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The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation

Small-sized droplets/aerosol transmission is one of the factors responsible for the spread of COVID-19, in addition to large droplets and surface contamination (fomites). While large droplets and surface contamination can be relatively easier to deal with (i.e., using mask and proper hygiene measure...

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Autores principales: Suwardi, Ady, Ooi, Chin Chun, Daniel, Dan, Tan, Chee Kiang Ivan, Li, Hongying, Liang, Ou Yang Zhong, Tang, Yuanting Karen, Chee, Jing Yee, Sadovoy, Anton, Jiang, Shu-Ye, Ramachandran, Srinivasan, Ye, Enyi, Kang, Chang Wei, Cheong, Wun Chet Davy, Lim, Keng Hui, Loh, Xian Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896556/
https://www.ncbi.nlm.nih.gov/pubmed/33655212
http://dx.doi.org/10.34133/2021/2173642
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author Suwardi, Ady
Ooi, Chin Chun
Daniel, Dan
Tan, Chee Kiang Ivan
Li, Hongying
Liang, Ou Yang Zhong
Tang, Yuanting Karen
Chee, Jing Yee
Sadovoy, Anton
Jiang, Shu-Ye
Ramachandran, Srinivasan
Ye, Enyi
Kang, Chang Wei
Cheong, Wun Chet Davy
Lim, Keng Hui
Loh, Xian Jun
author_facet Suwardi, Ady
Ooi, Chin Chun
Daniel, Dan
Tan, Chee Kiang Ivan
Li, Hongying
Liang, Ou Yang Zhong
Tang, Yuanting Karen
Chee, Jing Yee
Sadovoy, Anton
Jiang, Shu-Ye
Ramachandran, Srinivasan
Ye, Enyi
Kang, Chang Wei
Cheong, Wun Chet Davy
Lim, Keng Hui
Loh, Xian Jun
author_sort Suwardi, Ady
collection PubMed
description Small-sized droplets/aerosol transmission is one of the factors responsible for the spread of COVID-19, in addition to large droplets and surface contamination (fomites). While large droplets and surface contamination can be relatively easier to deal with (i.e., using mask and proper hygiene measures), aerosol presents a different challenge due to their ability to remain airborne for a long time. This calls for mitigation solutions that can rapidly eliminate the airborne aerosol. Pre-COVID-19, air ionizers have been touted as effective tools to eliminate small particulates. In this work, we sought to evaluate the efficacy of a novel plant-based ionizer in eliminating aerosol. It was found that factors such as the ion concentration, humidity, and ventilation can drastically affect the efficacy of aerosol removal. The aerosol removal rate was quantified in terms of ACH (air changes per hour) and CADR- (clean air delivery rate-) equivalent unit, with ACH as high as 12 and CADR as high as 141 ft(3)/minute being achieved by a plant-based ionizer in a small isolated room. This work provides an important and timely guidance on the effective deployment of ionizers in minimizing the risk of COVID-19 spread via airborne aerosol, especially in a poorly-ventilated environment.
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spelling pubmed-78965562021-03-01 The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation Suwardi, Ady Ooi, Chin Chun Daniel, Dan Tan, Chee Kiang Ivan Li, Hongying Liang, Ou Yang Zhong Tang, Yuanting Karen Chee, Jing Yee Sadovoy, Anton Jiang, Shu-Ye Ramachandran, Srinivasan Ye, Enyi Kang, Chang Wei Cheong, Wun Chet Davy Lim, Keng Hui Loh, Xian Jun Research (Wash D C) Research Article Small-sized droplets/aerosol transmission is one of the factors responsible for the spread of COVID-19, in addition to large droplets and surface contamination (fomites). While large droplets and surface contamination can be relatively easier to deal with (i.e., using mask and proper hygiene measures), aerosol presents a different challenge due to their ability to remain airborne for a long time. This calls for mitigation solutions that can rapidly eliminate the airborne aerosol. Pre-COVID-19, air ionizers have been touted as effective tools to eliminate small particulates. In this work, we sought to evaluate the efficacy of a novel plant-based ionizer in eliminating aerosol. It was found that factors such as the ion concentration, humidity, and ventilation can drastically affect the efficacy of aerosol removal. The aerosol removal rate was quantified in terms of ACH (air changes per hour) and CADR- (clean air delivery rate-) equivalent unit, with ACH as high as 12 and CADR as high as 141 ft(3)/minute being achieved by a plant-based ionizer in a small isolated room. This work provides an important and timely guidance on the effective deployment of ionizers in minimizing the risk of COVID-19 spread via airborne aerosol, especially in a poorly-ventilated environment. AAAS 2021-02-11 /pmc/articles/PMC7896556/ /pubmed/33655212 http://dx.doi.org/10.34133/2021/2173642 Text en Copyright © 2021 Ady Suwardi et al. https://creativecommons.org/licenses/by/4.0/ Exclusive Licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Suwardi, Ady
Ooi, Chin Chun
Daniel, Dan
Tan, Chee Kiang Ivan
Li, Hongying
Liang, Ou Yang Zhong
Tang, Yuanting Karen
Chee, Jing Yee
Sadovoy, Anton
Jiang, Shu-Ye
Ramachandran, Srinivasan
Ye, Enyi
Kang, Chang Wei
Cheong, Wun Chet Davy
Lim, Keng Hui
Loh, Xian Jun
The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation
title The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation
title_full The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation
title_fullStr The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation
title_full_unstemmed The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation
title_short The Efficacy of Plant-Based Ionizers in Removing Aerosol for COVID-19 Mitigation
title_sort efficacy of plant-based ionizers in removing aerosol for covid-19 mitigation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896556/
https://www.ncbi.nlm.nih.gov/pubmed/33655212
http://dx.doi.org/10.34133/2021/2173642
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