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Effect of pH and HNO_2 concentration on the activity of ammonia-oxidizing bacteria in a partial nitritation reactor

机译:pH和HNO_2浓度对部分硝化反应器中氨氧化细菌活性的影响

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摘要

Ammonia-oxidizing bacteria (AOB) are very sensitive to environmental conditions and wastewater treatment plant operational parameters. One of the most important factors affecting their activity is pH. Its effect is associated with: NH_3/NH_4 ~+ and HNO_2/NO _2 ~- chemical equilibriums and biological reaction rates. The aim of this study was to quantify and model the effect of pH and free nitrous acid (FNA) concentration on the activity of AOB present in a lab-scale partial nitritation reactor. For this purpose, two sets of batch experiments were carried out using biomass from this reactor. Fluorescent in situ hybridization analysis showed that Nitrosomona eutropha and Nitrosomona europaea species were dominant in the partial nitritation reactor (>94%). The experimental results showed that FNA inhibits the AOB activity. This inhibition was properly modelled by the non-competitive inhibition function and the half inhibition constant value was determined as 1.32 mg HNO_2-N L ~(-1). The optimal pH for these AOB was found to be in the range 7.4-7.8. The pH inhibitory effect was stronger at high pH values than at low pH values. Therefore, an asymmetric inhibition function was proposed to represent the pH effect on these bacteria. A combination of two sigmoidal functions was able to reproduce the experimental results obtained.
机译:氨氧化细菌(AOB)对环境条件和废水处理厂的运行参数非常敏感。影响其活性的最重要因素之一是pH。其作用与:NH_3 / NH_4〜+和HNO_2 / NO_2〜-的化学平衡及生物反应速率有关。这项研究的目的是量化和模拟pH和游离亚硝酸(FNA)浓度对实验室规模的部分硝化反应器中AOB活性的影响。为此目的,使用来自该反应器的生物质进行了两组分批实验。荧光原位杂交分析表明,在部分亚硝化反应器中,富营养亚硝基亚种和欧洲亚硝基亚种占主导(> 94%)。实验结果表明FNA抑制AOB活性。通过非竞争性抑制功能对该抑制进行了正确建模,半抑制常数为1.32 mg HNO_2-N L〜(-1)。发现这些AOB的最佳pH为7.4-7.8。在高pH值下,pH抑制作用要强于在低pH值下。因此,提出了不对称抑制功能来代表pH对这些细菌的影响。两个S形函数的组合能够重现获得的实验结果。

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