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首页> 外文期刊>Journal of Microbiological Methods >Fe(II)EDTA-NO reduction by a newly isolated thermophilic Anoxybacillus sp HA from a rotating drum biofilter for NOx removal
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Fe(II)EDTA-NO reduction by a newly isolated thermophilic Anoxybacillus sp HA from a rotating drum biofilter for NOx removal

机译:从旋转鼓式生物滤池中新分离的嗜热嗜热嗜热芽孢杆菌sp HA还原Fe(II)EDTA-NO,以去除NOx

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摘要

The reduction of Fe(II)EDTA-NO is one of the core processes in BioDeNOx, an integrated physicochemical and biological technique for NOx removal from industrial flue gases. A newly isolated thermophilic Anoxybacillus sp. HA, identified by 16S rRNA sequence analysis, could simultaneously reduce Fe(II)EDTA-NO and Fe(III)EDTA. A maximum NO removal efficiency of 98.7% was achieved when 3 mM Fe(II)EDTA-NO was used in the nutrient solution at 55 degrees C. Results of this study strongly indicated that the biological oxidation of Fe(II)EDTA played an important role in the formation of Fe (III)EDTA in the anaerobic system. Fe(II)EDTA-NO was more competitive than Fe(III)EDTA as an electron acceptor, and the presence of Fe(III)EDTA slightly affected the reduction rate of Fe(II) EDTA-NO. At 55 degrees C, the maximum microbial specific growth rate mu(max) reached the peak value of 0.022 h(-1). The maximum NO removal efficiency was also measured (95.4%) under this temperature. Anoxybacillus sp. HA, which grew well at 50 degrees C-60 degrees C, is a potential microbial resource for Fe(II)EDTA-NO reduction at thermophilic temperatures. (C) 2014 Elsevier B.V. All rights reserved.
机译:Fe(II)EDTA-NO的还原是BioDeNOx的核心过程之一,BioDeNOx是一种从物理烟气中去除NOx的综合物理化学和生物技术。新分离的嗜热嗜热芽孢杆菌通过16S rRNA序列分析鉴定的HA可同时还原Fe(II)EDTA-NO和Fe(III)EDTA。在55°C的营养液中使用3 mM Fe(II)EDTA-NO时,最大NO去除效率达到98.7%。该研究结果强烈表明,Fe(II)EDTA的生物氧化起着重要的作用。在厌氧系统中形成Fe(III)EDTA的作用。 Fe(II)EDTA-NO比Fe(III)EDTA作为电子受体更具竞争力,并且Fe(III)EDTA的存在对Fe(II)EDTA-NO的还原速率影响很小。在55摄氏度时,最大微生物比生长率mu(max)达到了0.022 h(-1)的峰值。在此温度下也测得最大NO去除效率(95.4%)。嗜氧芽孢杆菌HA在50摄氏度至60摄氏度的温度下生长良好,是在高温下还原Fe(II)EDTA-NO的潜在微生物资源。 (C)2014 Elsevier B.V.保留所有权利。

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