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Impact of UVC-sustained recirculating air filtration on airborne bacteria and dust in a pig facility

机译:UVC持续的循环空气过滤对猪设施中空气菌和灰尘的影响

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摘要

High amounts of aerial pollutants like dust and microorganisms can pose serious health hazards to animals and humans. The aim of the current study therefore was, to assess the efficiency of UVC irradiation combined to air filtration in reducing airborne microorganisms at laboratory scale. In a second part, a UVC-combined recirculating air filtration module (UVC module) was implemented in a small animal facility in order to assess its improvement of air quality with regard to airborne bacteria and dust. Tests at laboratory scale were performed using aerosols of Staphylococcus ( S .) aureus , Actinobacillus pleuropneumoniae , porcine parvovirus (PPV) and porcine reproductive and respiratory syndrome virus. We varied relative humidity (RH) to evaluate its effect on UVC irradiation efficiency. In addition, viability of pathogens inside the filter material was determined over up to six months. UVC-combined air filtration resulted in a more than 99% reduction of viral and bacterial particles. RH had no influence on UVC efficiency. Viability in the filter matter varied depending on the pathogen used and RH with S . aureus and PPV being most resistant. In our small pig facility consisting of two separated barns, weekly air measurements were conducted over a period of 13 weeks (10 piglets) and 16 weeks (11 piglets), respectively. Airborne bacterial numbers were significantly lower in the barn equipped with the UVC module compared to the reference barn. On average a reduction to 37% of reference values could be achieved for bacteria, whereas the amount of total dust was reduced to a much lesser extent (i.e. to 78% of reference values). Measures taken in front of and behind the UVC module revealed a reduction of 99.4% for airborne bacteria and 95.0% for total dust. To conclude, recirculating air filtration combined to UVC provided efficient reduction of pathogens at laboratory and experimental scale. The implementation of such devices might improve the overall environmental quality in animal facilities.
机译:粉尘和微生物等大量的空中污染物可能对动物和人类构成严重的健康危害。因此,目前研究的目的是评估UVC辐射的效率组合在实验室规模降低空气中微生物中的空气过滤。在第二部分中,UVC组合的再循环空气过滤模块(UVC模块)在小型动物设施中实施,以便在空气中的细菌和灰尘方面评估其空气质量的提高。使用葡萄球菌的气溶胶,猕猴桃葡萄球菌,猪细节病毒(PPV)和猪生殖和呼吸综合征病毒进行实验室规模测试。我们改变了相对湿度(RH)来评估其对UVC辐照效率的影响。此外,过滤器材料内病原体的可行性达到最多六个月。 UVC组合的空气过滤导致病毒和细菌颗粒的减少超过99%。 RH对UVC效率没有影响。过滤物质中的活力根据使用的病原体和Rh的病原体而变化。金黄色葡萄球菌和PPV是最抵抗的。在我们的小型猪设施中,由两个分离的谷仓组成,每周空气测量分别在13周(10颗仔猪)和16周(11颗仔猪)的时期进行。与参考谷仓相比,配备有UVC模块的谷仓中的空气中的细菌数显着降低。平均降低到细菌可以实现参考值的37%,而总灰尘的量减少到更小的程度(即,参考值的78%)。在UVC模块前面和后面采取的措施显示出空气中的细菌减少99.4%,总灰尘的95.0%。为了得出结论,循环空气过滤与UVC合并,提供了实验室和实验规模的病原体的有效减少。这种设备的实施可能会改善动物设施中的整体环境质量。

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