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Survival of Microorganisms on Filtering Respiratory Protective Devices Used at Agricultural Facilities

机译:农业设施过滤呼吸保护装置的微生物存活

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摘要

Bioaerosol is a threat at workplaces, therefore the selection and safe use of filtering facepiece respirators (FFRs) is important in preventive activities. The aim of the study was to assess the survival of microorganisms on materials used for FFRs construction. The parameters for microorganism growth under model conditions were described using the Gompertz equation, model verification was also carried out using FFRs at the farmers’ workplaces. We found that the factors determining a high survival of microorganisms were as follows: moisture corresponding to the conditions of use and storage of FFRs at workplaces, the presence of sweat and organic dust; inorganic dust and addition of biocide in nonwovens limited the growth of microorganisms, resulting in a shortening of the stationary growth phase and decreased cell numbers (5−6 log). Dust concentration at workplaces was higher than EU occupational exposure limit values and WHO recommendations for airborne particulate matter. Microbial contaminations of the air (103−104 CFU/m3), settled dust (104−106 CFU/g) and FFRs (105 CFU/4cm2) during the grain harvest were high, the main contamination being bacteria (actinomycetes, Pseudomonas fluorescens) and xerophilic fungi. A high correlation was found between the number of microorganisms and the weight of dust on FFRs (R2 = 0.93−0.96).
机译:Bioaerosol是在工作场所的威胁,因此过滤面板呼吸器(FFR)的选择和安全使用在预防性活动中是重要的。该研究的目的是评估用于FFR建设的材料的微生物的存活。使用Gompertz方程描述了模型条件下的微生物生长参数,使用FFR在农民工作场所的FFR进行模型验证。我们发现,确定微生物高存活的因素如下:对应于使用和有机粉尘的使用和储存FFR的使用和储存的水分;无机粉尘和添加杀菌剂在非织造织物中限制了微生物的生长,导致静止生长阶段和细胞数减少(5-6个原木)缩短。工作场所的灰尘浓度高于欧盟职业暴露限值,以及用于空气颗粒物质的建议。空气的微生物污染(103-104 cfu / m3),饱和粉尘(104-106 cfu / g)和ffrs(104-106 cfu / g)和ffr(105 cfu / 4cm2)高,主要污染是细菌(放线菌,假单胞菌荧光)和辛胺真菌。在FFR上的微生物数量和灰尘的重量之间发现了高相关(R2 = 0.93-0.96)。

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