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Mathematical modeling of autotrophic denitrification in a nitrifying biofilm of a rotating biological contactor

机译:旋转生物接触器硝化生物膜中自养反硝化的数学模型

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The mechanism of significant nitrogen loss in an aerobic rotating biological contactor (RBC) treating ammonium-rich waste water could be identified with the aid of batch experiments, mathematical modeling and microbial analysis. It turned out that the aerobic ammonium and nitrite-oxidizing organisms (nitrosomonas and nitrobacter clusters) are dominant in the upper aerobic 100-200 mu m of the biofilm, it is assumed that nitrite, appearing as an intermediate product close to the surface of the aerobic biofilm layer, diffuses into deeper anoxic layers of the biofilm. It is reduced anaerobically there in parallel with ammonium oxidized as described in the Anammox (anaerobic ammonium oxidation) process. This was confirmed in an anoxic batch test with suspended biofilm removed from the RBC. Unknown micro-organisms were detected, some of them similar to the Anammox organisms. A mathematical model which describes the kinetics of the aerobic ammonium-oxidizing, aerobic nitrite-oxidizing and anoxic ammonium-oxidizing micro-organisms was formulated and fitted into the AQUASIM biofilm compartment. The distribution of the populations within the biofilm as well as the ammonium, nitrite and nitrate degradation along the RBC in a steady state and during short-term experiments were modeled and compared with the experimental data. [References: 13]
机译:借助于分批实验,数学建模和微生物分析,可以确定好氧旋转生物接触器(RBC)处理富含铵的废水中大量氮损失的机理。原来,好氧的铵盐和亚硝酸盐氧化生物(亚硝酸盐杆菌和硝化细菌簇)在有氧生物膜的上层100-200微米中占主导地位,据推测,亚硝酸盐作为中间产物出现在生物膜的附近。好氧生物膜层,扩散到生物膜的更深的缺氧层中。如厌氧氨氧化(厌氧铵氧化)工艺所述,与氧化铵同时进行厌氧还原。在缺氧分批测试中证实了这一点,已从RBC中去除了悬浮的生物膜。发现了未知的微生物,其中一些类似于厌氧氨氧化菌。建立了描述需氧铵氧化,需氧亚硝酸盐氧化和缺氧铵氧化微生物动力学的数学模型,并将其拟合到AQUASIM生物膜隔室中。对生物膜内种群的分布以及在稳态和短期实验中沿红细胞的铵,亚硝酸盐和硝酸盐降解进行了建模,并与实验数据进行了比较。 [参考:13]

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