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The Sensitivity of a Specific Denitrification Rate under the Dissolved Oxygen Pressure

机译:溶解氧压力下特定脱氮率的敏感性

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摘要

The biological denitrification process is extensively discussed in scientific literature. The process requires anoxic conditions, but the influence of residual dissolved oxygen (DO) on the efficiency is not yet adequately documented. The present research aims to fill this gap by highlighting the effects of DO on the specific denitrification rate (SDNR) and consequently on the efficiency of the process. SDNR at a temperature of 20 °C (SDNR20°C) is the parameter normally used for the sizing of the denitrification reactor in biological-activated sludge processes. A sensitivity analysis of SNDR20°C to DO variations is developed. For this purpose, two of the main empirical models illustrated in the scientific literature are taken into consideration, with the addition of a deterministic third model proposed by the authors and validated by recent experimentations on several full-scale plants. In the first two models, SDNR20°C is expressed as a function of the only variable food:microrganism ratio in denitrification (F:MDEN), while in the third one, the dependence on DO is made explicit. The sensitivity analysis highlights all the significant dependence of SDNR20°C on DO characterized by a logarithmic decrease with a very pronounced gradient in correspondence with low DO concentrations. Moreover, the analysis demonstrates the relatively small influence of F:MDEN on the SDNR20°C and on the correlation between SDNR20°C and DO. The results confirm the great importance of minimizing DO and limiting, as much as possible, the transport of oxygen in the denitrification reactor through the incoming flows and mainly the mixed liquor recycle. Solutions to achieve this result in full-scale plants are reported.
机译:科学文献广泛讨论生物脱氮过程。该过程需要缺氧条件,但残留溶解氧(DO)对效率的影响尚未充分记录。本研究旨在通过突出特定的脱氮率(SDNR)的影响,并因此依赖于过程的效率来填补这种差距。在20℃(SDNR20°C)的温度下的SDNR是通常用于生物活性污泥过程中脱氮反应器的施胶的参数。开发了SNDR20°C的灵敏度分析。为此目的,考虑到科学文献中所示的两个主要实证模型,增加了作者提出的确定性第三模型,并通过最近的几种全规模植物进行了验证。在前两种模型中,SDNR20°C表示作为唯一可变食物的函数:解硝化中的微生物比(F:Mdden),而在第三个中,对确实的依赖性明确。灵敏度分析突出了SDNR20°C的所有显着依赖性,其特征在于对对数减小的表征,与低做浓度的对应相对应的非常明显的梯度。此外,分析表明F:MDEN对SDNR20°C和SDNR20°C之间的相关性的相对较小的影响。结果证实了尽可能最小化DO和限制的重要性,通过进入流动和主要是混合的液体再循环,氧气在脱氮反应器中的氧气运输。报道了达到全尺寸植物的解决方案。

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