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The effect of magnetite on the start-up and N2O emission reduction of the anammox process

机译:磁铁矿对厌氧氨氧化工艺启动和减少N2O排放的影响

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摘要

In order to observe the effect of magnetite during anammox start-up and stabilization stages, a novel up-flow anaerobic sludge blanket reactor using magnetite as a functional bio-carrier was designed and operated. Continuous experiments indicated that magnetite could shorten the endogenous denitrification stage and improve the nitrogen removal rate. The nitrogen removal performance increased from -0.06 to 1.17 kg N per m(3) per d of R1 and from -0.08 to 1.18 kg N per m(3) per d of R0 (as control reactor) on day 150. Analysis of variance (ANOVA) results of NRR during days 90-150 showed that R1 was statistically different from R0 (p = 0.045 < 0.05). The corresponding quantitative polymerase chain reaction results of nirS and nirK, fluorescence in situ hybridization results and Illumina MiSeq sequencing showed that proliferation of the anammox bacteria was promoted by magnetite with an increase of the nitrogen loading rate. The reduced N2O emission (25.06 +/- 15.27 mu mol L-1) combined with the reduced nosZ qPCR results (2.26 +/- 0.029 x 10(6) copies per ng) revealed that this magnetitea-nammox reactor also can serve as an ideal alternative for N2O emission reduction in ammonium-rich wastewater treatment.
机译:为了观察磁铁矿在厌氧菌启动和稳定阶段的影响,设计并运行了一种以磁铁矿为功能性生物载体的新型上流式厌氧污泥床反应器。连续实验表明,磁铁矿可以缩短内源性反硝化阶段,提高脱氮率。第150天,除氮性能从-0.06到每m(3)每d R1到-0.06 kg N,从-0.08到每m(3)每d R0每m(3)到1.18 kg N(作为对照反应器)。 (ANOVA)在90-150天的NRR结果显示R1与R0在统计上有所不同(p = 0.045 <0.05)。相应的nirS和nirK定量聚合酶链反应结果,荧光原位杂交结果和Illumina MiSeq测序结果表明,磁铁矿会促进厌氧细菌的增殖,同时增加氮的负载量。减少的N2O排放(25.06 +/- 15.27μmol L-1)结合减少的nosZ qPCR结果(每ng 2.26 +/- 0.029 x 10(6)拷贝)表明,该磁铁矿-纳莫克斯反应器也可以用作富铵废水处理中减少N2O排放的理想选择。

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