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Correlation between nitrous oxide (N2O) emission and carbon to nitrogen (COD/N) ratio in denitrification process: a mitigation strategy to decrease greenhouse gas emission and cost of operation

机译:硝酸氮(N2O)发射与碳与氮气(COD / N)比在脱氮过程中的相关性:降低温室气体排放的缓解策略及运作成本

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摘要

The reliability and accuracy of in-situ ion selective electrode and ultraviolet (NOx) probes have been investigated at four different treatment plants with different operational conditions. This study shows that the mentioned probes tend to compromise their accuracy and trending stability at lower NOx of 1.0 mg N/L, which if used as a measuring variable for PI feedback controller for denitrification (biological reduction of nitrate to nitrogen gas), would cause overfeeding the external carbon source. In-situ Clark-type N2O sensors, recently introduced for industrial scale use (Unisense Environment) could potentially open a new horizon in the automation of biological processes and particularly denitrification. To demonstrate the applicability of such probes for automation, two in-situ N2O probes were used in two treatment plants in parallel with NOx-N probes. The effects of operational conditions such as COD/N ratios and the correlation between NOx and N2O were investigated at those plants. N2O production at non-detect dissolved oxygen concentrations and pH of 7-7.2 were found to be a function of influent nitrogen load or the ratio of COD/NINFLUENT. Finally, using an N2O probe as a proxy sensor for nitrates is proposed as a measured variable in the PI feedback in the automation of the denitrification process with a NOx set point of 1.2 mg N/L).
机译:在具有不同操作条件的四种不同的治疗厂研究了原位离子选择性电极和紫外(NOx)探针的可靠性和准确性。该研究表明,所述提到的探针倾向于损害其在& 1.0mg n / l的下部NOx下的精度和趋势稳定性,其用于PI反馈控制器的测量变量(用于硝酸盐到氮气的生物还原),会导致外部碳源过度筛选。原位克拉克型N2O传感器,最近引入的工业规模使用(Unusense环境)可能会在生物过程的自动化和特别脱硝的自动化中开辟新的地平线。为了证明这种探针对自动化的适用性,两种原位N2O探针与NOX-N探针平行的两种治疗厂使用。在那些植物的研究中研究了鳕鱼(COD / N比)和NOx和N2O之间的相关性的影响。未检测到溶解氧浓度的N2O生产和7-7.2的pH是影响的氮载荷的函数或COD / NINFLUENT的比例。最后,使用N2O探针作为用于硝酸盐的代理传感器,作为PI反馈中的测量变量,其在剥离过程的自动化过程中具有NOx设定点的& 1.2 mg n / l)。

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