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A 6-week Recovery of a Major High Purity Oxygen Activated Sludge Plant to Full Capacity Following Flooding and Plant Shutdown

机译:洪水和工厂关闭后,全高纯度氧活化污泥厂的6周回收率为全容量

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The West Point Treatment Plant (WPTP) of King County, WA, has a rated capacity of 215 mgd under maximum month condition and 440 mgd at peak. It provides secondary treatment of flows up to 300 mgd using a high-purity oxygen (HPO) activated sludge process. The plant recently suffered a power failure and subsequent effluent pumping and control system failures, leading to the flooding of the subterranean pipe and equipment galleries and eventually a complete plant shutdown. The plant managed to quickly return to half of its hydraulic capacity and limited treatment with screenings, partial primary treatment, and final effluent disinfection, but grit removal and primary sludge pumps and digester boilers were damaged, disabling the solids stabilization process. To minimize the production of waste activate sludge (WAS) and protect the secondary process from impacts due to degraded primary sedimentation performance and absence of grit removal, flows to the secondary process had been essentially stopped for a couple of months, resulting in significant loss of biomass, its activity, and settleability. Coordinated efforts were made by the County staff and process experts from the consulting industry and academia to bring the plant back to its full capacity as quickly as possible. A secondary treatment recovery plan was prepared to guide the recovery by evaluating various strategies and establishing recovery procedures and process control set points, based on dynamic modeling. During the restart, meetings were held regularly to review plant operations and refine restart activities. This paper highlights the HPO process recovery planning, strategies, and key observations and activities. The HPO process at the WPTP proved robust and resilient. It was fully recovered in about 6 weeks following a complete plant shutdown, despite primary treatment degradation and interruptions from biomass loss due to over-wasting caused by instrumentation malfunctioning, foaming, and required corrective measures. A combination of F:M ratio and solids retention time (SRT) controls, assisted with a recovery planning considering plant specific conditions and historical performance, effectively restarted and restored the HPO process to its capacity and routine operations.
机译:WED县的西点治疗厂(WPTP),在最大月份条件下具有215 MGD的额定容量,峰值440毫克。它提供了使用高纯度氧(HPO)活性污泥工艺高达300 MgD的二次处理。该工厂最近遭受了动力故障和随后的流出泵和控制系统故障,导致地下管道和设备画廊的洪水,最终是一个完整的工厂关闭。该工厂设法迅速恢复到其液压容量的一半和有限的筛选治疗,部分初级治疗和最终出水消毒,但砂砾去除和初级污泥泵和消化器锅炉受损,禁用固体稳定过程。为了最大限度地减少废物活性污泥的生产(是)并保护次要过程免受由于降低的初级沉降性能而受到影响,并且没有砂砾去除,次要过程的流动基本上已经停止了几个月,导致显着损失生物量,其活动和可沉降能力。协调努力是由县级工作人员和咨询工业和学术界的进程专家提出的,使工厂尽快将植物恢复到其全部能力。准备通过评估各种策略和建立恢复程序和过程控制设定点来指导恢复的二级处理回收计划,并基于动态建模。在重新启动期间,会议定期举行,以审查工厂运营并重新开始活动。本文突出了HPO过程恢复规划,策略和关键观察和活动。 WPTP的HPO过程证明了强大而有弹性。在完整的工厂关闭后,它在大约6周内完全恢复,尽管原先的治疗因仪器故障,发泡和所需纠正措施而导致的生物量损失引起的生物量损失。 F:M比率和固体保留时间(SRT)控制的组合,辅助恢复计划考虑工厂特定条件和历史表现,有效重新启动并将HPO过程恢复到其能力和日常操作。

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