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Model-based evaluation of a trickling filter facility upgrade to biological nutrient removal

机译:基于模型的滴滤设备升级为生物营养去除的评估

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This article presents the feasibility evaluation and preliminary design of a wastewater treatment plant upgrade supported by simulation. The existing facility was based on trickling filters, and the objective of the upgrade was to achieve nutrients removal. The proposed solution modifies the existing primary clarifier to host an anaerobic-anoxic suspended growth reactor, which is an alternative that, to our knowledge, has not been proposed or explored so far. The trickling filters would remain as aerobic reactors. In this study, the novel treatment scheme has been assessed for the first time, through model simulations. The modified treatment train was simulated, showing that the anoxic zone is able to denitrify satisfactorily achieving the required effluent nitrogen concentration. However, to promote biological phosphorus removal, an additional aerobic zone combined with a bypass of activated sludge from the anoxic zone to the first trickling filter is needed, in order to provide aerobic conditions to the phosphate accumulating organisms. Several combinations of additional aerobic volume and sludge bypass flowrate were found to successfully achieve both nitrogen and phosphorus removal, using the existing facilities without the need for new reactors neither implementing modifications that could put the trickling filters' physical integrity at risk. The novel treatment scheme could be applied in other cases with similar flowsheet in the same context. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文介绍了仿真支持下的污水处理厂升级改造的可行性评估和初步设计。现有设施基于滴滤池,升级的目的是实现营养去除。拟议的解决方案修改了现有的主要澄清池,以容纳厌氧-缺氧的悬浮生长反应器,据我们所知,这是迄今为止尚未提出或探索的替代方案。滴滤过滤器将保留为好氧反应堆。在这项研究中,通过模型仿真首次评估了新的治疗方案。对改进的处理程序进行了模拟,表明缺氧区能够令人满意地进行反硝化,从而达到所需的污水氮浓度。然而,为了促进生物除磷,需要额外的需氧区,并结合活性污泥从缺氧区到第一滴滤池的旁路,以便为磷酸盐累积生物提供需氧条件。已发现,使用现有设施无需额外的新反应器,即可通过额外的好氧量和污泥旁通流量的几种组合成功实现氮和磷的去除,且无需进行任何可能使滴滤器的物理完整性受到威胁的修改。该新颖的治疗方案可以应用于在相同情况下具有相似流程图的其他情况。 (C)2019 Elsevier B.V.保留所有权利。

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