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采用 OSAMBR 减少污水污泥:中试实验。

Sewage sludge minimisation by OSA-MBR: A pilot plant experiment.

机构信息

Engineering Department, Palermo University, Viale delle Scienze, Ed. 8, 90128, Palermo, Italy.

Engineering Department, Palermo University, Viale delle Scienze, Ed. 8, 90128, Palermo, Italy.

出版信息

Chemosphere. 2024 Jan;347:140695. doi: 10.1016/j.chemosphere.2023.140695. Epub 2023 Nov 15.

Abstract

This study presents the excess sludge minimisation in a Membrane Bioreactor (MBR) system by an Oxic Settling Anaerobic (OSA) process. The pilot plant was fed with real wastewater and OSA was operated with two different hydraulic retention times (HRT), respectively 4 (Period II) and 6 h (Period III) and compared to an MBR (Period I). Multiple parameters/variables were monitored: sludge minimisation, nitrogen and carbon removal, membrane fouling, and biokinetic behaviour through respirometry. With respect to the current literature, greenhouse gas emissions were also here monitored, often neglected. Results demonstrated that combining MBR and OSA systems can significantly reduce excess sludge production (89.7%, in Period III and 59.7% in Period II, compared to Period I). However, Period III presented better PO-P removal efficiencies but worse performances in the other parameters (COD, NH and Total Nitrogen). No substantial variation in membrane fouling was obtained over the experimental periods. Finally, the HRT increase in the anaerobic reactor promoted a NO-N increase inside the unaerated reactors, highlighting the need for a trade-off between sludge minimisation and GHG emission.

摘要

本研究通过好氧沉淀厌氧(OSA)工艺在膜生物反应器(MBR)系统中实现了剩余污泥的最小化。该中试装置以实际废水为进水,分别以水力停留时间(HRT)为 4 h(第二期)和 6 h(第三期)运行 OSA,并与 MBR(第一期)进行了比较。监测了多种参数/变量:污泥最小化、氮和碳去除、膜污染以及通过呼吸测量法进行的生物动力学行为。与当前的文献相比,本研究还监测了温室气体排放,这通常被忽视。结果表明,MBR 和 OSA 系统的组合可以显著减少剩余污泥的产生(与第一期相比,第三期减少了 89.7%,第二期减少了 59.7%)。然而,第三期在 PO-P 去除效率方面表现更好,但在其他参数(COD、NH 和总氮)方面表现较差。在整个实验期间,膜污染没有明显变化。最后,厌氧反应器中 HRT 的增加导致非曝气反应器中 NO-N 的增加,这突出了在污泥最小化和温室气体排放之间需要进行权衡。

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