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Leveraging Real-time Analytical Instrumentation for Anaerobic Digester Health Monitoring During and After Successful Startup of THP Pretreatment Process

机译:在THP预处理工艺成功启动期间和之后,利用实时分析仪器监测厌氧消化池的健康状况

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Anaerobic digestion is nothing new in municipal and industrial solids stabilization processes. While the basic operating procedures are relatively well understood, anaerobic digesters still regularly experience costly upsets due to changing conditions. To reduce overall costs, carbon footprint, and to achieve Class A sludge the Medina County Sanitary Engineers implemented a thermal hydrolysis process (THP) at the Kenneth W. Hotz Water Reclamation Facility. This process pretreats the biosolids prior to anaerobic digestion, mesophilic anaerobic digestion in this case, using pressure and heat to achieve these improved results. The thermal hydrolysis process can increase the potential for additional variability in operation and stability, mainly through temperature and solids feed rates. Historically, anaerobic digester health monitoring has been achieved via regular grab or composite samples for laboratory analysis of volatile acids, pH and alkalinity. In an attempt to reduce the risk from the added complexity to anaerobic digester operations introduced by the THP pretreatment process, automated and real-time digester acid/alkalinity (VFA:ALK) monitoring was explored and implemented. This paper discusses the THP process and anaerobic digester startup and operating experiences and associated pros and cons of the online digester monitoring solution as a means to mitigate the risk of upsetting their anaerobic digester. The county now relies on the readings from the analyzer to maintain stable digester operations and provides them with confidence in seeking additional sources of industrial waste to increase their total energy recovery.
机译:厌氧消化在城市和工业固体稳定过程中并不新鲜。虽然人们对基本操作程序有了相对充分的了解,但由于条件的变化,厌氧消化池仍然经常会遇到代价高昂的问题。为了降低总体成本、碳足迹,并实现A级污泥,麦地那县卫生工程师在肯尼斯W.霍茨水回收设施实施了热水解工艺(THP)。这一过程在厌氧消化之前对生物固体进行预处理,在这种情况下,中温厌氧消化使用压力和热量来实现这些改进的结果。热水解过程可能会增加操作和稳定性的额外变化,主要是通过温度和固体进料速率。从历史上看,厌氧消化池的健康监测是通过常规抓取或复合样本来实现的,用于实验室分析挥发性酸、pH值和碱度。为了降低THP预处理工艺增加的厌氧消化池操作复杂性带来的风险,探索并实施了自动实时消化池酸碱度(VFA:ALK)监测。本文讨论了THP工艺和厌氧消化池的启动和运行经验,以及在线消化池监测解决方案的相关优缺点,以减轻厌氧消化池受损的风险。该县现在依靠分析仪的读数来维持稳定的消化器运行,并为他们提供了寻找额外工业废物来源的信心,以提高其总能量回收率。

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