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The effect of nitrite on oxygen uptake in activated sludge as it relates to the redox potential.

机译:亚硝酸盐对活性污泥中氧吸收的影响,因为它与氧化还原电位有关。

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The objective of this investigation was to show that the low nitrate bend in the redox potential curve is in fact the result of nitrite inhibition of oxygen uptake. The oxygen sensor used indicated traces of oxygen at the time of the observed low nitrate bend which supports the hypothesis. However, an oxygen sensor with a lower measuring range is needed in order to show conclusively that this hypothesis is true. At higher oxygen concentrations it was observed that nitrite inhibition of oxygen uptake had a marked effect on the appearance of both the oxygen concentration curve and the redox potential in activated sludge. Therefore a complete model of the redox potential in activated sludge must include nitrite inhibition of oxygen uptake. As part of the investigation, the response time of the redox electrode was found to be 5 times longer than the response time of the oxygen sensor. This indicates that the diffusion barrier between the bulk liquid in the sludge and the redox electrode surface is greater than the diffusion barrier of the oxygen sensor's membrane.
机译:该研究的目的是表明氧化还原电势曲线中的低硝酸盐弯曲实际上是亚硝酸盐抑制氧吸收的结果。使用的氧气传感器在观察到的低硝酸盐弯曲时指示了氧气的痕迹,这支持了这一假设。但是,需要一个具有较低测量范围的氧气传感器,以便最终证明这一假设是正确的。在较高的氧气浓度下,观察到亚硝酸盐对氧气吸收的抑制对活性污泥中氧气浓度曲线和氧化还原电势的出现都有显着影响。因此,完整的活性污泥氧化还原电势模型必须包括亚硝酸盐抑制氧的吸收。作为研究的一部分,发现氧化还原电极的响应时间比氧气传感器的响应时间长5倍。这表明污泥中的本体液体与氧化还原电极表面之间的扩散势垒大于氧气传感器膜的扩散势垒。

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