Schraa Oliver, Rieger Leiv, Alex Jens, Miletić Ivan
inCTRL Solutions Inc., 107-7 Innovation Drive, Dundas, ON, L9H 7H9, Canada E-mail:
ifak e.V. Magdeburg, Werner-Heisenberg-Str. 1, 39106 Magdeburg, Germany.
Water Sci Technol. 2019 Jan;79(1):63-72. doi: 10.2166/wst.2019.032.
Ammonia-based aeration control (ABAC) is a cascade control concept for controlling total ammonia nitrogen (NH-N) in the activated sludge process. Its main goals are to tailor the aeration intensity to the NH-N loading and to maintain consistent nitrification, to meet effluent limits but minimize energy consumption. One limitation to ABAC is that the solids retention time (SRT) control strategy used at a water resource recovery facility (WRRF) may not be consistent with the goals of ABAC. ABAC-SRT control is a strategy for aligning the goals of ammonia-based aeration control and SRT control. A supervisory controller is used to ensure that the SRT is always optimal for ABAC. The methodology has the potential to reduce aeration energy consumption by over 30% as compared to traditional dissolved oxygen (DO) control. Practical implementation aspects are highlighted for implementation at full scale, such as proper selection of the set point for the supervisory controller, proper calculation of the rate of change in sludge inventory, using a mixed liquor suspended solids (MLSS) controller, and tuning of the controllers. In conclusion, ABAC-SRT is a promising approach for coordinated control of SRT, total ammonia nitrogen, and dissolved oxygen in the activated sludge process that balances both treatment performance and energy savings.
基于氨的曝气控制(ABAC)是一种用于控制活性污泥法中总氨氮(NH-N)的串级控制概念。其主要目标是根据NH-N负荷调整曝气强度,并维持一致的硝化作用,以满足出水限值同时将能耗降至最低。ABAC的一个局限性在于,水资源回收设施(WRRF)所采用的固体停留时间(SRT)控制策略可能与ABAC的目标不一致。ABAC-SRT控制是一种使基于氨的曝气控制目标与SRT控制目标保持一致的策略。使用一个监控控制器来确保SRT始终对ABAC而言是最优的。与传统的溶解氧(DO)控制相比,该方法有潜力将曝气能耗降低30%以上。文中强调了在全规模实施时的实际操作要点,例如监控控制器设定值的正确选择、污泥存量变化率的正确计算、使用混合液悬浮固体(MLSS)控制器以及控制器的调试。总之,ABAC-SRT是一种在活性污泥法中对SRT、总氨氮和溶解氧进行协调控制的有前景的方法,它兼顾了处理性能和节能两方面。