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Evaluating the effects of nitrogen loading rate and substrate inhibitions on partial nitrification with FISH analysis

机译:用FISH分析评估氮负载率和底物抑制对部分硝化的影响

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The effects of free ammonia (FA) or free nitrous acid (FNA) on partial nitrification (PN) has been well investigated. Nevertheless, little information was known about the combined effects of nitrogen loading rate (NLR) and substrate inhibition, as well as the impact on the community structure of nitrifiers. In this work, real reject water was treated in a pre-denitrification reactor. PN was achieved by gradually increasing NLR, and it was successfully maintained when average FA and FNA were within 0.8-3.2 mg NH _3-N/L and 0.003-0.067 mg HNO _2-N/L, respectively. When NLR was reduced, PN was slightly affected due to the FA declination. As FNA inhibition was also eliminated by adding alkalinity into the influent, PN was completely destroyed quickly. FISH results indicated the deterioration of the PN was mainly attributed to the recovery of NOB when inhibition effects were limited. It concluded the increase of NLR benefited the partial nitrification. However, the stability of the nitrite path way was more dependent on selective substrate inhibition effects, especially the FNA inhibition. These findings would be important for further treatment of actual reject water.
机译:游离氨(FA)或游离亚硝酸(FNA)对部分硝化(PN)的影响已得到充分研究。然而,关于氮负荷率(NLR)和底物抑制的综合作用以及对硝化器群落结构的影响知之甚少。在这项工作中,实际的废水在预反硝化反应器中进行了处理。 PN是通过逐渐增加NLR来实现的,当平均FA和FNA分别在0.8-3.2 mg NH _3-N / L和0.003-0.067 mg HNO _2-N / L内时,PN可以成功维持。当减少NLR时,由于FA偏斜,PN受到轻微影响。由于还可通过在进水中添加碱来消除FNA抑制作用,因此PN很快就被完全破坏。 FISH结果表明,当抑制作用受到限制时,PN的降解主要归因于NOB的回收。结论是NLR的增加有益于部分硝化。然而,亚硝酸盐途径的稳定性更多地取决于选择性底物抑制作用,尤其是FNA抑制作用。这些发现对于进一步处理实际的废水很重要。

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