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The effect of SRT on nitrate formation during autotrophic nitrogen removal of anaerobically treated wastewater

机译:SRT对厌氧处理废水自养脱氮过程中硝酸盐形成的影响

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摘要

Autotrophic nitrogen removal, coupling nitritation (ammonium to nitrite) with anaerobic ammonium oxidation (anammox), offers a promising nitrogen-removal alternative, especially for post-treatment of anaerobically-treated wastewater. However, previous reports suggest that less than 90% total nitrogen removal should be expected with this process alone because over 10% of the ammonium removed will be converted to nitrate. This is caused because nitrite conversion to nitrate is required for reduction of carbon dioxide to cell carbon. However, recent research results suggest that more limited nitrate formation of only a few per cent sometimes occurs. It was hypothesized such lower nitrate yields may result from use of long solids retention times (SRT) where net biological yields are low, and providing that the ratio of oxygen added to influent ammonium concentrations is maintained at or below 0.75 mol/mol. Overall reaction equations were developed for each process and combined to evaluate the potential effect of SRT on process stoichiometry. The results support the use of a long SRT to reduce net cell yield, which in turn results in a small percentage conversion to nitrate during ammonium removal and high total nitrogen removals in the range of 90 to 94%.
机译:自养氮的去除,将硝化(铵与亚硝酸盐)与厌氧铵氧化(anammox)结合在一起,提供了一种有前途的脱氮替代方法,特别是用于厌氧处理废水的后处理。但是,以前的报告表明,仅此过程的总氮去除量就应该少于90%,因为去除的铵中有10%以上会转化为硝酸盐。这是因为将二氧化碳还原为细胞碳需要将亚硝酸盐转化为硝酸盐。但是,最近的研究结果表明,有时仅发生百分之几的硝酸盐形成更为有限。假设较低的硝酸盐收率可能是由于使用了较长的固体保留时间(SRT)导致的,其中生物净收率很低,并且假设所添加的氧气与进水铵浓度的比率保持在0.75 mol / mol或以下。针对每个过程开发了总体反应方程式,并将其综合起来以评估SRT对过程化学计量的潜在影响。结果支持使用较长的SRT来降低电池的净产率,这反过来又导致在去除铵期间转化为硝酸盐的百分比很小,并且总氮去除率高达90%至94%。

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