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Short- and long-term effects of manganese, zinc and copper ions on nitrogen removal in nitritation-anammox process

机译:锰,锌和铜离子对氮酸氮除去的锰,锌和铜离子的短期效果

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摘要

This study provided a deep insight into the impacts of trace elements (Mn2+, Zn2+ and Cu2+) on nitritation-anammox process. For short-term exposure, all the three elements could improve the nitrogen removal rate (NRR) and the optimal concentrations were 2.0 mg/L, 2.0 mg/L and 0.5 mg/L for Mn2+, Zn2+ and Cu2+, respectively. Accordingly, the NRR were enhanced 54.62%, 45.93% and 44.09%. The long-term experiments were carried out in lab-scale sequencing batch reactors. The surprising results showed that only Mn2+ addition could enhance the long-term nitritation-anammox process, and the NRR increased from 0.35 ± 0.01 kg N/m3/d (control, no extra trace element addition) to 0.49 ± 0.03 kg N/m3/d. Vice versa, the amendment of Zn2+ reduced the NRR to 0.28 ± 0.02 kg N/m3/d, and Cu2+ had no significant effect on the NRR (0.36 ± 0.01 kg N/m3/d). From the analysis of microbial community structure, it was explained by the increasing abundance of anaerobic ammonium oxidizing bacteria (AnAOB) only in Mn2+ treatment, whereas Zn2+ predominantly promoted ammonium oxidizing bacteria (AOB). Additionally, the majority of Mn2+ was identified inside AnAOB cells, and Zn2+ and Cu2+ were mainly located in AOB. Our results indicated the synergistic effects of trace elements on nitritation-anammox, both short-term encouraging activities of AnAOB and long-term altering microbial community structure. This work implies the importance of trace elements addition in nitritation-anammox process.
机译:本研究提供了深入了解痕量元素(MN2 +,Zn2 +和Cu2 +)对硝化厌氧过程的影响。对于短期暴露,所有三种元素可以改善氮去除率(NRR),最佳浓度分别为MN2 +,Zn2 +和Cu2 +的2.0mg / L,2.0mg / L和0.5mg / L.因此,NRR增强了54.62%,45.93%和44.09%。长期实验在Lab级测序批量反应器中进行。令人惊讶的结果表明,只有Mn2 +添加可以增强长期亚硝酸厌厌毒性过程,NRR从0.35±0.01kg n / m 3 / d增加(对照,无额外的痕量元素加成)至0.49±0.03kg n / m3 / d。反之亦然,Zn2 +的修正减少了NRR至0.28±0.02kg n / m 3 / d,并且Cu2 +对NRR没有显着影响(0.36±0.01kg n / m 3 / d)。从微生物群落结构的分析,它是由厌氧性氨氧化细菌(AnAOB)仅在MN2 +治疗的丰度增加说明,而Zn2 +的主要促进铵氧化细菌(AOB)。另外,大多数MN2 +在AnaOB细胞内鉴定,Zn2 +和Cu2 +主要位于Aob中。我们的结果表明,微量元素对亚硝酸盐的协同作用,厌氧和长期改变微生物群落结构的短期促进活动。这项工作意味着弥漏厌氧过程中痕量元素的重要性。

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