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Comparison of wastewater treatment plants based on the emissions of microbiological contaminants

机译:基于微生物污染物排放的污水处理厂比较

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摘要

This article presents the current and important results of bioaerosol studies which allow for the comparison of microbial contamination of air in 11 wastewater treatment plants (WWTPs), which differed in terms of capacity from 350 to 200,000 m3/day. The abundance of mesophilic bacteria, M+ and M− Staphylococcus, Pseudomonas fluorescens, Actinobacteria, coliform and psychrophilic bacteria, and microscopic fungi was determined. Additionally, the air temperature, relative humidity, wind velocity, and direction were also analyzed at each research station. The obtained very numerous results of bioaerosol and climate parameter studies were subjected to statistical analysis. The results regarding the minimum, maximum, and median abundance of the studied bacteria and microscopic fungi at 11 WWTPs and in background studies at control stations were presented in tables. Additionally, basic descriptive statistics for all studied microorganisms at specific seasons were presented. It was established that at the areas of WWTPs, the microscopic fungi were present that the highest concentrations (ranging from 0 to 1,148,530 CFU m−3), followed by psychrophilic bacteria (ranging from 40 to 225,000 CFU m−3) and mesophilic bacteria (ranging from 0 to 195,000 CFU m−3). The novel elaboration of bioaerosol study results based on cluster analysis and determination of a dendrogram allowed to compare the studied WWTPs. The similarity was decided based on the type of studied microorganisms and their dominance and abundance, while no similarities were observed in terms of capacity. In order to investigate the relation between the abundance of bacterial groups as well as microscopic fungi and microclimatic parameters (air temperature and humidity), a calculation of Spearman’s range correlation coefficients was conducted.Electronic supplementary materialThe online version of this article (10.1007/s10661-018-7035-2) contains supplementary material, which is available to authorized users.
机译:本文介绍了生物气溶胶研究的当前和重要结果,可以对11个废水处理厂(WWTP)中的空气中微生物污染进行比较,这些废水处理厂的容量从350到200,000 m 3 /天。确定了嗜温细菌,M +和M-金黄色葡萄球菌,荧光假单胞菌,放线菌,大肠菌和嗜冷菌以及显微镜真菌的丰度。此外,还在每个研究站分析了空气温度,相对湿度,风速和方向。对获得的大量生物气溶胶和气候参数研究结果进行了统计分析。表格中列出了有关11个污水处理厂和控制站背景研究中细菌和显微真菌的最小,最大和中位数丰度的结果。此外,还提供了特定季节所有研究微生物的基本描述统计数据。已经确定,在污水处理厂区域,存在的显微真菌浓度最高(从0到1,148,530 CFU m -3 ),其次是嗜冷细菌(从40到225,000 CFU m)。 −3 )和嗜温细菌(范围从0到195,000 CFU m −3 )。基于聚类分析和树状图确定的生物气溶胶研究结果的新颖阐述,可以比较研究的污水处理厂。相似性是根据所研究的微生物的类型及其优势和丰度来确定的,而在容量方面没有相似性。为了研究细菌种群以及微观真菌与微气候参数(气温和湿度)之间的关系,进行了Spearman距离相关系数的计算。电子补充材料本文的在线版本(10.1007 / s10661- 018-7035-2)包含补充材料,授权用户可以使用。

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