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在一个垃圾分类厂中职业性接触厌氧细菌。

Occupational exposure to anaerobic bacteria in a waste sorting plant.

作者信息

Cyprowski Marcin, Ławniczek-Wałczyk Anna, Stobnicka-Kupiec Agata, Górny Rafał L

机构信息

Department of Chemical, Aerosol and Biological Hazards, Central Institute for Labour Protection - National Research Institute, Warsaw, Poland.

出版信息

J Air Waste Manag Assoc. 2021 Oct;71(10):1292-1302. doi: 10.1080/10962247.2021.1934185. Epub 2021 Jul 8.

Abstract

The study focused on exposure assessment to bacterial aerosols and organic dust in waste sorting plant. Samples were collected at different workplaces of waste sorting cycle i.e.: waste press, reloading area, loading of conveyor belt, sorting cabin, sorting hall, and control room. A quantitative analysis of aerobic and anaerobic bacteria was supplemented by qualitative analysis of anaerobic biota with the use of culture-based methods and biochemical tests. In addition, inhalable dust concentrations were also evaluated. To confirm the presence of genus, the PCR reaction with specific primers (Chis150f and ClostIr) was performed. The average concentration of total bacteria in waste sorting plant was 4347 CFU m (SD = 2439), of which 66% were anaerobic strains (2852 CFU m; SD = 2127). It was found that about 24% of anaerobic bacteria belonged to genus (682 CFU m; SD = 633). The highest contamination with anaerobic bacteria was observed near the waste reloading plant (3740 CFU m), and the lowest in the control room (850 CFU m). The average concentration of inhalable dust in the waste sorting plant was 0.81 mg m (SD = 0.59). The correlation analysis showed that the presence of anaerobic bacteria, including clostridia was significantly determined by the microclimate parameters. Qualitative analysis showed the presence of 16 anaerobic species belonging to 9 genera, of which , and were present at all workplaces. The molecular analysis confirmed the presence of genus in both bioaerosol and settled dust samples.: The study showed that anaerobic bacteria should be taken into account as an important component of this microbiota when assessing the exposure of waste sorting workers to biological agents. However, future studies should investigate more precisely how the composition of sorted waste as well as the season can affect the diversity of anaerobic bacteria in this working environment. More attention should be paid to regular cleaning of equipment surfaces in the plant, as deposited organic dust is an important reservoir of anaerobic bacteria, including those of a potentially pathogenic nature.

摘要

该研究聚焦于垃圾分类厂中细菌气溶胶和有机粉尘的暴露评估。在垃圾分类流程的不同工作场所采集样本,即:垃圾压榨区、重装区、传送带装载区、分拣小屋、分拣大厅和控制室。通过基于培养的方法和生化试验对需氧菌和厌氧菌进行定量分析,并对厌氧生物群进行定性分析。此外,还评估了可吸入粉尘浓度。为确认属的存在,使用特异性引物(Chis150f和ClostIr)进行PCR反应。垃圾分类厂中总细菌的平均浓度为4347 CFU/m³(标准差=2439),其中66%为厌氧菌株(2852 CFU/m³;标准差=2127)。发现约24%的厌氧菌属于属(682 CFU/m³;标准差=633)。在垃圾重装厂附近观察到厌氧菌污染最高(3740 CFU/m³),在控制室最低(850 CFU/m³)。垃圾分类厂中可吸入粉尘的平均浓度为0.81 mg/m³(标准差=0.59)。相关分析表明,包括梭菌属在内的厌氧菌的存在显著取决于微气候参数。定性分析显示存在属于9个属的16种厌氧菌种,其中,和在所有工作场所均有存在。分子分析证实生物气溶胶和沉降粉尘样本中均存在属。该研究表明,在评估垃圾分类工人对生物制剂的暴露时,厌氧菌应被视为该微生物群的重要组成部分。然而,未来的研究应更精确地调查分类垃圾的组成以及季节如何影响该工作环境中厌氧菌的多样性。应更加重视工厂设备表面的定期清洁,因为沉积的有机粉尘是厌氧菌的重要储存库,包括那些具有潜在致病性的厌氧菌。

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