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Evaluation of microbiological quality of atmospheric air in a selected sewage treatment plant in Lesser Poland

机译:较小的波兰选定污水处理厂大气空气微生物质量评价

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The adverse impact of sewage treatment plants on the environment, resulting from the emission of harmful biological agents to the atmosphere, depends mainly on the size of the facility, the quantity and composition of treated sewage as well as the technologies and equipment used. The aim of the conducted research was to determine the microbiological quality of atmospheric air at Municipal-Industrial Sewage Treatment Plant in Oswiecim, which is one of the largest treatment plants in Lesser Poland. Bioaerosol measurements were made at four points (raw sewage inlet, aeration chamber, purified sewage outlet and 150 m from the treatment plant, at the background point) in the period from January to December 2018. Bioaerosol samples were collected using Microbiological Air Sampler MAS-100 by Merck. The tested atmospheric air was characterized by a qualitatively and quantitatively diverse microflora. The largest source of emission of microorganisms to the atmosphere was the mechanical part of the sewage treatment plant (raw sewage inlet) and the biological reactor. The highest number of mesophilic bacteria was observed near the biological reactor (in the summer), the least at the control point. During the research, the least beta-hemolytic bacteria was isolated at the purified sewage outlet-on average 3 CFU m(-3), the highest at the biological reactor 16 CFU m(-3). Most of alpha-hemolytic bacteria was observed near the raw sewage inlet and was not found at the control point. Actinomycetes also occurred in a small amount (0-40 CFU m(-3)). A high concentration of mildew fungi occurred in summer when the air temperature was highest, the smallest quantities of these microorganisms were found in January and February.
机译:污水处理厂对环境产生有害生物制剂产生的环境的不利影响主要取决于设施的规模,处理过的污水的数量和组成以及所使用的技术和设备。进行了研究的目的是确定奥尔波尤姆市工业污水处理厂的大气空气的微生物质量,这是较小的波兰最大的治疗厂之一。在2018年1月至12月的期间,在四点(原始污水入口,曝气室,净化的污水分路,净化污水出口和150米处,纯化污水出口和150米)进行了生物化醇测量。使用微生物空气采样器MAS收集生物溶胶样品 - 默克100。测试的大气空气的特征在于定性和定量多样化的微生物群。微生物排放到大气中的最大来源是污水处理厂(原料污水入口)和生物反应器的机械部分。在生物反应器(夏季)附近观察到最多的嗜苯胺菌,最少在对照点。在研究期间,在纯化的污水出口 - 平均3CFU m(-3)上分离了至少β-溶血性细菌,在生物反应器16的最高CFU m(-3)。在原始污水入口附近观察到大多数α-溶血细菌,并在控制点未发现。放线菌也以少量发生(0-40 cfu m(-3))。在夏季,当空气温度最高时,夏季发生了高浓度的真菌,在1月和2月份发现了这些微生物的最小数量。

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