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The expanded bed biofilter: combined nitrification, solids destruction, and removal of bacteria

机译:膨胀床生物滤池:硝化作用,固体破坏和细菌去除相结合

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Developed for tertiary nitrification, this biofilter also removed carbonaceous BOD (cBOD) and (SS). Because the biofilter is expanded, it cannot clog, and therefore does not require backflushing; yet, it removed a significant proportion of the influent SS. This unanticipated capability was due to the activities of heterotrophic bacteria, protozoa, and metazoa (nematode and oligochaete worms). The expanded bed is an intensified process, which is based on natural immobilization of microbes to small support particles. Using glassy coke as the support material, an attached layer of microbes develops, forming particulate biofilms having a superficial surface area of 1800 m(2) m(-3). Autotrophic nitritifiers (Nitrosomonas spp.) were detected in the biofilm using rRNA-based molecular methods and were likely responsible, at least in part, for reducing the ammonia concentration by up to 99% (to 0.1 mg L-1), while the other organisms reduced cBOD and SS by up to 56% and 62%, respectively. Furthermore, the influent concentrations of Escherichia coli, coliform and heterotrophic bacteria were reduced by over 80%. It thereby provides a single process solution for combined tertiary nitrification and solids removal. Operating the process to consistently achieve < 0.5 mg NH3N L-1 and at the same time removing a significant fraction of cBOD and SS, it can replace processes such as SAFs or NTFs followed by a sandfilter.
机译:该生物滤池专为三次硝化而开发,还去除了碳质BOD(cBOD)和(SS)。由于生物滤池已膨胀,因此不会阻塞,因此不需要反吹;但是,它去除了很大一部分进水SS。这种意外的能力是由于异养细菌,原生动物和后生动物(线虫和寡毛蠕虫)的活动所致。膨胀床是强化过程,其基于微生物自然固定在小载体颗粒上。使用玻璃状焦炭作为支撑材料,形成了附着的微生物层,形成了表面表面积为1800 m(2)m(-3)的颗粒生物膜。使用基于rRNA的分子方法在生物膜中检测到自养硝化剂(Nitrosomonas spp。),它们可能至少部分负责降低氨浓度达99%(至0.1 mg L-1),而其他生物体分别将cBOD和SS降低了56%和62%。此外,大肠杆菌,大肠菌和异养细菌的进水浓度降低了80%以上。因此,它提供了用于联合硝化和固体去除的单一工艺解决方案。操作该工艺以始终达到<0.5 mg NH3N L-1的要求,同时去除大量的cBOD和SS,它可以替代诸如SAF或NTF之类的工艺,随后是沙滤器。

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