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首页> 外文期刊>Journal of the air & waste management association >Concentrations and Diversity of Microbes from Four Local Bioaerosol Emission Sources in Finland
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Concentrations and Diversity of Microbes from Four Local Bioaerosol Emission Sources in Finland

机译:芬兰四种本地生物气溶胶排放源中微生物的浓度和多样性

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Microbial particles can readily be released into the air from different types of man-made sources such as waste operations. Microbiological emissions from different biological sources and their dispersion may be an issue of concern for area planning and for nearby residents. This study was designed to determine the concentrations and diversity of microbiological emissions from four different man-made source environments: waste center with composting windrows, sewage treatment plant, farming environment, and cattle manure spreading. Samples of airborne particles were collected onto polyvinyl chloride filters at three distances along the prevailing downwind direction, from each source environment during a period of approximately 1 week. These samples were analyzed for 13 species or assay groups of fungi, bacterial genus Streptomyces, and Gram-positive and -negative bacteria using quantitative polymerase chain reaction (PCR). Samples for determining the concentrations of viable fungi and bacteria were collected from all environments using a six-stage impactor. The results show that there were variations in the microbial diversity between the source environments. Specifically, composting was a major source for the fungal genera Aspergillus and Penicillium, particularly for Aspergillus fumigatus, and for the bacterial genus Streptomyces. Although the microbial concentrations in the sewage treatment plant area were significantly higher than those at 50 or 200 m distance from the plant area, in the farming environment or cattle manure spreading area, no significant difference was observed between different distances from the source. In summary, elevated concentrations of microbes that differ from background can only be detected within a few hundred meters from the source. This finding, reported earlier for culturable bacteria and fungi, could thus be confirmed using molecular methods that cover both culturable and nonculturable microbial material.
机译:微生物颗粒可以很容易地从不同类型的人造源(如废物操作)释放到空气中。来自不同生物源的微生物排放及其扩散可能是区域规划和附近居民关注的问题。这项研究旨在确定四种不同的人为污染源环境中微生物排放物的浓度和多样性:带有堆肥堆肥的废物中心,污水处理厂,耕作环境和牛粪传播。在大约1周的时间内,从每个源环境沿主要顺风方向的三个距离,将空气传播的颗粒样品收集到聚氯乙烯过滤器上。使用定量聚合酶链反应(PCR)分析了这些样品中的13种真菌或真菌,链霉菌属细菌以及革兰氏阳性和阴性细菌。使用六级撞击器从所有环境中收集用于确定活菌和细菌浓度的样品。结果表明,源环境之间的微生物多样性存在差异。具体而言,堆肥是真菌属曲霉属和青霉属,尤其是烟曲霉属以及链霉菌属的主要来源。尽管污水处理厂区中的微生物浓度明显高于距厂区50或200 m处的微生物浓度,但在耕作环境或牛粪撒播区中,距源头的不同距离之间未观察到显着差异。总而言之,只能在距源头几百米之内检测到与背景不同的微生物浓度升高。早先报道了有关可培养细菌和真菌的这一发现,因此可以使用涵盖可培养和不可培养微生物材料的分子方法加以证实。

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  • 来源
    《Journal of the air & waste management association 》 |2011年第12期| p.1382-1392| 共11页
  • 作者单位

    Department of Environmental Health, National Institute for Health and Welfare, Kuopio, Finland;

    Department of Environmental Health, National Institute for Health and Welfare, Kuopio, Finland;

    Kuopio Innovation Ltd., Kuopio, Finland;

    Department of Environmental Health, National Institute for Health and Welfare, Kuopio, Finland;

    Department of Environmental Health, National Institute for Health and Welfare, Kuopio, Finland;

    Department of Environmental Health, National Institute for Health and Welfare, Kuopio, Finland;

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