Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B
Industrial effluents, particularly those from the textile sector, are polluting water bodies with dyeing agents, posing a significant environmental threat. The need to remediate these waters is urgent, especially in the face of possible shortages. Conventional methods were not designed to eliminate...
- Autores:
-
González Mojica, Ana Melissa
- Tipo de recurso:
- Tesis
- Fecha de publicación:
- 2024
- Institución:
- Universidad Antonio Nariño
- Repositorio:
- Repositorio UAN
- Idioma:
- spa
- OAI Identifier:
- oai:repositorio.uan.edu.co:123456789/12201
- Acceso en línea:
- https://repositorio.uan.edu.co/handle/123456789/12201
- Palabra clave:
- Nanopartículas
Ruta fitogénica,
Fotocatálisis,
Agentes colorantes
Psidium guajava
Nanoparticles
Photocatalysis
Phytogenic route
Dye agents
Psidium guajava
Remediation
- Rights
- restrictedAccess
- License
- http://purl.org/coar/access_right/c_16ec
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Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| title |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| spellingShingle |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B Nanopartículas Ruta fitogénica, Fotocatálisis, Agentes colorantes Psidium guajava Nanoparticles Photocatalysis Phytogenic route Dye agents Psidium guajava Remediation |
| title_short |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| title_full |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| title_fullStr |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| title_full_unstemmed |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| title_sort |
Producción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina B |
| dc.creator.fl_str_mv |
González Mojica, Ana Melissa |
| dc.contributor.advisor.none.fl_str_mv |
Llamosa Pérez , Daniel Rolando Javier Rincon Ortiz |
| dc.contributor.author.none.fl_str_mv |
González Mojica, Ana Melissa |
| dc.subject.none.fl_str_mv |
Nanopartículas Ruta fitogénica, Fotocatálisis, Agentes colorantes Psidium guajava |
| topic |
Nanopartículas Ruta fitogénica, Fotocatálisis, Agentes colorantes Psidium guajava Nanoparticles Photocatalysis Phytogenic route Dye agents Psidium guajava Remediation |
| dc.subject.keyword.none.fl_str_mv |
Nanoparticles Photocatalysis Phytogenic route Dye agents Psidium guajava Remediation |
| description |
Industrial effluents, particularly those from the textile sector, are polluting water bodies with dyeing agents, posing a significant environmental threat. The need to remediate these waters is urgent, especially in the face of possible shortages. Conventional methods were not designed to eliminate this contaminant and can even generate secondary contamination. |
| publishDate |
2024 |
| dc.date.created.none.fl_str_mv |
2024-11-30 |
| dc.date.accessioned.none.fl_str_mv |
2025-02-04T22:00:43Z |
| dc.date.available.none.fl_str_mv |
2025-02-04T22:00:43Z |
| dc.date.issued.none.fl_str_mv |
2025-02-04 |
| dc.type.none.fl_str_mv |
Tesis/Trabajo de grado - Monografía - Pregrado |
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Estudio descriptivo |
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info:eu-repo/semantics/draft |
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http://purl.org/coar/resource_type/c_46ec |
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http://purl.org/redcol/resource_type/PIC |
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https://repositorio.uan.edu.co/handle/123456789/12201 |
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https://repositorio.uan.edu.co/handle/123456789/12201 |
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spa |
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spa |
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info:eu-repo/semantics/restrictedAccess |
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pdf |
| dc.publisher.none.fl_str_mv |
Universidad Antonio Nariño |
| dc.publisher.program.none.fl_str_mv |
Bioquímica |
