Sousa de Almeida M, Mayer A, Frey J, Lämmle C, Petri-Fink A, Rothen-Rutishauser B, Burtscher H
Adolphe Merkle Institute, University of Fribourg, Fribourg, Switzerland.
NanoCleanAir GmbH, Niederrohrdorf, Switzerland.
J Hosp Infect. 2025 Aug;162:339-350. doi: 10.1016/j.jhin.2025.05.020. Epub 2025 Jun 6.
Aerosol transmission of infectious diseases is of particular concern in hospital and care facilities where isolation rooms are limited, leading to capacity crises in the past, such as during the coronavirus disease 2019 pandemic.
To introduce a canopy system - a novel vertical airflow system with ceramic wall flow filters designed to reduce the spread of airborne pathogens in hospital environments. The system captures exhaled air above the patient, filters it via ceramic filters, and releases clean air beneath the bed.
Laboratory tests were conducted in controlled environments in small (15 m) and large (36 m) rooms. Filtration efficiency was evaluated using nebulized salt particles, nebulized MS2 bacteriophages, and bacteria exhaled by an adult sleeping in the bed. The performance of the system was further tested in conjunction with hospital curtains to assess combined effectiveness.
Filtration efficiency reached 95% for nebulized salt particles, 87% for nebulized MS2 bacteriophages, and 92% for bacteria exhaled by an adult sleeping in the bed. Hospital curtains alone provided a modest reduction in aerosol spread; however, their performance was enhanced when used alongside the vertical airflow system.
These results confirm the potential of the canopy system to reduce nosocomial infections by reducing aerosol concentrations. The innovative combination of vertical airflow and robust filtration technology offers a practical solution for improving air quality and protecting patients and healthcare workers in hospitals.
在隔离病房有限的医院和护理机构中,传染病的气溶胶传播尤其令人担忧,过去曾导致容量危机,例如在2019年冠状病毒病大流行期间。
引入一种天篷系统——一种新型的垂直气流系统,带有陶瓷壁流过滤器,旨在减少医院环境中空气传播病原体的传播。该系统在患者上方捕获呼出的空气,通过陶瓷过滤器进行过滤,并在床下方释放清洁空气。
在小型(15米)和大型(36米)房间的受控环境中进行实验室测试。使用雾化盐颗粒、雾化MS2噬菌体以及在床上睡觉的成年人呼出的细菌来评估过滤效率。该系统的性能还与医院窗帘一起进行了进一步测试,以评估综合效果。
雾化盐颗粒的过滤效率达到95%,雾化MS2噬菌体的过滤效率达到87%,在床上睡觉的成年人呼出细菌的过滤效率达到92%。单独使用医院窗帘可适度减少气溶胶传播;然而,与垂直气流系统一起使用时,其性能会得到增强。
这些结果证实了天篷系统通过降低气溶胶浓度来减少医院感染的潜力。垂直气流与强大过滤技术的创新结合为改善医院空气质量以及保护患者和医护人员提供了一个切实可行的解决方案。