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Distinctive denitrifying capabilities lead to differences in N2O production by denitrifying polyphosphate accumulating organisms and denitrifying glycogen accumulating organisms

机译:独特的反硝化能力通过脱氧多磷酸盐积聚生物和反硝化糖原积聚生物来导致N2O生产的差异

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摘要

This study aims at investigating the denitrification kinetics in two separate enriched cultures of denitrifying polyphosphate accumulating organisms (dPAO) and denitrifying glycogen accumulating organisms (dGAO) and compare their N2O accumulation potential under different conditions. Two sequencing batch reactors were inoculated to develop dPAO and dGAO enriched microbial communities separately. Seven batch tests with different combinations of electron acceptors (nitrate, nitrite and/or nitrous oxide) were carried out with the enriched biomass from both reactors. Results indicate that in almost all batch tests, N2O accumulated for both cultures, however dPAOs showed a higher denitrification capacity compared to dGAOs due to their higher nitrogen oxides reduction rates. Additionally, the effect of the simultaneous presence of several electron acceptors in the reduction rates of the different nitrogen oxides was also assessed in dPAOs and dGAOs
机译:本研究旨在研究两种单独的富含磷酸盐积累生物(DPAO)的富集培养物中的脱硝动力学,并在不同条件下比较它们的N2O积累潜力并比较它们的N2O积累潜力的二磷酸盐积累生物(DPAO)和反硝化含量。接种两种测序批量反应器,分别接种以开发DPAO和DGAO富集的微生物群落。用来自两个反应器的富集的生物质进行七种具有不同电子受体(硝酸盐,亚硝酸盐和/或氧化亚氮)的分批试验。结果表明,在几乎所有的批次测试中,对于两种培养物累积的N2O,然而,由于其氮氧化物还原速率较高,与DGAO相比,DPAOS显示出更高的脱氮能力。另外,在DPAOS和DGAOS中还评估了在不同氮氧化物的还原速率中同时存在若干电子受体的影响

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