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Shortcut nitrification-denitrification by real-time control strategies

机译:实时控制策略实现硝化-反硝化的捷径

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摘要

The study aimed at solving the instability of shortcut nitrification-denitrification through real-time control strategies. The results showed that excess aeration (aeration was still on after nitrosation) had an adverse impact on the stabilization of shortcut nitrification-denitrification, with nitrosation ratio (NO2--N/NOx--N) decreasing from 96% to 29% after excess aeration for 13 cycles, indicating that excess aeration was prone to change nitrification modes from shortcut nitrification to full nitrification. By using real-time control, shortcut nitrification and full nitrification were clearly detected by characteristic points on ORP and pH curves. Thus, aeration was stopped once nitrosation was completed, and shortcut nitrification-denitrification was maintained with nitrosation ratio (NO2--N/NOx--N) higher than 96%. The study showed that real-time control strategy could prevent excess aeration and achieve stable shortcut nitrification-denitrification.
机译:该研究旨在通过实时控制策略解决快速硝化-反硝化的不稳定性。结果表明,过量曝气(亚硝化后仍处于曝气状态)对快速硝化-硝化的稳定性有不利影响,过量硝化后硝化率(NO2--N / NOx-N)从96%降低至29%曝气13个循环,表明过度曝气易于将硝化模式从短时硝化变为完全硝化。通过使用实时控制,可以通过ORP和pH曲线上的特征点清楚地检测到快速硝化和完全硝化。因此,亚硝化一旦完成就停止通气,亚硝化比(NO2--N / NOx-N)高于96%时,可以维持短时硝化-反硝化作用。研究表明,实时控制策略可以防止过度曝气并实现稳定的短程硝化-反硝化。

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