| dc.publisher.faculty.none.fl_str_mv |
Facultad de Ciencias |
| dc.publisher.campus.none.fl_str_mv |
Bogotá - Circunvalar |
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Universidad Antonio Nariño |
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instname:Universidad Antonio Nariño |
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Universidad Antonio Nariño |
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Algarni, T. saad, & Al-Mohaimeed, A. M. (2022). Water purification by adsorption of pigments or pollutants via metaloxide. Journal of King Saud University - Science, 34(8), 102339. https://doi.org/10.1016/J.JKSUS.2022.102339 Ameta, R., Solanki, M. S., Benjamin, S., & Ameta, S. C. (2018). Photocatalysis. In Advanced Oxidation Processes for Wastewater Treatment: Emerging Green Chemical Technology. https://doi.org/10.1016/B978-0-12-810499-6.00006-1 Aquino, J. M., Rocha-Filho, R. C., Ruotolo, L. A. M., Bocchi, N., & Biaggio, S. R. (2014). Electrochemical degradation of a real textile wastewater using b-PbO 2 and DSA Ò anodes. https://doi.org/10.1016/j.cej.2014.04.032 Bao, J., Guo, S., Fan, D., Cheng, J., Zhang, Y., & Pang, X. (2023). Sonoactivated Nanomaterials: A potent armament for wastewater treatment. Ultrasonics Sonochemistry, 99. https://doi.org/10.1016/j.ultsonch.2023.106569 Benvenuti, T., Gabriel, A. P., Heberle, A. N. A., Lucena, M. P. P., Petter, P. M. H., Meneguzzi, Á., & Bernardes, A. M. (2018). Evaluation of direct photolysis, electrooxidation and photoelectrooxidation for rhodamine-B degradation. Brazilian Journal of Chemical Engineering, 35(3), 957–968. https://doi.org/10.1590/0104-6632.20180353s20170032 Bişgin, A. T., Sürme, Y., Uçan, M., & Narin, I. (2018). Separation, Preconcentration and Spectrophotometric Determination of Rhodamine B in Industrial, Cosmetic and Water Samples by Cloud Point and Solid Phase Extraction. Journal of Analytical Chemistry, 73(5), 452–458. https://doi.org/10.1134/S1061934818050040 Biswal, S. K., Panigrahi, G. K., & Sahoo, S. K. (2020). Green synthesis of Fe2O3-Ag nanocomposite using Psidium guajava leaf extract: An eco-friendly and recyclable adsorbent for remediation of Cr(VI) from aqueous media. Biophysical Chemistry, 263(February), 106392. https://doi.org/10.1016/j.bpc.2020.106392 Bogatu, C., Perniu, D., Sau, C., Iorga, O., Cosnita, M., & Duta, A. (2017). Ultrasound assisted solgel TiO2 powders and thin films for photocatalytic removal of toxic pollutants. Ceramics International, 43(11), 7963–7969. https://doi.org/10.1016/j.ceramint.2017.03.054 Bonilla Mora, K. Y. (2021). DEGRADATION OF ALLURA RED IN AQUEOUS SOLUTION USING AN ADVANCED OXIDATION PROCESS. Chakinala, N., Gogate, P. R., & Chakinala, A. G. (2021). Photocatalytic degradation of rhodamineb over mono- And bi-metallic tio2 catalysts. Materials Today: Proceedings, 43, 3066–3070. https://doi.org/10.1016/j.matpr.2021.01.403 |
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Llamosa Pérez , DanielRolando Javier Rincon OrtizGonzález Mojica, Ana Melissa2025-02-04T22:00:43Z2025-02-04T22:00:43Z2024-11-302025-02-04https://repositorio.uan.edu.co/handle/123456789/12201Industrial effluents, particularly those from the textile sector, are polluting water bodies with dyeing agents, posing a significant environmental threat. The need to remediate these waters is urgent, especially in the face of possible shortages. Conventional methods were not designed to eliminate this contaminant and can even generate secondary contamination.Los efluentes industriales, en particular los del sector textil, están contaminando los cuerpos de agua con agentes colorantes, lo que supone una importante amenaza para el ambiente. La necesidad de remediar estas aguas es urgente, sobre todo ante la inminente escasez de éste preciado recurso. Los métodos convencionales no fueron diseñados para eliminar este contaminante e incluso pueden generar contaminación secundaria.finalBioquímico(a)PregradoPresencialInvestigaciónpdfUniversidad Antonio NariñoBioquímicaFacultad de CienciasBogotá - Circunvalarinstname:Universidad Antonio NariñoAlgarni, T. saad, & Al-Mohaimeed, A. M. (2022). Water purification by adsorption of pigments or pollutants via metaloxide. Journal of King Saud University - Science, 34(8), 102339. https://doi.org/10.1016/J.JKSUS.2022.102339Ameta, R., Solanki, M. S., Benjamin, S., & Ameta, S. C. (2018). Photocatalysis. In Advanced Oxidation Processes for Wastewater Treatment: Emerging Green Chemical Technology. https://doi.org/10.1016/B978-0-12-810499-6.00006-1Aquino, J. M., Rocha-Filho, R. C., Ruotolo, L. A. M., Bocchi, N., & Biaggio, S. R. (2014). Electrochemical degradation of a real textile wastewater using b-PbO 2 and DSA Ò anodes. https://doi.org/10.1016/j.cej.2014.04.032Bao, J., Guo, S., Fan, D., Cheng, J., Zhang, Y., & Pang, X. (2023). Sonoactivated Nanomaterials: A potent armament for wastewater treatment. Ultrasonics Sonochemistry, 99. https://doi.org/10.1016/j.ultsonch.2023.106569Benvenuti, T., Gabriel, A. P., Heberle, A. N. A., Lucena, M. P. P., Petter, P. M. H., Meneguzzi, Á., & Bernardes, A. M. (2018). Evaluation of direct photolysis, electrooxidation and photoelectrooxidation for rhodamine-B degradation. Brazilian Journal of Chemical Engineering, 35(3), 957–968. https://doi.org/10.1590/0104-6632.20180353s20170032Bişgin, A. T., Sürme, Y., Uçan, M., & Narin, I. (2018). Separation, Preconcentration and Spectrophotometric Determination of Rhodamine B in Industrial, Cosmetic and Water Samples by Cloud Point and Solid Phase Extraction. Journal of Analytical Chemistry, 73(5), 452–458. https://doi.org/10.1134/S1061934818050040Biswal, S. K., Panigrahi, G. K., & Sahoo, S. K. (2020). Green synthesis of Fe2O3-Ag nanocomposite using Psidium guajava leaf extract: An eco-friendly and recyclable adsorbent for remediation of Cr(VI) from aqueous media. Biophysical Chemistry, 263(February), 106392. https://doi.org/10.1016/j.bpc.2020.106392Bogatu, C., Perniu, D., Sau, C., Iorga, O., Cosnita, M., & Duta, A. (2017). Ultrasound assisted solgel TiO2 powders and thin films for photocatalytic removal of toxic pollutants. Ceramics International, 43(11), 7963–7969. https://doi.org/10.1016/j.ceramint.2017.03.054Bonilla Mora, K. Y. (2021). DEGRADATION OF ALLURA RED IN AQUEOUS SOLUTION USING AN ADVANCED OXIDATION PROCESS.Chakinala, N., Gogate, P. R., & Chakinala, A. G. (2021). Photocatalytic degradation of rhodamineb over mono- And bi-metallic tio2 catalysts. Materials Today: Proceedings, 43, 3066–3070. https://doi.org/10.1016/j.matpr.2021.01.403NanopartículasRuta fitogénica,Fotocatálisis,Agentes colorantesPsidium guajavaNanoparticlesPhotocatalysisPhytogenic routeDye agentsPsidium guajavaRemediationProducción de un nanocompuesto con propiedades fotocatalíticas y magnéticas empleando Psidium guajava para la decolorar agua contaminada con azul de metileno y rodamina BTesis/Trabajo de grado - Monografía - PregradoEstudio descriptivoinfo:eu-repo/semantics/drafthttp://purl.org/coar/resource_type/c_46echttp://purl.org/redcol/resource_type/PIChttp://purl.org/coar/version/c_b1a7d7d4d402bcceEspecializadainfo:eu-repo/semantics/restrictedAccesshttp://purl.org/coar/access_right/c_16ecspaORIGINAL2024_AnaMelissaGonzálezMojica2024_AnaMelissaGonzálezMojicaTrabajo de ngradoapplication/pdf1465102https://repositorio.uan.edu.co/bitstreams/e4f7878f-2a52-497f-9914-c2e75b2cd716/downloadb91c8b17885b74ace6f642dc0beee8c2MD512024_AnaMelissaGonzálezMojica_Acta.pdf2024_AnaMelissaGonzálezMojica_Acta.pdfActaapplication/pdf1678179https://repositorio.uan.edu.co/bitstreams/faa2c3c3-b130-4c4a-a654-7eb5846f37e8/download5b1bf0639db480491c43c6e6d0699ad6MD522024_AnaMelissaGonzálezMojica_Autorización.pdf2024_AnaMelissaGonzálezMojica_Autorización.pdfAutorizaciónapplication/pdf1845042https://repositorio.uan.edu.co/bitstreams/f922fe02-a0dd-4114-a518-f35a925c13d4/download4c0dded65e420e5a37e09a3ec6f1d06bMD53123456789/12201oai:repositorio.uan.edu.co:123456789/122012025-02-04 22:00:44.944restrictedhttps://repositorio.uan.edu.coRepositorio Institucional UANalertas.repositorio@uan.edu.co |
