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Real-time PCR quantification of the population dynamics of ammonia-oxidizing bacteria in a pilot-scale wastewater treatment plant

机译:中试废水处理厂中氨氧化细菌种群动态的实时PCR定量

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To determine whether the stable nitrification was correlated with a stable AOB population size in a pilot-scale wastewater treatment plant (WWTP) and to relate the AOB population to the ammonia removal efficiency, the population dynamics of AOB in a pilot-scale WWTP was monitored over a half-year period using real-time PCR assay. During the study period, the effluent ammonia concentrations were below 2.5 mg/L almost all the time, indicting a stable function of nitrification. The change of AOB population was relatively stable, ranging from 0.7 x 10~(10) to 7.9 x 10~(10) cells per liter mixed liquor suspended solids (MLSS) mixture, indicating that the stable function of nitrification was correlated with a stable AOB number in the pilot-scale WWTP. Correlation analysis demonstrates a significantly positive correlation between ammonia removal efficiency and total AOB population number (r = 0.711, P < 0.01). The findings enrich the theory involving the relation between AOB population dynamics and function of nitrification in WWTPs.
机译:为了确定稳定的硝化作用是否与中试规模废水处理厂(WWTP)中稳定的AOB种群规模相关联,并将AOB种群与除氨效率相关联,监测了中试规模WWTP中AOB的种群动态使用实时PCR分析在半年内进行。在研究期间,废水氨浓度几乎始终低于2.5 mg / L,表明硝化作用稳定。每升混合液悬浮固体(MLSS)混合物中AOB群体的变化相对稳定,范围从0.7 x 10〜(10)到7.9 x 10〜(10)个细胞,这表明硝化作用的稳定与稳定中试规模污水处理厂的AOB编号。相关分析表明,氨去除效率与总AOB数量之间存在显着的正相关(r = 0.711,P <0.01)。这些发现丰富了涉及污水处理厂中AOB种群动态与硝化功能之间关系的理论。

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