Engineering Department, Palermo University, Viale delle Scienze, Bldg. 8, 90128, Palermo, Italy.
Engineering Department, Palermo University, Viale delle Scienze, Bldg. 8, 90128, Palermo, Italy.
J Environ Manage. 2024 Nov;370:122718. doi: 10.1016/j.jenvman.2024.122718. Epub 2024 Oct 5.
This study thoroughly investigates a Membrane BioReactor - Integrated Fixed Film Activated Sludge - Intermittent Aeration (MBR-IFAS-IA) pilot plant operated from a biokinetic point of view. Specifically, respirometric techniques were applied on suspended and attached biomass to evaluate kinetic and stoichiometric parameters. The main aim was to investigate how the simultaneous presence of biofilm and activated sludge could affect the kinetic behaviour and the role of the Sludge Retention Time (SRT) variation in the kinetic behaviour of the system. The results highlighted a mutual interaction between suspended biomass and biofilm in the IFAS-MBR configuration. In Period I both the heterotrophic yield and growth rate of suspended biomass were higher compared to that of biofilm, thus highlighting higher affinity with organic matter; in contrast, the biofilm showed high affinity with nitrification, with increased nitrification rates with decreasing SRT and sustaining nitrification in the activated sludge due to "seeding" effect. Therefore, the suggestion is that it is possible to operate IFAS-MBR systems at low SRT without hampering the nitrification ability due to the growth of nitrifiers in the biofilm. Respirometry has been confirmed to be an effective tool for evaluating biomass kinetic and stoichiometric parameters. The results of this study highlighted the effect of IFAS configuration and can help apply mathematical models in the design phase and monitor biomass viability during plant operations.
本研究从生物动力学的角度彻底研究了一个膜生物反应器-集成固定膜活性污泥-间歇曝气(MBR-IFAS-IA)中试装置。具体而言,应用呼吸测量技术对悬浮和附着生物量进行评估,以获得动力学和化学计量参数。主要目的是研究生物膜和活性污泥同时存在如何影响动力学行为,以及污泥停留时间(SRT)变化在系统动力学行为中的作用。结果突出了 IFAS-MBR 配置中悬浮生物量和生物膜之间的相互作用。在第一阶段,悬浮生物量的异养产率和比生长速率均高于生物膜,这表明其对有机物的亲和力更高;相比之下,生物膜对硝化作用具有高亲和力,随着 SRT 的降低,硝化速率增加,并由于“接种”效应在活性污泥中维持硝化作用。因此,建议可以在不影响硝化能力的情况下,在低 SRT 下操作 IFAS-MBR 系统,因为生物膜中的硝化菌会生长。呼吸测量法已被证实是评估生物量动力学和化学计量参数的有效工具。本研究的结果突出了 IFAS 配置的影响,并有助于在设计阶段应用数学模型,并在工厂运行期间监测生物量的生存能力。