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In-situ disinfection of wastes generated in dwellings by utilizing ozone for their safe incorporation into the recycling chain

Identifiers
URI: http://hdl.handle.net/20.500.12251/3040
View/Open: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85121465754&doi=10.1016%2fj.wasman.2021.11.041&partnerID=40&md5=5d6dc21a4d862c2d9f21301f521c1b39
ISSN: 0956-053X
DOI: 10.1016/j.wasman.2021.11.041
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Author
Marín García, David; Bienvenido Huertas, David; Moyano Campos, Juan José; Oliveira, Miguel José
Date
2022
Subject/s

Covid-19

Gestión de residuos

Ozono

Reciclaje - Construcción

Ventilación (Construcción)

Edificación residencial

Unesco Subject/s

3305.14 Viviendas

3308.04 Ingeniería de la Contaminación

6310.09 Calidad de Vida

Abstract

The Covid-19 pandemic has certainly changed behaviour patterns in many aspects of life, such as the management of solid wastes inside residential spaces. The goal of this research work is to study an ozone generator device as a disinfection and sterilization tool for these wastes in dwellings themselves, thus re-establishing the selective collection to take them back to the recycling chain. In addition, an approach to the risk verification is made. The methodology is based on an experimentation with a device designed to be as cheap as possible. A room like a bedroom is used as a test bed to apply the device, but with no people inside the room to avoid risks. The results show that the device is feasible, concluding that risks are acceptable if its use is correct and appropriate equipment is available to be applied and controlled, all without prejudice of the rigorous control by the competent authorities that approve its use. © 2021 The Authors

The Covid-19 pandemic has certainly changed behaviour patterns in many aspects of life, such as the management of solid wastes inside residential spaces. The goal of this research work is to study an ozone generator device as a disinfection and sterilization tool for these wastes in dwellings themselves, thus re-establishing the selective collection to take them back to the recycling chain. In addition, an approach to the risk verification is made. The methodology is based on an experimentation with a device designed to be as cheap as possible. A room like a bedroom is used as a test bed to apply the device, but with no people inside the room to avoid risks. The results show that the device is feasible, concluding that risks are acceptable if its use is correct and appropriate equipment is available to be applied and controlled, all without prejudice of the rigorous control by the competent authorities that approve its use. © 2021 The Authors

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