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The application of 15N isotope tracer in differentiating denitrification, anammox and DNRA during anammox start-up by adding calcium nitrate

机译: 15 n同位素示踪剂在厌氧,厌氧毒素和dnra期间加入硝酸钙,anammox和dnra在厌氧启动期间

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Denitrification, anaerobic ammonium oxidation (anammox) and dissimilatory reduction of nitrate to ammonium (DNRA) are important forms of nitrogen transformation process. The addition of calcium nitrate induces the coupling of denitrification, anammox and DNRA in the malodorous sediment, which accelerates the start-up of anammox process. However, conventional detection methods are difficult to differentiate the above-mentioned nitrogen transformation processes. A modified15N isotope tracer technology was used to quantitatively differentiate each N-removal contribution of denitrification, anammox and DNRA in this research, which is of great significance for ascertaining the coupling relationship among denitrification, anammox and DNRA induced by calcium nitrate.?A modified15N isotope tracer technology was used to quantitatively differentiate denitrification, anammox and DNRA.?15N isotope tracer results indicated that the contribution of anammox to total nitrogen increased by 20% approximately.
机译:反硝化,厌氧氧化(厌氧氧化)和硝酸铵(DNRO)的溶解还原是氮转化过程的重要形式。添加硝酸钙诱导恶臭沉积物中的脱氮,厌氧毒素和DNRA的偶联,从而加速了厌氧过程的启动。然而,常规检测方法难以区分上述氮转化过程。用于定量分析该研究中的厌氧,厌氧和DNRA的每个N除去贡献的改进的15N同位素示踪技术,这对于确定硝酸钙诱导的脱氮,厌氧和DNRA之间的偶联关系具有重要意义。改性15N同位素示踪剂技术用于定量分化脱氮,厌氧毒素和DNRO.?15N同位素示踪剂结果表明,厌氧毒剂对总氮的贡献大致增加了20%。

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