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Simultaneous nitrification and denitrification in biofilters with real time aeration control

机译:通过实时曝气控制在生物滤池中同时进行硝化和反硝化

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The aim of this article is to present a new biological aerated filter (BAF) for nitrogen removal based on simultaneous nitrification and denitrification. Contrary to the systems which integrate both an aerated and a non-aerated zone to allow complete nitrogen removal in one compact or two different units (pre-denitrification and nitrification), this upflow BAF system is based on the principle of simultaneous nitrification and denitrification since the filter is completely aerated. The denitrification process is possible due to the diffusion effect which dominates biofilm processes. The real time aeration control allows us to maintain a low dissolved oxygen value (0.5 to 3 mg O-2/l). In this case, the biofilm wilt not be fully (or less) penetrated with oxygen and denitrification will be carried out in a large part of the biofilm. Therefore, nitrification and denitrification is running simultaneously in different depths of the biofilm. By using 50% less air this BAF gave the same results (less than 20 mg TN/I) on pilot plant as a classical nitrification and denitrification BAF (Toettrup et al, 1994). Less recirculation was necessary to achieve the same denitrification. [References: 9]
机译:本文的目的是提出一种基于同时硝化和反硝化的新型生物曝气滤池(BAF),用于脱氮。与将曝气区和非曝气区集成在一起以允许在一个紧凑型或两个不同单元(预脱硝和硝化)中完全去除氮的系统相反,该上流BAF系统基于同时硝化和反硝化的原理,因为过滤器已完全充气。由于在生物膜过程中占主导地位的扩散效应,反硝化过程是可能的。实时曝气控制使我们能够保持较低的溶解氧值(0.5至3 mg O-2 / l)。在这种情况下,生物膜不会被氧气完全(或更少)渗透,反硝化作用将在大部分生物膜中进行。因此,硝化和反硝化在生物膜的不同深度同时进行。通过减少50%的空气使用,该BAF在中试植物上获得了与经典硝化和反硝化BAF相同的结果(少于20 mg TN / I)(Toettrup等,1994)。为实现相同的反硝化,需要较少的再循环。 [参考:9]

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