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A new approach for Fe(III)EDTA reduction in NOx scrubber solution using bio-electro reactor

机译:利用生物电反应器还原NOx洗涤塔溶液中Fe(III)EDTA的新方法

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摘要

A new process for the removal of NO, by a combined Fe(II)EDTA absorption and microbial reduction has been demonstrated, in which part of the Fe(II)EDTA will be oxidized by oxygen in the flue gas to form Fe(III)EDTA. In former studies, strain FR-2 has been found to reduce Fe(III)EDTA efficiently. Otherwise, it has been reported that bio-electro reactor could efficiently provide a chance for simultaneous denitrification and metal ion removal. Therefore, a use of bio-electro reactor is suggested to promote the reduction of Fe(III)EDTA by strain FR-2 in this paper. The results showed that the concentration of Fe(III)EDTA decreased rapidly when electric current was applied, and that as the current density rose, the Fe(III)EDTA reduction rate increased while followed by a decrease afterward. The formation of the biofilm on the electrode was observed by ESEM (Environmental Scan Electro-Microscope). In addition, the Fe(III)EDTA reduction rate obviously decreased with the existence of NaNO2.
机译:已经证明了通过结合Fe(II)EDTA吸收和微生物还原去除NO的新方法,其中部分Fe(II)EDTA将被烟道气中的氧气氧化形成Fe(III) EDTA。在以前的研究中,已发现FR-2菌株可有效还原Fe(III)EDTA。否则,据报道生物电反应器可以有效地提供同时脱氮和去除金属离子的机会。因此,本文建议使用生物电反应器来促进FR-2菌株还原Fe(III)EDTA。结果表明,施加电流时,Fe(III)EDTA的浓度迅速降低,并且随着电流密度的增加,Fe(III)EDTA的还原率增加,而随后降低。通过ESEM(环境扫描电子显微镜)观察电极上生物膜的形成。此外,Fe(III)EDTA的还原率随着NaNO2的存在而明显降低。

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