Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II)
Descripción del Articulo
Fly ash, a byproduct of coal burning and gasification, is a significant source of global pollution and is classified as hazardous waste. However, physicochemical treatments can improve their adsorption capacity by increasing their surface area. This research aimed to enhance the adsorption capacity...
| Autores: | , , , , , |
|---|---|
| Formato: | artículo |
| Fecha de Publicación: | 2025 |
| Institución: | Universidad Nacional Federico Villarreal |
| Repositorio: | UNFV-Institucional |
| Lenguaje: | inglés |
| OAI Identifier: | oai:repositorio.unfv.edu.pe:20.500.13084/11934 |
| Enlace del recurso: | https://hdl.handle.net/20.500.13084/11934 |
| Nivel de acceso: | acceso abierto |
| Materia: | Fly ash Zeolites Adsorption Cd(II) removal Surface area https://purl.org/pe-repo/ocde/ford#1.00.00 |
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| dc.title.none.fl_str_mv |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| title |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| spellingShingle |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) Pérez-Chauca, León Fernando Fly ash Zeolites Adsorption Cd(II) removal Surface area https://purl.org/pe-repo/ocde/ford#1.00.00 |
| title_short |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| title_full |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| title_fullStr |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| title_full_unstemmed |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| title_sort |
Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II) |
| author |
Pérez-Chauca, León Fernando |
| author_facet |
Pérez-Chauca, León Fernando Castañeda Pérez, Luz Genara Carrasco-Venegas, Luis Américo Quispe-Cisneros, Juan Luis Torres-Garay, Alfredo González-Fernández, José Vulfrano |
| author_role |
author |
| author2 |
Castañeda Pérez, Luz Genara Carrasco-Venegas, Luis Américo Quispe-Cisneros, Juan Luis Torres-Garay, Alfredo González-Fernández, José Vulfrano |
| author2_role |
author author author author author |
| dc.contributor.author.fl_str_mv |
Pérez-Chauca, León Fernando Castañeda Pérez, Luz Genara Carrasco-Venegas, Luis Américo Quispe-Cisneros, Juan Luis Torres-Garay, Alfredo González-Fernández, José Vulfrano |
| dc.subject.none.fl_str_mv |
Fly ash Zeolites Adsorption Cd(II) removal Surface area |
| topic |
Fly ash Zeolites Adsorption Cd(II) removal Surface area https://purl.org/pe-repo/ocde/ford#1.00.00 |
| dc.subject.ocde.none.fl_str_mv |
https://purl.org/pe-repo/ocde/ford#1.00.00 |
| description |
Fly ash, a byproduct of coal burning and gasification, is a significant source of global pollution and is classified as hazardous waste. However, physicochemical treatments can improve their adsorption capacity by increasing their surface area. This research aimed to enhance the adsorption capacity of fly ash from the brick manufacturing industry to remove Cd(II) ions by optimizing its surface area. The treatment process was designed with two factors: sodium hydroxide concentration and stirring time, each evaluated at three levels. The modification was confirmed through X-ray diffraction analysis of its mineralogical composition. Using the BET method, the initial fly ash exhibited a surface area of 8.59 m2/g, which increased to a maximum of 33.99 m2/g after treatment. The proposed modification method successfully quadrupled the surface area under optimal conditions: 2.0 M NaOH concentration and 60 min of stirring. The 32 factorial design shows that the highest degree of Cd(II) removal is 99.75%, which is achieved using the modified fly ash with a surface area of 33.99 m2/g under favorable operating conditions of 30 min and 600 rpm stirring speed. |
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2025 |
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2026-03-11T21:22:33Z |
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2026-03-11T21:22:33Z |
| dc.date.issued.fl_str_mv |
2025 |
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info:eu-repo/semantics/article |
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info:eu-repo/semantics/publishedVersion |
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article |
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https://hdl.handle.net/20.500.13084/11934 |
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https://hdl.handle.net/20.500.13084/11934 |
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eng |
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eng |
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info:eu-repo/semantics/openAccess |
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https://creativecommons.org/licenses/by/4.0/ |
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https://creativecommons.org/licenses/by/4.0/ |
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Pérez-Chauca, León FernandoCastañeda Pérez, Luz GenaraCarrasco-Venegas, Luis AméricoQuispe-Cisneros, Juan LuisTorres-Garay, AlfredoGonzález-Fernández, José Vulfrano2026-03-11T21:22:33Z2026-03-11T21:22:33Z2025https://hdl.handle.net/20.500.13084/11934Fly ash, a byproduct of coal burning and gasification, is a significant source of global pollution and is classified as hazardous waste. However, physicochemical treatments can improve their adsorption capacity by increasing their surface area. This research aimed to enhance the adsorption capacity of fly ash from the brick manufacturing industry to remove Cd(II) ions by optimizing its surface area. The treatment process was designed with two factors: sodium hydroxide concentration and stirring time, each evaluated at three levels. The modification was confirmed through X-ray diffraction analysis of its mineralogical composition. Using the BET method, the initial fly ash exhibited a surface area of 8.59 m2/g, which increased to a maximum of 33.99 m2/g after treatment. The proposed modification method successfully quadrupled the surface area under optimal conditions: 2.0 M NaOH concentration and 60 min of stirring. The 32 factorial design shows that the highest degree of Cd(II) removal is 99.75%, which is achieved using the modified fly ash with a surface area of 33.99 m2/g under favorable operating conditions of 30 min and 600 rpm stirring speed.application/pdfenginfo:eu-repo/semantics/openAccesshttps://creativecommons.org/licenses/by/4.0/Fly ashZeolitesAdsorptionCd(II) removalSurface areahttps://purl.org/pe-repo/ocde/ford#1.00.00Modification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II)info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionCHreponame:UNFV-Institucionalinstname:Universidad Nacional Federico Villarrealinstacron:UNFVORIGINALModification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II)Articulo CASTANEDA PEREZ.pdfapplication/pdf4321825https://repositorio.unfv.edu.pe/bitstreams/7028e2de-6e54-40ea-8275-fb03333248c8/downloadfddfb81238b1843c8b59575e99d75932MD51trueAnonymousREADLICENSElicense.txtWritten by org.dspace.content.LicenseUtilstext/plain; charset=utf-81381https://repositorio.unfv.edu.pe/bitstreams/f97d9082-42b6-465a-b5f4-5a7937122a90/download1965a3e99bf45a7e1dc0843e0d18767aMD52falseAnonymousREADTEXTModification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II).txtWritten by FormatFilter org.dspace.app.mediafilter.TikaTextExtractionFilter on 2026-03-12T03:01:04Z (GMT).Extracted texttext/plain90682https://repositorio.unfv.edu.pe/bitstreams/099282c3-fc56-483f-aab3-c659bde2a9ac/downloadc8e4afdadf05a93421d0ae8b260a709dMD53falseAnonymousREADTHUMBNAILModification of the Adsorption Capacity of Brick Industry Fly Ash for the Removal of Cd(II).jpgWritten by FormatFilter org.dspace.app.mediafilter.PDFBoxThumbnail on 2026-03-12T03:01:04Z (GMT).Generated Thumbnailimage/jpeg5679https://repositorio.unfv.edu.pe/bitstreams/801f39b6-f02c-4a1e-beb9-0e454cce8d83/download219082b86ffcdc474215760516fdb6c7MD54falseAnonymousREAD20.500.13084/11934oai:repositorio.unfv.edu.pe:20.500.13084/119342026-05-04T23:25:46.458719Zhttps://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccessopen.accesshttps://repositorio.unfv.edu.peRepositorio Institucional UNFVrepositorio.unfv@gmail.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 |
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