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Technical and experimental evaluation of an innovative decentralized technology for the municipal wastewater treatment in the city of Rome.

机译:罗马市市政污水处理创新分散技术的技术和实验评估。

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摘要

The present paper shows the results obtained through an experimental activity carried out on a pilot-scale plant using an innovative technology which couples the granular aerobic sludge with the sequencing batch process. Treatment efficiency and operation costs were evaluated in order to assess feasibility of this new technology for the upgrading of the existing continuous flow activated sludge treatment plant located in Casal Monastero, a decentralized area of the City of Rome. During start-up (about 3 months), the granular aerobic sludge was developed by controlling the dissolved oxygen concentration, the value of pH and the up-flow velocity. Besides, the influent organic loading was progressively increased starting from 0.1 kg/m~3 d up to 0.9 kg/m~3 d. In order to improve nitrogen removal, an anoxic phase was temporary added to the operative cycle. Complete development of the granular sludge determined an appreciable improvement of the denitrification process which allowed to eliminate the anoxic phase. At regime conditions, the plant was operated with 3 daily cycles, each one of 8 h. The new system showed a reduced sludge production (of about 20-35%) as compared to the existing plant, along with high removal efficiency of both Chemical Oxygen Demand (COD) and nitrogen. However, the operation was discontinuous and strictly related to the strength of the granular sludge. Therefore, a careful monitoring is recommended in order to control operation and performance of this new system.
机译:本文显示了通过使用创新技术将中性好氧污泥与定序批处理过程相结合的中试规模工厂进行的实验活动而获得的结果。评估了处理效率和运营成本,以评估这项新技术对位于罗马市分散地区Casal Monastero的现有连续流活性污泥处理厂进行升级改造的可行性。在启动过程中(约3个月),通过控制溶解氧浓度,pH值和上流速度,使颗粒状好氧污泥形成。此外,进水有机负荷从0.1 kg / m〜3 d逐渐增加到0.9 kg / m〜3 d。为了改善脱氮效果,将缺氧阶段临时添加到操作循环中。颗粒污泥的完全发展决定了反硝化工艺的显着改善,从而消除了缺氧相。在制度条件下,该工厂每天运行3个周期,每个周期8小时。与现有工厂相比,新系统显示出减少的污泥产量(约20-35%),以及化学需氧量(COD)和氮的去除效率高。但是,该操作是不连续的,并且与颗粒污泥的强度严格相关。因此,建议仔细监视以控制此新系统的操作和性能。

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