Disinfection of Transparent Screens by Side-Coupled UVA LED Radiation

Author:

Sicks Ben1ORCID,Gierke Anna-Maria1ORCID,Sommerfeld Florian1,Klein Martin2,Hessling Martin1ORCID

Affiliation:

1. Department of Medical Engineering and Mechatronics, Ulm University of Applied Sciences, Albert-Einstein-Allee 55, 89081 Ulm, Germany

2. Büchner Lichtsysteme GmbH, Uzstraße 2, 86465 Welden, Germany

Abstract

(1) Background: Applications using touch screens are increasingly deployed in medical facilities, as well as in public areas. When touching the display with fingers, potentially pathogenic microorganisms such as methicillin-resistant Staphylococcus aureus (MRSA) can be transmitted. An automated process to decontaminate the device in between users would be highly useful. (2) Methods: Thin glass plates were superficially contaminated with the non-pathogenic Staphylococcus carnosus in a controlled manner. Subsequently, UVA radiation of 400 or 380 nm was laterally coupled into the glass plate, which acted as a light guide. Contact agar plates recorded the change in the staphylococci concentration over time. Additionally, the UVA radiation emitted by the glass plates was measured and the potential risk to humans assessed. (3) Results: Staphylococci concentration decreased as a result of UVA radiation for both wavelengths. At 400 nm, it took about 7.5 h and at 380 nm about 1 h until a reduction of 90% was reached. To meet higher disinfection requirements, disproportionately longer irradiation times were necessary. The potential UVA irradiation of humans in front of the glass pane was about 35 µW/cm2 or less and posed no risk to humans. (4) Conclusions: Side-coupled UVA radiation is in principle capable of safely automatically disinfecting microorganisms on touch screens. However, the required irradiation times are still in the hour range, so that a rapid disinfection within a minute or less is not yet possible with the presented setup. However, higher UVA intensities might reduce the current disinfection durations.

Funder

German Federal Ministry of Economics and Technology

Publisher

MDPI AG

Subject

General Medicine

Reference24 articles.

1. Data Bridge Market Research (2022). Global Touch Screen Display Market, by Screen Types (Capacitive Touch Screens, Resistive Touch Screens, Surface Acoustic Wave Type Displays, Infrared Touch Screens, Others), Application (Personal Use, Professional Use)—Industry Trends and Forecast to 2029, Data Bridge Market Research.

2. Grand View Research (2019). Commercial Display Market Size, Share & Trends Analysis Report By Product (Digital Signage, Display Monitor, Display TVs), by Technology, by Component, by Display Size, by Display Type, by Application, by Region, And Segment Forecasts, 2020–2025.

3. Emerging Strategies to Combat ESKAPE Pathogens in the Era of Antimicrobial Resistance: A Review;Mulani;Front. Microbiol.,2019

4. Review of microbial touchscreen contamination for the determination of reasonable ultraviolet disinfection doses;Hessling;GMS Hyg. Infect. Control.,2021

5. Portable UV light as an alternative for decontamination;Petersson;Am. J. Infect. Control.,2014

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