Dong Xiaona, Duan Lijie, Zhan Manjun, Xu Yi, Yu Ran
Department of Environmental Science and Engineering, School of Energy and Environment, Southeast University, Nanjing, People's Republic of China.
Key Laboratory of Environmental Medicine Engineering, Ministry of Education, Southeast University, Nanjing, People's Republic of China.
Environ Technol. 2025 Jan;46(2):179-193. doi: 10.1080/09593330.2024.2348675. Epub 2024 May 8.
Membrane fouling is a major hindrance that restricts the application of membrane bioreactors (MBRs). (BALOs), as obligatory parasitic bacteria, prey upon various bacteria. In this study, the BALO mixtures were screened and found more effective in membrane fouling mitigation compared to the single BALO species and extended the membrane filtration period by as long as 33.3%. The higher BALO diversity reduced the potential foulants generation in the activated sludge by decreasing the sludge viscosity as high as 13.8 ± 0.6% than the pure culture of BALO. Meanwhile, the mixed BALOs demonstrated superior biofilm predation capabilities, with the content of soluble microbial products and extracellular polymeric substances on the biofilm decreasing by 26.1 ± 0.5% and 38.3 ± 0.2% as the most compared to the single BALO species involved system. Additionally, the BALO mixtures expanded the single strains' host lysis spectrum of both the activated sludge and biofilm. The abundance of membrane-fouling-related bacteria such as , , and and pioneer bacteria such as and was significantly reduced. In summary, this study disclosed the significantly better membrane fouling mitigation effects of the BALOs with higher diversity, suggesting that the expansion of the host range is crucial for the further application of BALOs to enhance the anti-fouling performance of the MBR system.
膜污染是限制膜生物反应器(MBR)应用的主要障碍。蛭弧菌(BALOs)作为专性寄生细菌,以各种细菌为食。在本研究中,对蛭弧菌混合物进行了筛选,发现其在减轻膜污染方面比单一蛭弧菌物种更有效,并且将膜过滤周期延长了33.3%。更高的蛭弧菌多样性通过将污泥粘度降低高达13.8±0.6%,相比于蛭弧菌纯培养,减少了活性污泥中潜在污染物的产生。同时,混合蛭弧菌表现出卓越的生物膜捕食能力,与涉及单一蛭弧菌物种的系统相比,生物膜上可溶性微生物产物和胞外聚合物的含量分别最多降低了26.1±0.5%和38.3±0.2%。此外,蛭弧菌混合物扩大了单一菌株对活性污泥和生物膜的宿主裂解谱。诸如[具体细菌名称1]、[具体细菌名称2]和[具体细菌名称3]等与膜污染相关细菌以及诸如[具体细菌名称4]和[具体细菌名称5]等先锋细菌的丰度显著降低。总之,本研究揭示了具有更高多样性的蛭弧菌在减轻膜污染方面具有显著更好的效果,表明宿主范围的扩大对于蛭弧菌进一步应用以增强MBR系统的抗污染性能至关重要。