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Start up partial nitrification at low temperature with a real-time control strategy based on blower frequency and pH

机译:通过基于鼓风机频率和pH的实时控制策略在低温下启动部分硝化

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In this study, the performance of partial nitrification via nitrite at low temperature was investigated in a pilot-scale sequencing batch reactor (SBR) with a working volume of 7.0m ~3. A novel real-time control strategy, based on blower frequency (BF) and pH, was designed and evaluated. The nitrogen break point (NBP) in the BF curve and the nitrateitrite apex point (NAP) in the pH curve were used to identify the endpoint of the aerobic and anoxic phases, respectively. The nitrite accumulation rate (NAR) rapidly increased from 19.8% to 90%. Partial nitrification was achieved at low temperature (11-16°C) in 40days and was stably maintained for as long as 140days by applying a real-time control strategy based on pH and BF. Fluorescence in situ hybirdization (FISH) results demonstrated that ammonia oxidation bacteria (AOB) had developed into the dominant nitrifying bacteria compared to nitrite oxidation bacteria (NOB) in the system.
机译:在这项研究中,在工作量为7.0m〜3的中试规模分批反应器(SBR)中研究了在低温下通过亚硝酸盐进行部分硝化的性能。设计并评估了基于鼓风机频率(BF)和pH的新型实时控制策略。 BF曲线中的氮断裂点(NBP)和pH曲线中的硝酸盐/亚硝酸盐顶点(NAP)分别用于确定好氧相和缺氧相的终点。亚硝酸盐累积率(NAR)从19.8%迅速提高到90%。通过应用基于pH和BF的实时控制策略,在40天的低温(11-16°C)中实现了部分硝化,并可以稳定地维持长达140天。荧光原位杂交(FISH)结果表明,与系统中的亚硝酸盐氧化细菌(NOB)相比,氨氧化细菌(AOB)已发展成为主要的硝化细菌。

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