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Site-related and seasonal variation of bioaerosol emission in an indoor wastewater treatment station: level, characteristics of particle size, and microbial structure

机译:室内废水处理站中生物气溶胶排放的现场相关和季节性变化:水平,颗粒大小特征和微生物结构

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摘要

The emission of the airborne bacteria and fungi from an indoor wastewater treatment station adopting an integrated oxidation ditch with a vertical circle was investigated. Microbial samples were collected by the six-stage viable Andersen cascade impactor, and the samples were collected in triplicate in each sampling site per season. Culture-based method was applied to determine the concentrations of the airborne bacteria and fungi, while the cloning/sequencing method was used to characterize the genetic structure and community diversity of airborne bacteria. The highest concentrations of airborne bacteria (4155 +/- A 550 CFU/m(3)) and fungi (883 +/- A 150 CFU/m(3)) were obtained in June (summer). The lowest concentration of bacteria (1458 +/- A 434 CFU/m(3)) was determined in January (winter), and the lowest concentration of fungi (169 +/- A 40 CFU/m(3)) was found in March (spring), respectively. The particle size distribution analysis showed that most culturable bacteria obtained in all the sampling sites were in the particle size range of 1.1-4.7 A mu m. Most culturable fungi had particle sizes in the range 1.1-3.3 A mu m. Microbial population analysis showed that Bacillus sp., Acinetobacter sp., and Lysinibacillus were the main groups obtained in S1. Enterobacter was the dominant group in sampling site S2. Both the concentrations and particle size distribution of the bioaerosols in the enclosed space presented a seasonal and site-related variation. Concentration and richness of microorganisms in bioaerosols in June were higher than in September and January. The particle size distribution varied between the sampling sites, and proportion of large particles was higher in S2 than in S1 because of the settlement of large particles. Pathogenic species, such as Acinetobacter lwoffii, Staphylococcus saprophyticus, and Enterobacter sp., were isolated from the bioaerosols, which could pose serious latent danger to sewage workers' health.
机译:研究了采用带垂直圆的集成氧化沟的室内废水处理站中空气中细菌和真菌的排放。通过六阶段可行的Andersen级联撞击器收集微生物样品,每个季节每个采样点一式三份收集样品。基于培养的方法用于确定空气中细菌和真菌的浓度,而克隆/测序方法用于表征空气中细菌的遗传结构和群落多样性。 6月(夏季)获得了最高浓度的空气传播细菌(4155 +/- A 550 CFU / m(3))和真菌(883 +/- A 150 CFU / m(3))。在1月(冬季)确定了最低细菌浓度(1458 +/- A 434 CFU / m(3)),在1月(冬季)中发现了最低真菌浓度(169 +/- A 40 CFU / m(3))。三月(春季)。粒度分布分析表明,在所有采样点获得的大多数可培养细菌的粒径范围为1.1-4.7 Aμm。大多数可培养真菌的粒径在1.1-3.3 Aμm的范围内。微生物种群分析表明,芽孢杆菌属,不动杆菌属和溶菌杆菌是在S1中获得的主要群体。肠杆菌是采样位点S2中的优势菌群。封闭空间中生物气溶胶的浓度和粒径分布均表现出季节性和与地点有关的变化。 6月生物气溶胶中微生物的浓度和丰富度高于9月和1月。粒度分布在采样点之间变化,并且由于大颗粒的沉降,S2中的大颗粒比例高于S1。从生物气溶胶中分离出病原菌,例如不动杆菌,腐烂葡萄球菌和肠杆菌属,这可能会对污水处理工人的健康造成严重的潜在威胁。

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