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https://doi.org/10.17559/TV-20260318003464

A Contactless Glove-Donning System Integrated with Closed-Loop Vaporized Hydrogen Peroxide Decontamination

Pil-Kee Min ; Department of Informatics, The University of Electro-Communications, 1-5-1 Chofugaoka, Chofu, Tokyo 182-8585, Japan
Kazuyuki Mito ; Department of Informatics, The University of Electro-Communications, 1-5-1 Chofugaoka, Chofu, Tokyo 182-8585, Japan
Byung-Chan Min ; Department of Industrial and Management Engineering, Hanbat National University, 125 Dongseodaero, Yuseong-gu, Daejeon 34158, Republic of Korea *

* Dopisni autor.


Puni tekst: engleski pdf 1.360 Kb

str. 2033-2041

preuzimanja: 0

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Sažetak

Cross-contamination during glove donning remains a persistent challenge in healthcare and laboratory environments, particularly when rapid and repeatable hygiene workflows are required. This study presents a contactless glove-donning prototype integrated with closed-loop vaporized hydrogen peroxide (VHP)-based decontamination, catalytic aeration, and process logging. The system comprises S/M/L glove cartridges, a 5-L VHP chamber, six injection nozzles with a flow straightener, sensor-based PID control, and a TiO2 catalytic exhaust module. Prototype performance was evaluated using Bacillus subtilis biological indicators (106 CFU), donning-cycle tests, residual H2O2 monitoring, and preliminary CFD-supported chamber uniformity analysis. At an operational condition corresponding to a 5% H2O2 source solution and 30 s exposure, the system achieved ≥ 99.9% biological indicator reduction. Across 100 donning cycles, the mean donning time was 14.6 ± 0.3 s, with donning accuracy above 95%. After catalytic aeration, residual H2O2 averaged 0.920 ppm, and all measurements were ≤ 1.0 ppm under the tested conditions. Sensor-feedback control reached the target condition in approximately 9 s, with intra-chamber concentration variation within ±3%. These results indicate that integrating contactless donning with VHP-based decontamination can improve workflow speed and repeatability while reducing direct hand-glove contact. However, the present findings represent prototype-level evidence obtained under controlled laboratory conditions. Further studies are required to validate performance under broader microbial loads, extended durability cycles, real-user variability, and clinically realistic environments.

Ključne riječi

catalytic aeration; closed-loop process control; contactless glove automation; hydrogen peroxide (H2O2) sterilization; process logging; user-customized glove cartridge; vaporized hydrogen peroxide decontamination

Hrčak ID:

350428

URI

https://hrcak.srce.hr/350428

Datum izdavanja:

31.8.2026.

Posjeta: 0 *