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Evaluation of UR-UVGI System for Sterilization Effect on Microorganism Contamination in Negative Pressure Isolation Ward

机译:对灭菌效应的UR-UVGI系统对负压隔离区微生物污染的影响

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摘要

A negative pressure isolation ward prevents the outflow of airborne microorganisms from inside the ward, minimizing the spread of airborne contamination causing respiratory infection. In response to recent outbreaks of severe acute respiratory syndrome (SARS) and Middle East respiratory syndrome (MERS), Korea has increased the number of these facilities. However, airborne contaminants that flow into the ward from adjacent areas may cause secondary harm to patients. In this study, the sterilization effect of upper-room ultraviolet germicidal irradiation (UR-UVGI) on microorganisms generated within the negative pressure isolation ward and those flowing inward from adjacent areas was evaluated through field experiments and computational fluid dynamics (CFD) analysis, to assess the potential of this approach as a supplementary measure to control such microorganisms. The sterilization effect was found to be not high because of high-level ventilation. CFD analysis under various conditions shows that the sterilization effect for indoor-generated microorganisms varies with the level of UV radiation, the source locations of the indoor-generated microorganisms, air supplies and exhausts, the UVGI system, and the airflow formed under the specified conditions. Our results show that when the UVGI system is installed in the upper part of the ward entrance, contaminated air from adjacent area is strongly sterilized.
机译:负压隔离区防止病房内部空气中微生物流出,从而最大限度地减少了导致呼吸道感染的空气污染的传播。为了回应最近的严重急性呼吸综合征(SARS)和中东呼吸综合征(MERS)的爆发,韩国增加了这些设施的数量。然而,从邻近地区流入病房的空气污染物可能对患者造成次要伤害。在该研究中,通过现场实验和计算流体动力学(CFD)分析,评估上室内紫外杀虫辐射(UR-UVGI)对负压隔离病房内产生的微生物的灭菌效应和从相邻区域流过的微生物。评估这种方法的潜力作为控制此类微生物的补充措施。由于高水平通风,发现灭菌效果不高。在各种条件下显示CFD分析,对于室内生成的微生物的杀菌效果用UV辐射的电平变化,在特定条件下形成的室内产生的微生物,空气供应和排出,所述UVGI系统的源位置和气流。我们的研究结果表明,当UVGI系统安装在病房入口的上部时,来自邻近区域的污染空气被强烈灭菌。

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