便携式高效空气过滤器和临时塑料前室对替代冠状病毒传播的性能分析。
Performance analysis of portable HEPA filters and temporary plastic anterooms on the spread of surrogate coronavirus.
作者信息
Mousavi Ehsan S, Godri Pollitt Krystal J, Sherman Jodi, Martinello Richard A
机构信息
Department of Construction Science and Management, Clemson University, 2-132 Lee Hall, Clemson, SC, 29634, USA.
Environmental Health Sciences, Yale School of Public Health, New Haven, CT, 06520, USA.
出版信息
Build Environ. 2020 Oct;183:107186. doi: 10.1016/j.buildenv.2020.107186. Epub 2020 Aug 13.
The outbreak of COVID-19, and its current resurgence in the United States has resulted in a shortage of isolation rooms within many U.S. hospitals admitting COVID-19-positive cases. As a result, hospital systems, especially those at an epicenter of this outbreak, have initiated task forces to identify and implement various approaches to increase their isolation capacities. This paper describes an innovative temporary anteroom in addition to a portable air purifier unit to turn a general patient room into an isolation space. Using an aerosolization system with a surrogate oil-based substance, we evaluated the effectiveness of the temporary plastic anteroom and the portable air purifier unit. Moreover, the optimal location of the portable unit, as well as the effect of negative pressurization and door opening on the containment of surrogate aerosols were assessed. Results suggested that the temporary anteroom alone could prevent the migration of nearly 98% of the surrogate aerosols into the adjacent corridor. Also, it was shown that the best location of a single portable air purifier unit is inside the isolation room and near the patient's bed. The outcome of this paper can be widely used by hospital facilities managers when attempting to retrofit a general patient room into an airborne infection isolation room.
新冠疫情的爆发及其目前在美国的再度流行,导致许多收治新冠阳性病例的美国医院隔离病房短缺。因此,医院系统,尤其是那些处于此次疫情中心的医院系统,已启动特别工作组,以确定并实施各种方法来提高其隔离能力。本文介绍了一种创新的临时前厅以及一台便携式空气净化器,用于将普通病房改造成隔离空间。我们使用一种带有替代油基物质的雾化系统,评估了临时塑料前厅和便携式空气净化器的有效性。此外,还评估了便携式设备的最佳位置,以及负压和开门对替代气溶胶 containment 的影响。结果表明,仅临时前厅就能防止近98%的替代气溶胶迁移到相邻走廊。此外,还表明单个便携式空气净化器的最佳位置是在隔离室内且靠近患者病床。本文的结果可供医院设施管理人员在试图将普通病房改造成空气传播感染隔离病房时广泛使用。
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