4.7 Article

The spread of microbiota in the air of an underground hard coal mine-A case study

期刊

BUILDING AND ENVIRONMENT
卷 242, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.buildenv.2023.110495

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Mining excavations; Bioaerosol; Airborne microorganisms; Pathogens; Respirable dust

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The environment of underground hard coal mines provides optimal conditions for the growth of microorganisms, including pathogens, due to high humidity, temperature, organic substances, and high dust content. This research aimed to determine the quantity and diversity of air microorganisms in underground mining excavations. Microbiological tests were conducted to identify potential pathogens and analyze their spread. The findings highlight the presence of numerous microorganisms, including pathogenic ones, which can pose risks to human health. The results are valuable for improving ventilation systems in mining excavations.
The environment of underground hard coal mines, due to high humidity and temperature, combined with the presence of organic substances and very high dust content, provides optimal conditions for the growth and development of microorganisms, including pathogens. The presented research was aimed at determining the quantitative and qualitative diversity of air in underground mining excavations. Microbiological tests of air samples were carried out according to standard microbiological techniques. The study of microbial communities made it possible to determine the unit concentrations of microorganisms, identify potential pathogens, and analyze the manner of their spread in the air of an underground mine. A large number and variety of micro-organisms were observed in the bioaerosol, including pathogenic ones (e.g., Staphylococcus aureus, Aspergillus flavus) that may pose a potential threat to humans by causing lung and skin diseases. Due to the insufficient state of global knowledge in this area of research the obtained results are helpful in the modernization of existing and designing new mining excavation ventilation systems, as well as in refreshing particularly hazardous places.

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