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Upgrading small wastewater treatment plants with the sequencing batch biofilter granular reactor technology: Techno-economic and environmental assessment

机译:序批式生物滤池颗粒反应器技术升级小型废水处理厂:技术经济和环境评估

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This paper is aimed at evaluating, from a techno-economic and environmental point of view, the performance of an existing wastewater treatment plant in which the traditional biological section is upgraded with an innovative Sequencing Batch Biofilter Granular Reactor. Two scenarios were simulated in order to model and assess the performances of conventional (CAS, Conventional Activated Sludge) and innovative solutions, based on mass balances, techno-economic evaluation and environmental assessment. The results showed that converting the activated sludge process into an SBBGR allows to achieve a drastic reduction in sludge production (up to 75% as volatile suspended solids). Furthermore, the secondary sedimentation and sludge stabilization units can be dismissed, reducing the area requirement (up to 50%). The technical assessment is mainly positive, with the electric energy consumption being the only critical item. The higher energy demand of the upgraded plant (about 25% more than the conventional treatment) is mainly associated with the recycle flow in the SBBGR system. Although the economic sustainability of the upgraded plant depends on local conditions, it can be considered to be likely favourable: sludge disposal and materials & reagents costs, together with the investment for plant reconstruction are those items that should be carefully evaluated before upgrading the CAS plant with SBBGR technology. The environmental assessment shows also mostly positive results, although it points to the increased phosphorus concentration in the effluent as a potentially critical issue and it highlights the electricity use and the increased nitrous oxide generation as other matters that need to be carefully checked in real case application. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在从技术经济和环境的角度评估现有废水处理厂的性能,该废水处理厂的传统生物部分通过创新的测序间歇式生物滤池颗粒反应器进行了升级。为了模拟和评估常规(CAS,常规活性污泥)和创新解决方案的性能,基于质量平衡,技术经济评估和环境评估,模拟了两种方案。结果表明,将活性污泥工艺转化为SBBGR可以显着减少污泥产量(挥发性悬浮固体含量最高可达75%)。此外,可以取消二级沉淀和污泥稳定单元,从而减少了面积要求(最多50%)。技术评估主要是积极的,电能消耗是唯一的关键项目。升级后的工厂对能源的较高需求(比传统处理方法高约25%)主要与SBBGR系统中的循环流量有关。尽管升级工厂的经济可持续性取决于当地条件,但可以认为是有利的:污泥处置,材料和试剂成本以及工厂改造投资是在升级CAS工厂之前应仔细评估的项目。使用SBBGR技术。尽管环境评估指出废水中磷的浓度增加是潜在的关键问题,但环境评估也显示出了积极的结果,并强调了用电量和一氧化二氮产生的增加,这是在实际应用中需要仔细检查的其他事项。 。 (C)2017 Elsevier Ltd.保留所有权利。

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