attribute 98.97, 99.39, and 100% to the species Alcaligenes faecalis, Alcaligenes faecali, and Pseudomonas aeruginosa. Finally, the cells were connected in series, managing to turn on an LED light (red) with the 2.61 V generated. This research provides an innovative and environmentally friendly way that companies and farmers can use to reuse their waste.
publishDate 2023
dc.date.accessioned.none.fl_str_mv 2023-01-27T16:11:44Z
dc.date.available.none.fl_str_mv 2023-01-27T16:11:44Z
dc.date.issued.fl_str_mv 2023
dc.type.es_PE.fl_str_mv info:eu-repo/semantics/article
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dc.identifier.issn.none.fl_str_mv 2071-1050
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12867/6546
dc.identifier.journal.es_PE.fl_str_mv Sustainability
dc.identifier.doi.none.fl_str_mv https:// doi.org/10.3390/su15020896
identifier_str_mv 2071-1050
Sustainability
url https://hdl.handle.net/20.500.12867/6546
https:// doi.org/10.3390/su15020896
dc.language.iso.es_PE.fl_str_mv spa
language spa
dc.relation.ispartofseries.none.fl_str_mv Sustainability;vol. 15, n° 2, pp. 1 - 10
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dc.publisher.es_PE.fl_str_mv Multidisciplinary Digital Publishing Institute
dc.publisher.country.es_PE.fl_str_mv CH
dc.source.es_PE.fl_str_mv Repositorio Institucional - UTP
Universidad Tecnológica del Perú
dc.source.none.fl_str_mv reponame:UTP-Institucional
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spelling Gallozzo Cárdenas, Moisés MiguelRojas-Flores, SegundoDe la Cruz-Noriega, MagalyCabanillas-Chirinos, LuisNazario-Naveda, RennyDiaz, FélixMurga-Torres, Emzon2023-01-27T16:11:44Z2023-01-27T16:11:44Z20232071-1050https://hdl.handle.net/20.500.12867/6546Sustainabilityhttps:// doi.org/10.3390/su15020896The increase in the population and its need to produce food has caused the level of contamination by organic waste to increase exponentially in recent years. Innovative methods have been proposed for the use of this waste and thus to mitigate its impact. One of these is to use it as fuel in microbial fuel cells to generate electricity. This research aims to generate bioelectricity using coriander waste in microbial fuel cells. The maximum voltage and current observed were 0.882 ± 0.154 V and 2.287 ± 0.072 mA on the seventh and tenth day, respectively, these values were obtained working at an optimum operating pH of 3.9 ± 0.16 and with an electrical conductivity of 160.42 ± 4.54 mS/cm. The internal resistance observed in the cells was 75.581 ± 5.892 Ω, with a power density of 304.325 ± 16.51 mW/cm2 at 5.06 A/cm2 current density. While the intensity of the final FTIR (Fourier transform infrared spectroscopy) spectrum peaks decreased compared to the initial one, likewise, with a percentage of identity, it was possible to attribute 98.97, 99.39, and 100% to the species Alcaligenes faecalis, Alcaligenes faecali, and Pseudomonas aeruginosa. Finally, the cells were connected in series, managing to turn on an LED light (red) with the 2.61 V generated. 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