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Nitrification-denitrification in WSP: a mechanism for permanent nitrogen removal in maturation ponds

机译:Wsp中的硝化 - 反硝化:成熟池中永久性氮去除的机制

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摘要

A pilot-scale primary maturation pond was spiked with 15N-labelled ammonia (15NH4Cl) and 15N labelled nitrite (Na15NO2), in order to improve current understanding of the dynamics of inorganic nitrogen transformations and removal in WSP systems. Stable isotope analysis of δ15N showed thatudnitrification could be considered as an intermediate step in WSP, which is masked by simultaneous denitrification, under conditions of low algal activity. Molecular microbiology analysis showed that denitrification can be considered a feasible mechanism for permanent nitrogen removal in WSP, which may be supported either by ammonia-oxidising bacteria (AOB) or by methanotrophs, in addition to nitrite-oxidising bacteria (NOB). However, the relative supremacy of the denitrification process over other nitrogen removal mechanisms (e.g., biological uptake) depends upon phytoplanktonic activity.
机译:在中试规模的初级成熟池中掺入15N标记的氨(15NH4Cl)和15N标记的亚硝酸盐(Na15NO2),以提高当前对WSP系统中无机氮转化和去除动力学的了解。稳定的δ15N同位素分析表明,在藻类活性低的条件下,反硝化作用可被认为是WSP的中间步骤,同时进行反硝化作用掩盖了该过程。分子微生物学分析表明,反硝化可以被认为是WSP中永久脱氮的可行机制,除亚硝酸盐氧化菌(NOB)外,氨氮氧化菌(AOB)或甲烷营养菌都可以支持脱氮。然而,反硝化过程相对于其他氮去除机理(例如,生物吸收)的相对优势取决于浮游植物的活性。

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