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将特定曝气需求(SAD)纳入浸没式膜生物反应器的通量阶跃测试

Integration of Specific Aeration Demand (SAD) into Flux-Step Test for Submerged Membrane Bioreactor.

作者信息

Galizia Albert, Comas Joaquim, Rodríguez-Roda Ignasi, Blandin Gaëtan, Monclús Hèctor

机构信息

LEQUIA, Institute of the Environment, Universitat de Girona, C/Maria Aurèlia Capmany 69, 17003 Girona, Catalonia, Spain.

Catalan Institute for Water Research (ICRA), C/Emili Grahit 101, 17003 Girona, Catalonia, Spain.

出版信息

Membranes (Basel). 2025 Apr 3;15(4):111. doi: 10.3390/membranes15040111.

Abstract

This study proposes a novel methodology to assess fouling that complements the flux-step test (FST) by integrating aeration-step tests (ASTs) to optimise the specific aeration demand (SADm) for ultrafiltration hollow-fibre (UF-HF) submerged membranes in membrane bioreactor (MBR) configurations. Three membranes with distinct manufacturing processes-non-thermal-induced phase separation (NIPS) and thermal-induced phase separation (TIPS)-were evaluated under continuous and intermittent aeration. The AST revealed that the critical SADm has a range of 0.1-0.5 m·m·h for continuous aeration and 0.1-0.2 m·m·h for intermittent aeration. NIPS membranes with homogeneous structures were less prone to fouling under intermittent aeration, while TIPS membranes with a heterogeneous structure exhibited better recovery under continuous aeration, reflecting distinct fouling dynamics. Findings indicate that the FST alone does not fully represent operational conditions, as aeration efficiency is linked to membrane structure and aeration mode. By combining the FST with ASTs, our approach enables tailored fouling control strategies, reducing energy consumption and improving MBR performance. These insights are critical for advancing toward energy-efficient wastewater treatment technologies.

摘要

本研究提出了一种新颖的污垢评估方法,通过整合曝气步骤试验(ASTs)来补充通量阶跃试验(FST),以优化膜生物反应器(MBR)配置中超滤中空纤维(UF-HF)浸没式膜的特定曝气需求(SADm)。对三种具有不同制造工艺——非热致相分离(NIPS)和热致相分离(TIPS)——的膜在连续曝气和间歇曝气条件下进行了评估。ASTs表明,连续曝气时临界SADm范围为0.1 - 0.5 m·m·h,间歇曝气时为0.1 - 0.2 m·m·h。具有均匀结构的NIPS膜在间歇曝气下不易结垢,而具有非均匀结构的TIPS膜在连续曝气下表现出更好的恢复性能,反映出不同的污垢形成动态。研究结果表明,仅FST不能完全代表运行条件,因为曝气效率与膜结构和曝气模式有关。通过将FST与ASTs相结合,我们的方法能够制定定制的污垢控制策略,降低能耗并提高MBR性能。这些见解对于推进节能废水处理技术至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/918a/12029511/33443f268143/membranes-15-00111-g001.jpg

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