Estimating the Anti-Viral Performance of Photocatalytic Materials: The Correlation between Air Purification Efficiency and Severe Acute Respiratory Syndrome Coronavirus 2 Inactivation

Author:

Ochiai Tsuyoshi1ORCID,Nagai Takeshi2,Hamada Kengo1ORCID,Tobe Tomoyuki1,Aoki Daisuke1,Sunada Kayano2,Ishiguro Hitoshi2ORCID

Affiliation:

1. Kawasaki Technical Support Department, Local Independent Administrative Agency Kanagawa Institute of Industrial Science and Technology (KISTEC), Ground Floor East Wing, Innovation Center Building, KSP, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Kanagawa, Japan

2. Research and Development Department, KISTEC, 3-25-13 Tonomachi, Kawasaki 210-0821, Kanagawa, Japan

Abstract

The coronavirus disease 2019 pandemic has increased the demand for anti-viral products. Photocatalytic materials are used to develop coatings and air purifiers that inactivate severe acute respiratory syndrome coronavirus 2. However, the methods for evaluating the anti-viral performance of photocatalytic materials are time-consuming. To address this problem, herein, we propose a screening test for the anti-viral performance of photocatalytic materials based on the ‘acetaldehyde decomposition test’—an air purification efficiency test used to evaluate the decomposition performance of photocatalytic materials. This test is suitable for screening multiple samples and conditions in a short period. The temporal variation in the acetaldehyde concentration was approximated using an exponential function, similar to the temporal variation in the viral infection values. Thereafter, the slope of the regression line for the acetaldehyde concentration over time was used as an indicator in the screening tests. When the anti-viral performance and acetaldehyde decomposition tests were conducted on the same photocatalytic material, a correlation was observed between the slopes of the regression lines. Overall, the proposed screening test shows good potential for evaluating the anti-viral performance of photocatalytic materials.

Publisher

MDPI AG

Reference23 articles.

1. (2023, December 07). Coronavirus Disease (COVID-19) Pandemic. Available online: https://www.who.int/europe/emergencies/situations/covid-19.

2. (2023, December 07). Coronavirus (COVID-19) Dashboard. Available online: https://covid19.who.int/.

3. Effectiveness of public health measures in reducing the incidence of COVID-19, SARS-CoV-2 transmission, and COVID-19 mortality: Systematic review and meta-analysis;Talic;BMJ,2021

4. Electrochemical Photolysis of Water at a Semiconductor Electrode;Fujishima;Nature,1972

5. Chiu, Y.-H., Chang, T.-F.M., Chen, C.-Y., Sone, M., and Hsu, Y.-J. (2019). Mechanistic insights into photodegradation of organic dyes using heterostructure photocatalysts. Catalysts, 9.

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