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Model-based analysis of microbial consortia and microbial products in an anammox biofilm reactor

机译:基于模型分析厌氧菌生物膜反应器中的微生物结合与微生物产品分析

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摘要

A mathematical model for a granular biofilm reactor for leachate treatment was validated by long-term measured data to investigate the mechanisms and drivers influencing biological nitrogen removal and microbial consortia dynamics. The proposed model, based on Activated Sludge Model (ASM1), included anaerobic ammonium oxidation (anammox), nitrifying and heterotrophic denitrifying bacteria which can attach and grow on granular activated carbon (GAG) particles. Two kinetic descriptions for the model were proposed: with and without soluble microbial products (SMP) and extracellular polymeric substance (EPS). The model accuracy was checked using recorded total inorganic nitrogen concentrations in the effluent and estimated relative abundance of active bacteria using quantitative fluorescence in-situ hybridization (qFISH). Results suggested that the model with EPS kinetics fits better for the relative abundance of anammox bacteria and nitrifying bacteria compared to the model without EPS. The model with EPS and SMP confirms that the growth and existence of heterotrophs in anammox biofilm systems slightly increased due to including the kinetics of SMP production in the model. During the one-year simulation period, the fractions of autotrophs and EPS in the biomass were almost stable but the fraction of heterotrophs decreased which is correlated with the reduction in nitrogen surface loading on the biofilm.
机译:通过长期测量数据验证了用于渗滤液处理的粒状生物膜反应器的数学模型,以研究影响生物氮去除和微生物联盟动力学的机制和司机。基于活性污泥模型(ASM1)的所提出的模型包括厌氧铵氧化(厌氧毒素),硝化和异养的反硝化细菌,其可以在粒状活性炭(GAG)颗粒上附着和生长。提出了两个模型的动力学描述:随着和不溶的微生物产品(SMP)和细胞外聚合物物质(EPS)。使用定量荧光原位杂交(QFISH)使用定量荧光(QFISH)使用记录的总无机氮浓度检查模型精度,并使用定量荧光估计的相对丰度。结果表明,与没有EPS的模型相比,EPS动力学的模型适合厌氧菌和硝化细菌的相对丰富。具有EPS和SMP的模型证实,由于包括模型中的SMP生产动力学,厌氧生物膜系统中的杂种病毒的生长和存在略微增加。在一年的仿真期间,生物质中的自触发和EPS的分数几乎是稳定的,但异素的级分降低,其与生物膜上的氮表面负荷的减少相关。

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