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Effects of oxygen and carbon content on nitrogen removal capacities in landfill bioreactors and response of microbial dynamics

机译:氧和碳含量对垃圾填埋生物反应器脱氮能力及微生物动力学响应的影响

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摘要

In this study, landfill bioreactors were tested to treat the recalcitrant leachate-nitrogen and the impacts of relevant operational parameters on its conversion were comprehensively investigated. We found that the highly diverse microbial community in landfill bioreactors could be substantially affected by increasing biodegradable carbon and oxygen content, which led to the whole system's intrinsic nitrogen removal capacity increasing from 50 to 70 %, and meanwhile, the contribution of anammox was detected less than 20 %. The sequencing and q-PCR results showed that microbial community in bioreactor was dominated by Proteobacteria (similar to 35 %) and Acidobacteria (similar to 20 %) during the whole experiment. The abundance of anammox functioning bacteria (Amx) kept at a stable level (-2.5 to -2.2 log (copies/16S rRNA)) and was not statistically correlated to the abundance of anammox bacteria. However, significant linear correlation (p < 0.05) was determined between the abundance of nirS and Proteobacteria; amoA and AOB. Redundancy analysis (RDA) suggested that although oxygen and biodegradable carbon can both impose effects on microbial community structure, only biodegradable carbon content is the determinant in the total nitrogen removal.
机译:在这项研究中,对垃圾填埋场生物反应器进行了处理,以处理难处理的渗滤液氮,并全面研究了相关操作参数对其转化的影响。我们发现垃圾填埋生物反应器中高度多样化的微生物群落可能会受到可生物降解的碳和氧含量增加的实质影响,这导致整个系统的固有氮去除能力从50%上升至70%,同时,对厌氧氨氧化的贡献被检测到较少超过20%。测序和q-PCR结果表明,在整个实验过程中,生物反应器中的微生物群落主要由变形杆菌(约35%)和酸性杆菌(约20%)控制。厌氧菌功能细菌(Amx)的丰度保持稳定水平(-2.5至-2.2 log(份数/ 16S rRNA)),与厌氧菌的细菌丰度没有统计学相关性。然而,在nirS的丰度与变形杆菌之间发现了显着的线性相关性(p <0.05)。 amoA和AOB。冗余分析(RDA)表明,尽管氧气和可生物降解的碳都可以对微生物群落结构产生影响,但只有可生物降解的碳含量才是总氮去除的决定因素。

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