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Micro-organisms and dust exposure in an Italian grain mill

机译:意大利谷物厂中的微生物和灰尘暴露

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Aims: In order to assess possible occupational risk for workers in a grain mill, we evaluated aerial microbiological contamination in different areas of the mill and at different points of the production line. We also measured the concentration of aerodispersed dust particles.Methods and Results: An assessment of microbiological contamination levels based on a Global Index of Microbial Contamination per cubic metre (GIMC per m(3)), an Index of Mesophilic Bacterial Contamination, and an Amplification Index is proposed. The indices were obtained from total and fungal counts. The cleaning sector is the most contaminated area of the mill: the mean GIMC per m(3) was 17 213.6. In this area, the average microbial contamination was 11.41 times higher than that in the external environment. The highest concentrations of aerodispersed dust (inhalable 2.763 mg m(-3); respirable 1.400 mg m(-3)) were found in the cleaning area.Conclusions: The proposed microbiological indices and the concentrations of aerodispersed dust particles show that the most hazardous section of the mill is the cleaning area. The large variation in the data does not depend on seasonal factors, but rather on not easily identifiable conditions of the internal environment which facilitate diffusion and/or proliferation of the micro-organisms.Significance and Impact of the Study: The proposed microbiological contamination indices and the evaluation of the concentration of dust particles allow the identification of critical positions during the production cycle so that suitable measures to prevent the aerial contamination can be taken.
机译:目的:为了评估谷物加工厂工人可能的职业风险,我们评估了谷物加工厂不同区域和生产线不同地点的空气微生物污染。我们还测量了空气中分散的尘埃颗粒的浓度。方法和结果:根据每立方米微生物污染指数(GIMC每m(3)),中温细菌污染指数和扩增对微生物污染水平进行评估。提出索引。从总计数和真菌计数获得指数。清洁部门是工厂污染最严重的区域:每m(3)的GIMC平均为17 213.6。在该地区,平均微生物污染比外部环境高11.41倍。在清洁区域发现了最高浓度的空气弥散性粉尘(可吸入2.763 mg m(-3);可吸入性1.400 mg m(-3))结论:拟议的微生物学指标和空气弥散性粉尘颗粒的浓度表明最危险磨机的一部分是清洁区域。数据的巨大变化不取决于季节性因素,而是取决于内部环境的不易识别条件,这些条件有利于微生物的扩散和/或扩散。研究的意义和影响:拟议的微生物污染指数和灰尘颗粒浓度的评估可以确定生产周期中的关键位置,从而可以采取适当的措施来防止空气污染。

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