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首页> 外文期刊>International journal of occupational medicine and environmental health. >METHODS OF SAMPLING AIRBORNE FUNGI IN WORKING ENVIRONMENTS OF WASTE TREATMENT FACILITIES
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METHODS OF SAMPLING AIRBORNE FUNGI IN WORKING ENVIRONMENTS OF WASTE TREATMENT FACILITIES

机译:在废物处理设施的工作环境中采样空气真菌的方法

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摘要

Objectives: The objective of the present study was to evaluate and compare the efficiency of a filter based sampling method and a high volume sampling method for sampling airborne culturable fungi present in waste sorting facilities. Material and Methods: Membrane filters method was compared with surface air system method. The selected sampling methods were modified and tested in 2 plastic waste sorting facilities. Results: The total number of colony-forming units (CFU)/m(3) of airborne fungi was dependent on the type of sampling device, on the time of sampling, which was carried out every hour from the beginning of the work shift, and on the type of cultivation medium (p < 0.001). Detected concentrations of airborne fungi ranged 2x10(2)-1.7x10(6) CFU/m(3) when using the membrane filters (MF) method, and 3x10(2)-6.4x10(4) CFU/m(3) when using the surface air system (SAS) method. Conclusions: Both methods showed comparable sensitivity to the fluctuations of the concentrations of airborne fungi during the work shifts. The SAS method is adequate for a fast indicative determination of concentration of airborne fungi. The MF method is suitable for thorough assessment of working environment contamination by airborne fungi. Therefore we recommend the MF method for the implementation of a uniform standard methodology of airborne fungi sampling in working environments of waste treatment facilities.
机译:目的:本研究的目的是评估和比较基于过滤器的采样方法和高容量采样方法对废物分类设施中的空气传播可培养真菌进行采样的效率。材料与方法:将膜过滤器法与地面空气系统法进行了比较。对选定的采样方法进行了修改,并在2个塑料废物分类设施中进行了测试。结果:空气传播真菌的菌落形成单位总数(CFU)/ m(3)取决于采样设备的类型,采样时间,采样时间是从工作班次开始每小时进行一次,以及培养基的类型(p <0.001)。使用膜滤器(MF)方法时,检测到的空气传播真菌浓度范围为2x10(2)-1.7x10(6)CFU / m(3),当使用膜滤器(MF)方法时,检测到的浓度为3x10(2)-6.4x10(4)CFU / m(3)使用地面空气系统(SAS)方法。结论:两种方法均显示出在轮班期间对机载真菌浓度波动的敏感性相当。 SAS方法足以快速确定空气中真菌的浓度。 MF方法适用于彻底评估空气传播真菌对工作环境的污染。因此,我们建议使用MF方法在废物处理设施的工作环境中实施航空真菌采样的统一标准方法。

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