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Inherent humic substance promotes microbial denitrification of landfill leachate via shifting bacterial community improving enzyme activity and up-regulating gene

机译:固有的腐殖质通过转移细菌群落改善酶活性和上调基因来促进垃圾渗滤液的微生物反硝化

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摘要

Microbial denitrification is the main pathway for nitrogen removal of landfill leachate. Although humic substances (HSs) have been reported in landfill leachate, the effects of HS on denitrification process of activated sludge for leachate treatment are still unknown. In this study, we adopted SAHA as the model HS to study the effects of HS on the denitrification of landfill leachate. After long-term operation at 10 mg/L of Shanghai Aladdin Humic Acid (SAHA), the final nitrate concentration and nitrite accumulation were much lower than the control (5.2 versus 96.2 mg/L; 0.5 versus 34.7 mg/L), and the final N2O emission was 13.1% of the control. The mechanistic study unveiled that SAHA substantially changed the activated sludge community structure and resulted in the dominance of Thauera after long-term exposure to SAHA. Thauera could be able to utilize HSs as electron shuttle to improve denitrificattion performance, especially for nitrite reduction. Moreover, SAHA significantly upregulated the gene expressions and catalytic activities of the key enzymes related to denitrification, the reducing power (NADH) generation, and the electron transport system activity, which accelerated nitrogen oxide reduction. The positive effects of HS on denitrification performance were confirmed by the addition of SAHA into real leachate.
机译:微生物反硝化是垃圾渗滤液脱氮的主要途径。尽管在垃圾渗滤液中已经报道了腐殖质(HSs),但是对于在渗滤液处理中活性污泥的反硝化过程中,HS的影响仍然未知。在这项研究中,我们采用SAHA作为HS模型,以研究HS对垃圾渗滤液的反硝化作用。在上海阿拉丁腐殖酸(SAHA)浓度为10µmg / L长期运行后,最终的硝酸盐浓度和亚硝酸盐积累远低于对照(5.2对96.2µmg / L; 0.5对34.7µmg / L),并且最终的N2O排放为对照的13.1%。机理研究表明,SAHA大大改变了活性污泥的群落结构,并导致长期接触SAHA后Thauera占主导地位。 Thauera可能能够将HS用作电子梭,以提高反硝化性能,尤其是用于亚硝酸盐还原。此外,SAHA显着上调了与反硝化,还原能力(NADH)产生和电子传输系统活性有关的关键酶的基因表达和催化活性,从而加速了氮氧化物的还原。通过将SAHA添加到实际浸出液中,可以确认HS对反硝化性能的积极影响。

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