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PMID: 34010343 Published · epublish English Journal Article

Numerical and experimental analyses for the improvement of surface instant decontamination technology through biocidal agent dispersion: Potential of application during pandemic.

PloS one ·Vol. 16 ·No. 5 ·2021-00-00 ·页码 e0251817

Freitas Neves PR, Oliveira TD, Magalhães TF, Dos Reis PRS, Tofaneli LA, Bandeira Santos AÁ, Machado BAS, Oliveira FO, da Silva Andrade LPC, Badaró R, Brêda Mascarenhas LA

Abstract

The transmission of SARS-CoV-2 through contact with contaminated surfaces or objects is an important form of transmissibility. Thus, in this study, we evaluated the performance of a disinfection chamber designed for instantaneous dispersion of the biocidal agent solution, in order to characterize a new device that can be used to protect individuals by reducing the transmissibility of the disease through contaminated surfaces. We proposed the necessary adjustments in the configuration to improve the dispersion on surfaces and the effectiveness of the developed equipment. Computational Fluid Dynamics (CFD) simulations of the present technology with a chamber having six nebulizer nozzles were performed and validated through qualitative and quantitative comparisons, and experimental tests were conducted using the method Water-Sensitive Paper (WSP), with an exposure to the biocidal agent for 10 and 30 s. After evaluation, a new passage procedure for the chamber with six nozzles and a new configuration of the disinfection chamber were proposed. In the chamber with six nozzles, a deficiency was identified in its central region, where the suspended droplet concentration was close to zero. However, with the new passage procedure, there was a significant increase in wettability of the surface. With the proposition of the chamber with 12 nozzles, the suspended droplet concentration in different regions increased, with an average increase of 266%. The experimental results of the new configuration proved that there was an increase in wettability at all times of exposure, and it was more significant for an exposure of 30 s. Additionally, even in different passage procedures, there were no significant differences in the results for an exposure of 10 s, thereby showing the effectiveness of the new configuration or improved spraying and wettability by the biocidal agent, as well as in minimizing the impact caused by human factor in the performance of the disinfection technology.

MeSH 主题词
COVID-19/epidemiology,metabolism,transmission,virology Decontamination/instrumentation,methods Disinfectants/analysis Disinfection/instrumentation,methods Humans Hydrodynamics Models, Theoretical Pandemics SARS-CoV-2/drug effects,isolation & purification
化学物质
Disinfectants
作者与单位
共 11 位作者,点击展开单位 / ORCID
Freitas Neves Paulo Roberto
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Oliveira Turan Dias
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Magalhães Tarcísio Faustino
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Dos Reis Paulo Roberto Santana
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Tofaneli Luzia Aparecida
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Bandeira Santos Alex Álisson
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Machado Bruna Aparecida Souza ORCID
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil. | SENAI CIMATEC, National Service of Industrial Learning-SENAI, SENAI Institute of Innovation (ISI) in Health Advanced Systems (CIMATEC ISI SAS), University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Oliveira Fabricia Oliveira
SENAI CIMATEC, National Service of Industrial Learning-SENAI, SENAI Institute of Innovation (ISI) in Health Advanced Systems (CIMATEC ISI SAS), University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
da Silva Andrade Leone Peter Correia
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil. | SENAI CIMATEC, National Service of Industrial Learning-SENAI, SENAI Institute of Innovation (ISI) in Health Advanced Systems (CIMATEC ISI SAS), University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Badaró Roberto
SENAI CIMATEC, National Service of Industrial Learning-SENAI, SENAI Institute of Innovation (ISI) in Health Advanced Systems (CIMATEC ISI SAS), University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Brêda Mascarenhas Luis Alberto
SENAI CIMATEC, National Service of Industrial Learning-SENAI, Computational Modeling and Industrial Technology, University Center SENAI/CIMATEC, Salvador, Bahia, Brazil. | SENAI CIMATEC, National Service of Industrial Learning-SENAI, SENAI Institute of Innovation (ISI) in Health Advanced Systems (CIMATEC ISI SAS), University Center SENAI/CIMATEC, Salvador, Bahia, Brazil.
Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2021-00-00
电子出版
2021-00-19
页码
e0251817
Language
English
Country/Region
United States
NLM ID
101285081
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