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Enhancement of Nitrogen Removal in a Modified Dephanox Process

机译:改进的Dephanox工艺中的脱氮效果

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A conventional DEPHANOX process was modified in order to improve the nitrogen removal efficiency. The modified-DEPHANOX was created by adding an extra intermittent aeration reactor in the process while reducing the size of the reaeration reactor. With respect to nitrification, it was observed that the nitrification performances of both processes were significantly affected by the nitrification efficiency in its respective nitrification reactors. Also, the increase of organic matters and ammonia loading rates in the nitrification reactors decreased the ammonia removal efficiency. In nitrification reactors, when the hydraulic retention times (HRT) were set at 8 and 6 h, and the temperature was set at 25°C, the increase in organic matter did not significantly affect nitrification. However, when they were set at 6 and 5 h and the temperature was set at 16 and 17°C, respectively, the increase in organic matter had a significant effect on nitrification. A comparative study of denitrification performance between DEPHANOX and M-DEPHANOX indicated that M-DEPHANOX was better than DEPHANOX in all experimental conditions. The superiority of M-DEPHANOX on denitrification was verified by PASS® software simulations. It was further observed that M-DEPHANOX had a higher phosphorus removal efficiency than DEPHANOX because its higher denitrification subsequently led to a lower NOx-N concentration in effluent (and thus lowered the recycle nitrate).
机译:改进了传统的DEPHANOX工艺,以提高脱氮效率。通过在过程中添加一个额外的间歇曝气反应器,同时减小反应堆的尺寸来创建改良的DEPHANOX。关于硝化,观察到两种方法的硝化性能都受到其各自硝化反应器中硝化效率的显着影响。而且,硝化反应器中有机物和氨负载率的增加降低了氨去除效率。在硝化反应器中,将水力停留时间(HRT)设置为8和6 h,并将温度设置为25°C时,有机物的增加不会显着影响硝化作用。但是,当将它们分别设置为6 h和5 h并将温度分别设置为16和17°C时,有机物的增加会对硝化产生重大影响。对DEPHANOX和M-DEPHANOX的反硝化性能的比较研究表明,在所有实验条件下,M-DEPHANOX均优于DEPHANOX。 M-DEPHANOX在反硝化方面的优越性已通过PASS®软件仿真验证。进一步观察到,M-DEPHANOX的除磷效率高于DEPHANOX,因为其较高的反硝化作用随后导致废水中的NOx-N浓度降低(从而降低了循环硝酸盐的含量)。

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