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Ultraviolet germicidal coil cleaning: Decreased surface microbial loading and resuspension of cell clusters

机译:紫外线杀菌盘管清洁:减少表面微生物负荷和细胞团的重悬

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Cooling coil surfaces within building ventilation systems are ideal sites for biofilm formation due to the presence of adequate nutrients (deposited particles) and moisture (condensate). In this study, a heating, ventilation, and air-conditioning (HVAC) test apparatus was built consisting of two parallel ducts, each with its own cooling coil. One coil was exposed to ultraviolet germicidal coil cleaning (UVG-CC) while the other was the comparison control to investigate the impact of UVG-CC on surface microbial loading and bacterial attachment. Surface samples were collected by swabbing a uniform area of coil surface and airborne samples were collected isokinetically with sterile funnel filters. All samples were quantified via direct epifluorescent microscopy. Prior to irradiating, higher concentrations of surface microbial loading were found on the downstream side of both cooling coils under condensing conditions. Conversely, under dry surface conditions with downstream UV irradiance, surface concentrations were higher upstream. UVG-CC (at an average 200 uW/cm(2) on the coil surface) reduced surface microbial loading by 55% on average during condensing conditions and inhibited bacterial attachment causing clusters of bacterial matter to become airborne downstream of the cooling coil. Additionally, it was found that desiccation also inhibited surface microbial loading and yielded cluster detachment but to a lesser degree than UVG-CC treatment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于存在足够的养分(沉积的颗粒)和水分(冷凝水),建筑物通风系统中的冷却盘管表面是形成生物膜的理想场所。在这项研究中,制热,通风和空调(HVAC)测试设备由两个平行的管道组成,每个管道都有自己的冷却盘管。一个盘管暴露于紫外线杀菌盘管清洁(UVG-CC),而另一个作为比较对照,以研究UVG-CC对表面微生物负荷和细菌附着的影响。通过擦拭线圈表面的均匀区域来收集表面样本,并使用无菌漏斗过滤器等速地收集空气传播的样本。通过直接落射荧光显微镜对所有样品进行定量。在辐照之前,在冷凝条件下,在两个冷却盘管的下游侧发现了较高浓度的表面微生物负荷。相反,在具有下游紫外线辐射的干燥表面条件下,上游表面浓度较高。 UVG-CC(盘管表面平均200 uW / cm(2))在冷凝条件下平均降低了55%的表面微生物负荷,并抑制了细菌附着,导致细菌物质簇在冷却盘管的下游传播。另外,发现干燥也抑制了表面微生物的负载并产生了团簇分离,但是程度小于UVG-CC处理。 (C)2016 Elsevier Ltd.保留所有权利。

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