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Effect of solid hold-up on nitrite accumulation in a biofilm reactor - molecular characterization of nitrifying communities

机译:固含量对生物膜反应器中亚硝酸盐积累的影响-硝化群落的分子表征

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Biological ammonium oxidation was carried out in two inverse turbulent bed reactors fed with synthetic mineral wastewater containing a high ammonium concentration (100 mg N-NH4+/L). Both reactors were started-up and operated in the same conditions except for the solid carrier concentration: the solid hold-up ratios applied, defined as the ratios of static to expanded bed height, were 0.1 and 0.3 in reactors R-10 and R-30 respectively. These two solid hold-up ratios generate different particle-to-particle collision frequencies and, therefore, detachment forces. The influence of solid hold-up on biofilm growth and nitrifying performance was studied from a macroscopic (i.e. nitrate and/or nitrite production) and microbiological point of view. After 60 days of operation, both reactors contained the same amount of biomass. However, R-10 produced only nitrate while nitrite accumulated in R-30. A comparison of microbial populations in the reactors showed that R-10 contained both ammonium and nitrite oxidizing populations such as Nitrosomonas and Nitrospira, whereas in R-30, ammonium oxidizing populations were much greater than those of nitrite oxidizers. The major ammonium-oxidizing organism was not the same in both' reactors.
机译:生物氨氧化是在两个反向湍流床反应器中进行的,反应器中加入了含有高铵浓度(100 mg N-NH4 + / L)的合成矿物废水。除了固体载流子浓度外,两个反应器均在相同的条件下启动和运行:在反应器R-10和R-中,所应用的固体保持率(定义为静态与膨胀床高度之比)分别为0.1和0.3 30个。这两个固体滞留率产生不同的粒子间碰撞频率,因此产生分离力。从宏观(即产生硝酸盐和/或亚硝酸盐)和微生物学的角度研究了固含量对生物膜生长和硝化性能的影响。在运行60天后,两个反应器都包含相同量的生物质。但是,R-10仅产生硝酸盐,而亚硝酸盐则累积在R-30中。对反应器中微生物种群的比较表明,R-10既含有铵盐和亚硝酸盐氧化种群,如亚硝化单胞菌和亚硝化螺菌,而在R-30中,铵盐的氧化种群比亚硝酸盐氧化剂大得多。两种反应器中主要的铵氧化生物都不相同。

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