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Carrier effects on tertiary nitrifying moving bed biofilm reactor: An examination of performance, biofilm and biologically produced solids

机译:叔硝化移动床生物膜反应器的载体效应:性能,生物膜和生物产生的固体的检查

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Increasingly stricter ammonia and nitrogen release regulations with respect to wastewater effluents are creating a need for tertiary treatment systems. The moving bed biofilm reactor (MBBR) is being considered as an upgrade option for an increasing number of wastewater treatment facilities due to its small footprint and ease of operation. Despite the MBBRs creation as a system to remove nitrogen, recent research on MBBR systems showing that the system's performance is directly related to carrier surface area and is irrespective of carrier shape and type has been performed exclusively on chemical oxygen demand (COD) removal systems. Furthermore, the influence of carrier type on the solids produced by MBBR systems has also been exclusively studied for COD removal systems. This work investigates the effects of three specific carrier types on ammonia removal rates, biofilm morphology, along with solids production and settleability of tertiary nitrifying MBBR systems. The study concludes that carrier type has no significant effect on tertiary nitrifying MBBR system performance under steady, moderate loading conditions. The research does however highlight the propensity of greater surface area to volume carriers to become clogged under high loading conditions and that the high surface area carriers investigated in this study required longer adjustment periods to changes in loading after becoming clogged.
机译:关于废水流出物的氨和氮释放法规越来越严格,这导致对三级处理系统的需求。移动床生物膜反应器(MBBR)由于占地面积小和易于操作而被认为是越来越多的废水处理设施的升级选择。尽管MBBR作为脱氮系统的创建,但最近对MBBR系统的研究表明,该系统的性能与载体表面积直接相关,并且与载体的形状和类型无关,仅在化学需氧量(COD)去除系统上进行。此外,还专门针对COD去除系统研究了载体类型对MBBR系统产生的固体的影响。这项工作研究了三种特定载体类型对氨去除率,生物膜形态以及固体生成和叔硝化MBBR系统沉降性的影响。研究得出结论,在稳定,适度的负载条件下,载体类型对三硝化MBBR系统的性能没有明显影响。然而,这项研究的确强调了更大体积的容物在高负荷条件下容易被堵塞的倾向,并且在这项研究中研究的高表面积容物需要更长的调整时间以适应堵塞后的负荷变化。

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