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Nitrification in reed beds - capacity and potential control methods

机译:芦苇床硝化作用-容量和潜在控制方法

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Vertical-flow reed beds (VFBs) are known to be very effective regarding nitrification. However, a generally accepted design formula for dimensioning reed beds for a controlled nitrification process has still not been found. Especially for the purpose of nitrification a vertical-flow reed bed (VFB) has been installed following an existing unaerated pond-system. The paper presents the results concerning the limits of the VFB's performance as well as the main factors influencing the nitrification process gained by balancing the conversion rates under different loads. Even under high loads the VFB provides an excellent nitrification performance, which is mainly influenced by the wastewater temperature. The ammonia oxidation rate is about 90% at temperatures over 10 degreesC; at temperatures below 5 C the average nitrification rate is still approximately 50%. The hydraulic load and the TKN load have almost no impact on this efficiency (the maximum load has been: 180 mm/d, 7.1 g TKN/(m(2)*d)). The redox potenial, which is continuously measured in the effluent of the reed bed, proved to be dependent on the current nitrification performance and the oxygen supply of the VFB, and therefore appears to be a suitable control parameter for the operation of VFBs. [References: 7]
机译:垂直流芦苇床(VFB)在硝化方面非常有效。然而,尚未找到用于控制硝化工艺的芦苇床尺寸的普遍接受的设计公式。尤其是为了硝化的目的,在现有的未充气池塘系统之后安装了垂直流芦苇床(VFB)。本文介绍了有关VFB性能极​​限以及影响硝化过程的主要因素的结果,这些因素是通过平衡不同负载下的转化率而获得的。即使在高负荷下,VFB仍具有出色的硝化性能,这主要受废水温度的影响。在超过10摄氏度的温度下,氨的氧化率约为90%;在低于5 C的温度下,平均硝化率仍约为50%。液压负载和TKN负载几乎不影响此效率(最大负载为:180 mm / d,7.1 g TKN /(m(2)* d))。在芦苇床流出物中连续测量的氧化还原电位被证明取决于当前的硝化性能和VFB的氧气供应,因此似乎是VFB操作的合适控制参数。 [参考:7]

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