Department of Mechanical Engineering, University of La Rioja, C/ San José de Calasanz 31, 26004 Logroño, La Rioja, Spain.
Molecular Microbiology Area, Center for Biomedical Research of La Rioja (CIBIR), C/Piqueras 98, 26006 Logroño, La Rioja, Spain.
Int J Infect Dis. 2022 Oct;123:145-156. doi: 10.1016/j.ijid.2022.08.012. Epub 2022 Aug 19.
Mask usage has increased over the last few years due to the COVID-19 pandemic, resulting in a mask shortage. Furthermore, their prolonged use causes skin problems related to bacterial overgrowth. To overcome these problems, atmospheric pressure cold plasma was studied as an alternative technology for mask disinfection.
Different microorganisms (Pseudomonas aeruginosa, Escherichia coli, Staphylococcus spp.), different gases (nitrogen, argon, and air), plasma power (90-300 W), and treatment times (45 seconds to 5 minutes) were tested.
The best atmospheric pressure cold plasma treatment was the one generated by nitrogen gas at 300 W and 1.5 minutes. Testing of breathing and filtering performance and microscopic and visual analysis after one and five plasma treatment cycles, highlighted that these treatments did not affect the morphology or functional capacity of the masks.
Considering the above, we strongly believe that atmospheric pressure cold plasma could be an inexpensive, eco-friendly, and sustainable mask disinfection technology enabling their reusability and solving mask shortage.
由于 COVID-19 大流行,过去几年口罩的使用量增加,导致口罩短缺。此外,它们的长期使用会导致与细菌过度生长有关的皮肤问题。为了解决这些问题,大气压冷等离子体被研究作为口罩消毒的替代技术。
测试了不同的微生物(铜绿假单胞菌、大肠杆菌、葡萄球菌属)、不同的气体(氮气、氩气和空气)、等离子体功率(90-300 W)和处理时间(45 秒至 5 分钟)。
最佳的大气压冷等离子体处理是在 300 W 和 1.5 分钟下用氮气产生的。对呼吸和过滤性能以及一个和五个等离子体处理循环后的微观和视觉分析的测试表明,这些处理不会影响口罩的形态或功能能力。
考虑到上述情况,我们坚信大气压冷等离子体可以成为一种廉价、环保且可持续的口罩消毒技术,使口罩能够重复使用并解决口罩短缺问题。