Investigation of the Bacterial Bioaerosols in the Air of Wastewater Treatment Plant of Jahanabad Meybod Industrial Town

Mohammad Salaree, M. Ehrampoush, Fahimeh Teimouri, M. Sadeh, F. Madadizadeh, G. Eslami, Zahra Sotanianzadeh, A. Ebrahimi
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Abstract

Introduction: In recent decades, with the emergence of new industrial activities and increase production of waste production, industries require the existence of treatment equipment and sanitation. These devices sometimes spread infectious microorganisms into the air. These include waste recycling industries and wastewater treatment plants. Bioaerosols are produced at different stages of the wastewater treatment process, especially in processes such as mobile mechanisms and aeration. Methods: In this study, air sampling was performed from different units of the treatment plant and indoor air. the plates were placed in an incubator for 24-48 hours at a temperature of 35 to 37 ° C. Then the number of bacterial colonies grown on the culture media was counted and recorded as CFU/m3. Results: The results showed that the average population of bacterial aerosols was higher in summer than in spring. Also, the highest bacterial population was observed in spring in indoor air with an average of 187.58±13.41 CFU/m3 and in summer in a equalization unit with an average of 202.89±12.11 CFU/m3. Conclusion: The results of this study showed that the number of bacterial bioaerosols increases in warm seasons. Also, the equalization unit had a high ability to produce bacterial bioaerosols. Finally, It can be said that increasing the distance from the source of contamination causes a significant reduction in the number of bacterial bioaerosols.
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Jahanabad Meybod工业城镇污水处理厂空气中细菌生物气溶胶的调查
导言:近几十年来,随着新的工业活动的出现和废物产生量的增加,工业需要处理设备和卫生设施的存在。这些设备有时会将传染性微生物传播到空气中。其中包括废物回收工业和废水处理厂。生物气溶胶在废水处理过程的不同阶段产生,特别是在移动机制和曝气等过程中。方法:在本研究中,对处理厂的不同单元和室内空气进行空气采样。将培养皿置于35 ~ 37℃的培养箱中培养24 ~ 48小时,计数培养基上菌落数,记录为CFU/m3。结果:夏季细菌气溶胶的平均数量高于春季。春季室内空气中细菌数量最多,平均为187.58±13.41 CFU/m3,夏季均衡单元中细菌数量最多,平均为202.89±12.11 CFU/m3。结论:本研究结果表明,暖季细菌生物气溶胶数量增加。此外,均衡装置具有高的能力,产生细菌生物气溶胶。最后,可以说,增加与污染源的距离会导致细菌生物气溶胶数量的显著减少。
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