Workplace Health Promotion Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran; Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran E-mail:
Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Water Sci Technol. 2023 Jun;87(12):3031-3046. doi: 10.2166/wst.2023.183.
In this study, four identical laboratory-scale sequencing batch reactors (SBRs) were continuously operated with different concentrations of microbeads (MBs) (5,000-15,000 MBs/L) to investigate the stress-responses of activated sludge under the MB exposure. It was found that the overall treatment performance (organic removal) of SBRs was fairly affected by short-term exposure to low levels of MBs; however, it was adversely affected as the concentration of MBs increased. The average concentration of mixed liquor suspended solids and heterotrophic bacteria in the reactor fed with 15,000 MBs/L were 16 and 30% less than in the pristine control reactor, respectively. Batch experiments further demonstrated that fairly low concentrations of MBs favored the development of dense microbial structures. Further increasing the MB concentrations to 15,000 MBs/L, however, distinctly weakened the settling performance of sludge. Morphological observations revealed suppressed uniformity, strength, and integrity of flocs reactors with the addition of MBs. Microbial community analyses revealed that the abundance of protozoan species declined 37.5, 58, and 64%, respectively, when SBRs were exposed to 5,000; 10,000; and 15,000 MBs/L as compared with the control reactor. The present work provided new insight into the possible effects of MBs on the performances and operational parameters of activated sludge.
在这项研究中,四个相同的实验室规模序批式反应器(SBR)分别以不同浓度的微珠(MBs)(5000-15000MBs/L)连续运行,以研究活性污泥在MB 暴露下的应激反应。研究发现,SBR 的整体处理性能(有机物去除)受到短期低水平MB 暴露的相当影响;然而,随着 MB 浓度的增加,它受到了不利影响。在 15000MBs/L 的 MBs 进料的反应器中,混合液悬浮固体和异养菌的平均浓度分别比原始对照反应器低 16%和 30%。批处理实验进一步表明,相当低浓度的 MBs 有利于密集微生物结构的发展。然而,进一步将 MB 浓度提高到 15000MBs/L,明显削弱了污泥的沉降性能。形态观察显示,随着 MBs 的添加,反应器中絮体的均匀性、强度和完整性受到抑制。微生物群落分析显示,当 SBR 暴露于 5000、10000 和 15000MBs/L 时,原生动物的丰度分别下降了 37.5%、58%和 64%,与对照反应器相比。本工作为 MBs 对活性污泥的性能和运行参数的可能影响提供了新的见解。