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Microbial community and population dynamics of single-stage autotrophic nitrogen removal for dilute wastewater at the benchmark oxygen rate supply

机译:在基准氧气速率供应下单级自养脱氮稀释废水的微生物群落和种群动态

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摘要

Microbial communities and their kinetic performance in a single-stage autotrophic nitrogen-removal filter at an optimal oxygen supply were examined to determine the presence and activity of denitrifiers, anaerobic ammonia-oxidizing (anammox), ammonia-oxidizing, and nitrite-oxidizing bacteria. To this end, different molecular biology techniques such as real-time quantitative polymerase chain reaction (qPCR) and biomarkers such as 16S rRNA revealed a diverse microbial community along the filter. It was important to survey the specific species of anammox bacteria using a newly designed Candidatus Brocadiafulgida (BF) specific primer, as well as Candidatus Brocadia anammoxidans (BA) and Candidatus Kuenenia stuttgartiensis (KS) specific primers. An unexpected finding was that the predominant anammox species switched from KS in concentrated wastewater to BA in dilute wastewaters. The Eckenfelder model of the NH_3-N transformation along the filter was S_e=S_0 exp(-0.192D/L~(2.3217)). These results provide a foundational understanding of the microbial structure and reaction kinetics in such systems.
机译:在最佳氧气供应条件下,在单级自养脱氮滤池中检查了微生物群落及其动力学性能,以确定反硝化剂,厌氧氨氧化(anammox),氨氧化和亚硝酸盐氧化细菌的存在和活性。为此,不同的分子生物学技术(例如实时定量聚合酶链反应(qPCR)和生物标记物(例如16S rRNA)揭示了沿过滤器的微生物群落。重要的是,使用新设计的假丝酵母假丝酵母(BF)特异引物,假丝酵母​​假丝酵母(BA)和斯图加特假丝酵母(KS)特异引物来调查厌氧细菌的特定种类。一个出乎意料的发现是,主要的厌氧菌物种从浓缩废水中的KS变为稀废水中的BA。沿滤波器的NH_3-N变换的Eckenfelder模型为S_e = S_0 exp(-0.192D / L〜(2.3217))。这些结果为此类系统中的微生物结构和反应动力学提供了基础知识。

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