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Variation of pH and its indication during biological nitrogen removal in SBRs

机译:SBR中生物脱氮过程中pH的变化及其指示

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Deep understanding of pH variation during biological nitrogen removal is critical for ensuring the effective operation of nitrification/denitrification or nitritation/denitritation processes on a real-time basis. Two tank-type glass vessels, with a 6 L working volume for each, were used as sequencing batch reactors (SBRs) to investigate variation of pH in biological nitrogen removal process (nitritation, nitratation, denitratation and denitritation). Same amount of ammonium nitrogen (NH4+-N) and nitrite nitrogen were used as initial nitrogen substances for oxidation operation mode, whereas nitrate (N3−-N) and nitrite nitrogen (NO2−-N) were used for reduction mode. Results showed that, pH decreased during nitritation and increased during denitritation. On pH profile, “ammonium valley” indicated the end of nitritation, instead of nitrification and no characteristic bending point appeared at the end of nitrification. There was no evident break point appeared on pH profile when denitratation finished. Moreover, the pH profile during denitritation is more convex than that during denitrification. Alkalinity consumption was carried out mainly in nitritation process and alkalinity was produced only in denitritation process. Same amount of total alkalinity will be produced during reduction of same amount of nitrate and nitrite, but the components of alkalinity are different.
机译:对生物脱氮过程中pH值变化的深刻理解对于确保实时进行硝化/反硝化或硝化/反硝化过程的有效运行至关重要。使用两个罐式玻璃容器(每个容器的工作容积为6 L)作为顺序批处理反应器(SBR),以研究生物脱氮过程(硝化,硝化,反硝化和反硝化)中pH的变化。相同数量的铵态氮(NH 4 + -N)和亚硝酸盐氮用作氧化操作模式的初始氮物质,而硝酸盐(N 3 - -N)和亚硝酸盐氮(NO 2 - -N)用于还原模式。结果表明,硝化过程中pH降低,反硝化过程中pH升高。在pH曲线上,“铵谷”表示硝化的结束,而不是硝化作用,并且在硝化作用的末尾没有出现特征弯曲点。反硝化结束后,pH曲线上没有出现明显的断裂点。此外,反硝化过程中的pH值比反硝化过程中的pH值更凸。碱度消耗主要在硝化过程中进行,而碱度仅在反硝化过程中产生。还原相同量的硝酸盐和亚硝酸盐时,会产生相同量的总碱度,但是碱度的组成是不同的。

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