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首页> 外文期刊>Biochemical Engineering Journal >Characteristics of the sludge filterability and microbial composition in PAC hybrid MBR: Effect of PAC replenishment ratio
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Characteristics of the sludge filterability and microbial composition in PAC hybrid MBR: Effect of PAC replenishment ratio

机译:PAC杂交MBR中污泥过滤性和微生物组成的特性:PAC补给率的影响

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摘要

Periodic withdrawal and replenishment of powdered activated carbon (PAC) hybrid membrane bioreactor (MBR) is required for stable performance. The influence of the replenishment of powdered activated carbon (PAC) on sludge filterability and microbial community in hybrid MBRs was investigated. Results showed that the removal of organic matter and nitrogen were not significantly affected by the PAC refreshment, while soluble microbial products (SMP) concentration decreased and extracellular polymeric substance (EPS) increased with increasing PAC replacement ratio. MBR system with PAC replenishment exhibited low fouling propensity and prolonged filtration agreed well with fouling rate and resistance analysis. Molecular weight distribution of SMP in MBR confirmed the synergistic effects of PAC adsorption/biodegradation and membrane interception on organics removal. Microbial activity was positive associated with the PAC replenishment ratio. Moreover, the high-throughput sequencing indicated that due to fresh PAC added, the increased abundance of Proteobacteria, Bacteroidetes and Nitrospira guaranteed the pollutant removal, and the membrane fouling caused by Planctomycetes and Betaproteobacteria decreased. An optimal PAC replenishment ratio at 1.67% achieved the effective membrane fouling mitigation and enhanced dominant bacterial structure. PAC refreshment is considered to be a promising way to advance the application of MBR.
机译:稳定的性能需要定期取出和补充粉末活性炭(PAC)杂化膜生物反应器(MBR)。研究了粉末活性炭(PAC)对杂交MBRS中污泥过滤性和微生物群落的影响的影响。结果表明,除茶豆的溶解的同时,除去有机物质和氮的去除不会显着影响,而可溶的微生物产物(SMP)浓度降低,细胞外聚合物物质(EPS)随着PAC置换率的增加而增加。具有PAC补充的MBR系统表现出低污垢倾向,延长过滤与污垢率和抗性分析很好。 SMP在MBR中的分子量分布证实了PAC吸附/生物降解和膜拦截对有机物去除的协同作用。微生物活性与PAC补充率呈阳性。此外,高通量测序表明,由于新鲜的PAC增加,促菌菌,Brageroidetes和Nitrospira的增加,保证了污染物去除,并且由Parcoromycetes和Betaproteobacteria引起的膜结垢减少。最佳PAC补充比为1.67%,实现了有效膜污染和增强的显性细菌结构。 PAC茶点被认为是提高MBR应用的有希望的方法。

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