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Particle size distribution of cultivable airborne microbes and inhalable particulate matter in a wastewater treatment plant facility

机译:废水处理厂设施中可培养的空气传播微生物和可吸入颗粒物的粒径分布

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摘要

A field study was performed to identify the size distribution characteristics of viable, cultivable airborne microorganisms (heterotrophic bacteria, fungi, and total coliforms) at a municipal wastewater treatment facility, and their association with inhalable particulate matter (PM1, PM2.5, and PM10), as well as hydrogen sulfide concentrations and ambient meteorological parameters. The highest concentrations of cultivable, airborne heterotrophic bacteria, total coliforms, mass and number concentration of particulate matter, as well as hydrogen sulfide were observed at the aerated grit removal chambers at the pretreatment stage (3 to 2030 times higher than the values of the background ambient air). In contrast, the mean concentrations of cultivable, airborne mesophilic fungi at the aerated grit chambers were 0.6 time lower than the background site, where fungi presented the most abundant taxonomic group in the ambient air. Although the highest concentrations of the airborne fungi were determined at aerodynamic diameters between 2.1 and 3.3 mu m, a nearly equal distribution of the mean concentrations of the cultivable, airborne heterotrophic bacteria were observed in the six different size fractions at the primary settling tanks and in the ambient air. Interestingly, their size distribution profiles at the aerated grit chambers were different and showed a maximum aerodynamic diameter at the size range from 3.3 to 4.7 mu m, similar to that of the cultivable, airborne total coliforms. In general, low positive or no significant linear relationships could be found between the cultivable airborne heterotrophic bacteria, total coliforms, or fungi at the two wastewater treatment stages and the ambient background microbial community.
机译:进行了一项现场研究,以确定在市政废水处理设施中可行的,可培养的空气传播微生物(异养细菌,真菌和大肠菌群)的大小分布特征,以及它们与可吸入颗粒物(PM1,PM2.5和PM10)的关系),以及硫化氢浓度和周围的气象参数。在预处理阶段的充气除砂室中观察到最高浓度的可培养的空气传播异养细菌,总大肠菌群,颗粒物质的质量和数量浓度以及硫化氢(比背景值高3至2030倍)环境空气)。相反,充气砂砾室中可培养的空气传播中温真菌的平均浓度比背景部位低0.6倍,而背景部位是环境空气中生物分类最多的类别。尽管空气动力学真菌的最高浓度是在2.1至3.3微米的空气动力学直径下确定的,但在初级沉降池和初级沉降池中的六个不同大小的部分中,可培养的空气传播的异养细菌的平均浓度几乎均等地分布。环境空气。有趣的是,它们在充气砂砾室的尺寸分布曲线是不同的,并且在3.3至4.7μm的尺寸范围内显示出最大的空气动力学直径,与可培养的空气传播的大肠菌群相似。通常,在两个废水处理阶段的可培养的空气传播异养细菌,总大肠菌群或真菌之间和周围的背景微生物群落之间发现低的正相关或没有显着的线性关系。

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  • 来源
    《Aerobiologia》 |2017年第3期|297-314|共18页
  • 作者单位

    Technol Educ Inst Crete, Dept Environm & Nat Resources Engn, Romanou 3, Iraklion 73133, Greece;

    Tech Univ Crete, Polytechneioupolis, Dept Environm Engn, Iraklion 73100, Greece;

    Technol Educ Inst Crete, Dept Environm & Nat Resources Engn, Romanou 3, Iraklion 73133, Greece;

    Tech Univ Crete, Polytechneioupolis, Dept Environm Engn, Iraklion 73100, Greece;

    Tech Univ Crete, Polytechneioupolis, Dept Environm Engn, Iraklion 73100, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bacteria; Fungi; Bioaerosols; Particle size distribution; Particulate matter; Wastewater;

    机译:细菌;真菌;生物气溶胶;粒径分布;颗粒物;废水;

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