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Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2

The combination of UVC light and titanium dioxide (TiO2) can be an effective measure to combat the spread of COVID 19 and reduce the possibility of contagion in public places, hospitals, educational centers, by disinfecting surfaces and means of transports where human health is at risk. In this way,...

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Autores principales: Reyes Castillo, Diana Tonantzin, Lara Castro, Miguel, Hernández Xolo, Ramón, Ybarra Rivera, Ricardo Aurelio
Formato: Online Artículo
Lenguaje:spa
Publicado: Universidad Veracruzana 2022
Materias:
Acceso en línea:https://is.uv.mx/index.php/IS/article/view/2736
https://dx.doi.org/10.25009/is.v0i13.2736
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author Reyes Castillo, Diana Tonantzin
Lara Castro, Miguel
Hernández Xolo, Ramón
Ybarra Rivera, Ricardo Aurelio
author_facet Reyes Castillo, Diana Tonantzin
Lara Castro, Miguel
Hernández Xolo, Ramón
Ybarra Rivera, Ricardo Aurelio
author_sort Reyes Castillo, Diana Tonantzin
collection Interconectando Saberes
description The combination of UVC light and titanium dioxide (TiO2) can be an effective measure to combat the spread of COVID 19 and reduce the possibility of contagion in public places, hospitals, educational centers, by disinfecting surfaces and means of transports where human health is at risk. In this way, the TiO2 coating being a chemically stable compound, difficult to deteriorate, with oxidative potential capable of destroying the cell membrane of bacteria, causing leaks of the cytoplasm, it can coagulate the virus protein and inhibiting its activity, for which may be a very promising method for the disinfection of the SARS-CoV-2 virus. This proposal seeks a way to combat the spread of the COVID-19 virus, which is why it has chosen to manufacture a series of devices to carry out a disinfection of surfaces with the help of UVC light + TiO2.
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spelling oai_is-article-27362022-02-04T19:55:50Z Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2 Dispositivos para la inactivación del virus COVID-19 mediante procesos de desinfección con fotones altamente energéticos de UVC + TiO2 Reyes Castillo, Diana Tonantzin Lara Castro, Miguel Hernández Xolo, Ramón Ybarra Rivera, Ricardo Aurelio SARS-CoV-2 UVC Light TiO2 Photocatalysis SARS-CoV-2 Luz UVC TiO2 Fotocatálisis The combination of UVC light and titanium dioxide (TiO2) can be an effective measure to combat the spread of COVID 19 and reduce the possibility of contagion in public places, hospitals, educational centers, by disinfecting surfaces and means of transports where human health is at risk. In this way, the TiO2 coating being a chemically stable compound, difficult to deteriorate, with oxidative potential capable of destroying the cell membrane of bacteria, causing leaks of the cytoplasm, it can coagulate the virus protein and inhibiting its activity, for which may be a very promising method for the disinfection of the SARS-CoV-2 virus. This proposal seeks a way to combat the spread of the COVID-19 virus, which is why it has chosen to manufacture a series of devices to carry out a disinfection of surfaces with the help of UVC light + TiO2. El uso de luz UVC combinada con TiO2 puede ser una medida efectiva para combatir la propagación del COVID-19 y reducir la posibilidad de contagio en lugares públicos, hospitales, centros educativos, mediante la desinfección de superficies y medios de transporte donde la salud humana está en riesgo. De este modo, el recubrimiento de TiO2 al ser un compuesto químicamente estable, difícil de deteriorarse, con potencial oxidante capaz de destruir la membrana celular de las bacterias, provocando fugas del citoplasma, es capaz de coagular la proteína de virus e inhibir su actividad, por lo que puede ser un método muy prometedor para la desinfección del virus SARS-CoV-2. Esta propuesta busca la manera de combatir el esparcimiento del virus COVID-19, por lo que se ha optado por la fabricación de una serie de dispositivos para llevar a cabo una desinfección de superficies con la ayuda de luz UVC+TiO2. Universidad Veracruzana 2022-02-04 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion application/pdf https://is.uv.mx/index.php/IS/article/view/2736 10.25009/is.v0i13.2736 Interconectando Saberes; Núm. 13 (7): Interconectando Saberes, Número 13; 1-9 Interconectando Saberes; No. 13 (7): Interconectando Saberes, Issue 12; 1-9 2448-8704 spa https://is.uv.mx/index.php/IS/article/view/2736/4607 Derechos de autor 2022 Diana Tonantzin Reyes Castillo, Miguel Lara Castro, Ramón Hernández Xolo, Ricardo Aurelio Ybarra Rivera https://creativecommons.org/licenses/by-nc-nd/4.0
spellingShingle SARS-CoV-2
UVC Light
TiO2
Photocatalysis
SARS-CoV-2
Luz UVC
TiO2
Fotocatálisis
Reyes Castillo, Diana Tonantzin
Lara Castro, Miguel
Hernández Xolo, Ramón
Ybarra Rivera, Ricardo Aurelio
Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2
title Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2
title_alt Dispositivos para la inactivación del virus COVID-19 mediante procesos de desinfección con fotones altamente energéticos de UVC + TiO2
title_full Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2
title_fullStr Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2
title_full_unstemmed Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2
title_short Devices for the inactivation of the COVID-19 virus by disinfection processes with highly energetic photons of UVC + TiO2
title_sort devices for the inactivation of the covid-19 virus by disinfection processes with highly energetic photons of uvc + tio2
topic SARS-CoV-2
UVC Light
TiO2
Photocatalysis
SARS-CoV-2
Luz UVC
TiO2
Fotocatálisis
topic_facet SARS-CoV-2
UVC Light
TiO2
Photocatalysis
SARS-CoV-2
Luz UVC
TiO2
Fotocatálisis
url https://is.uv.mx/index.php/IS/article/view/2736
https://dx.doi.org/10.25009/is.v0i13.2736
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