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首页> 外文期刊>International Journal of Environmental Research and Public Health >Evaluation of the Survivability of Microorganisms Deposited on Filtering Respiratory Protective Devices under Varying Conditions of Humidity
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Evaluation of the Survivability of Microorganisms Deposited on Filtering Respiratory Protective Devices under Varying Conditions of Humidity

机译:在不同湿度条件下过滤呼吸保护装置的微生物存活性的评价

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Bioaerosols are common biological factors in work environments, which require routine use of filtering respiratory protective devices (FRPDs). Currently, no studies link humidity changes in the filter materials of such devices, during use, with microorganism survivability. Our aim was to determine the microclimate inside FRPDs, by simulating breathing, and to evaluate microorganism survivability under varying humidity conditions. Breathing was simulated using commercial filtering facepiece respirators in a model system. Polypropylene melt-blown nonwoven fabrics with moisture contents of 40%, 80%, and 200%, were used for assessment of microorganisms survivability. A modified AATCC 100-2004 method was used to measure the survivability of ATCC and NCAIM microorganisms: Escherichia coli , Staphylococcus aureus , Bacillus subtilis , Candida albicans and Aspergillus niger . During simulation relative humidity under the facepiece increased after 7 min of usage to 84%–92% and temperature increased to 29–30 °C. S. aureus survived the best on filter materials with 40%–200% moisture content. A decrease in survivability was observed for E. coli and C. albicans when mass humidity decreased. We found that B. subtilis and A. niger proliferated for 48–72 h of incubation and then died regardless of the moisture content. In conclusion, our tests showed that the survivability of microorganisms on filter materials depends on the amount of accumulated moisture and microorganism type.
机译:生物溶胶是工作环境中的常见生物因素,需要常规使用过滤呼吸保护装置(FRPD)。目前,在使用过程中,在使用过程中,没有研究这种装置的过滤材料的湿度变化,具有微生物生存性。我们的目标是通过模拟呼吸来确定FRPD的微气密,并在不同湿度条件下评估微生物生存能力。在模型系统中使用商用过滤面板呼吸器模拟呼吸。具有40%,80%和200%的水分含量的聚丙烯熔喷非织造织物用于评估微生物生存性。用于测量ATCC和NCaim微生物的固化AATCC 100-2004方法:大肠杆菌,金黄色葡萄球菌,枯草芽孢杆菌,念珠菌,念珠菌和曲霉尼日尔。在仿真相对湿度下,在使用7分钟后增加到84%-92%和温度增加至29-30°C。 S.金黄色葡萄球菌在过滤材料上幸存下来,水分含量为40%-200%。当质量湿度降低时,对于大肠杆菌和C. albicans,观察到生存性的降低。我们发现B.枯草芽孢杆菌和A.Niger增殖48-72小时,无论水分含量如何都死亡。总之,我们的测试表明,过滤材料对微生物的活力取决于累积的水分和微生物类型的量。

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