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Experimental study on the inhibition of biological reduction of Fe(III)EDTA in NOx absorption solution*

机译:抑制NOx吸收溶液中Fe(III)EDTA生物还原的实验研究*

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摘要

Scrubbing of NOx from the gas phase with Fe(II)EDTA has been shown to be highly effective. A new biological method can be used to convert NO to N2 and regenerate the chelating agent Fe(II)EDTA for continuous NO absorption. The core of this biological regeneration is how to effectively simultaneous reduce Fe(III)EDTA and Fe(II)EDTA-NO, two mainly products in the ferrous chelate absorption solution. The biological reduction rate of Fe(III)EDTA plays a main role for the NOx removal efficiency. In this paper, a bacterial strain identified as Klebsiella Trevisan sp. was used to demonstrate an inhibition of Fe(III)EDTA reduction in the presence of Fe(II)EDTA-NO. The competitive inhibition experiments indicted that Fe(II)EDTA-NO inhibited not only the growth rate of the iron-reduction bacterial strain but also the Fe(III)EDTA reduction rate. Cell growth rate and Fe(III)EDTA reduction rate decreased with increasing Fe(II)EDTA-NO concentration in the solution.
机译:已经证明用Fe(II)EDTA从气相中洗涤NOx是非常有效的。可以使用一种新的生物学方法将NO转化为N2并再生螯合剂Fe(II)EDTA,以连续吸收NO。这种生物再生的核心是如何有效地同时还原螯合亚铁吸收溶液中的两种主要产物Fe(III)EDTA和Fe(II)EDTA-NO。 Fe(III)EDTA的生物还原率对NOx去除效率起主要作用。在本文中,鉴定为克雷伯菌Trevisan sp。的细菌菌株。用于证明Fe(II)EDTA-NO存在下抑制Fe(III)EDTA还原。竞争性抑制实验表明,Fe(II)EDTA-NO不仅抑制了铁还原细菌菌株的生长速率,而且还抑制了Fe(III)EDTA的还原速率。随着溶液中Fe(II)EDTA-NO浓度的增加,细胞生长速率和Fe(III)EDTA还原速率降低。

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