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Membrane reactor design as a tool for better membrane performance in a biofilm MBR (BF-MBR)

机译:膜反应器设计可作为提高生物膜MBR(BF-MBR)膜性能的工具

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Coupling biofilm reactors with membrane filtration as biofilm membrane bioreactors (BF-MBR) is an interesting alternative technology to activated sludge membrane bioreactors (AS-MBR). Biofilm technology for wastewater treatment can provide a substantially lower suspended solids environment for membrane filtration compared to activated sludge processes. Potential benefits are; less membrane clogging/sludging problems, lower fouling potentials, ease of membrane cleaning, reduced energy consumption for air-scouring, and new membrane module/reactor designs. This study was aimed to investigate alternative membrane reactor designs as a tool to improve membrane performance in a BF-MBR process. Three different designs were investigated. A simplified model was developed to predict and analyze the performance of the membrane reactor designs chosen. Results showed that solids control can be achieved, in particular the MLSS concentration, as well as a reduction of the colloidal submicron particle fraction, thereby reducing membrane fouling. Modification of the membrane reactor in a BF-MBR process is beneficial The alternative designs investigated in this study included introducing an integrated flocculation zone in the membrane reactor coupled with a sedimentation zone beneath the membrane module. The modified membrane rector design provided a significantly lower concentration of MLSS and COD around the membranes, and subsequently a more sustainable membrane performance due to much lower overall fouling rates.
机译:将具有膜过滤功能的生物膜反应器与生物膜膜生物反应器(BF-MBR)耦合是活性污泥膜生物反应器(AS-MBR)有趣的替代技术。与活性污泥工艺相比,用于废水处理的生物膜技术可以为膜过滤提供更低的悬浮固体环境。潜在的好处是;减少了膜的堵塞/淤塞问题,降低了结垢的可能性,易于进行膜清洁,减少了用于空气洗涤的能量消耗以及新的膜组件/反应器设计。这项研究旨在研究替代的膜反应器设计,作为在BF-MBR工艺中提高膜性能的工具。研究了三种不同的设计。开发了简化模型以预测和分析所选膜反应器设计的性能。结果表明,可以实现固体控制,特别是MLSS浓度,以及减少胶体亚微米颗粒分数,从而减少膜污染。在BF-MBR工艺中对膜反应器进行改造是有益的。本研究中研究的替代设计包括在膜反应器中引入集成絮凝区,以及在膜组件下方的沉降区。改进的膜校正器设计使膜周围的MLSS和COD浓度显着降低,并且由于总体结垢率低得多,因此具有更可持续的膜性能。

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