首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Influence of fluoride on the reversible binding of NO by [Fe-II(EDTA)(H2O)]2(-). Inhibition of autoxidation of [Fe-II(EDTA)(H2O)](2-)
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Influence of fluoride on the reversible binding of NO by [Fe-II(EDTA)(H2O)]2(-). Inhibition of autoxidation of [Fe-II(EDTA)(H2O)](2-)

机译:氟化物对[Fe-II(EDTA)(H2O)] 2(-)可逆结合NO的影响。抑制[Fe-II(EDTA)(H2O)](2-)的自氧化

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摘要

The promising BioDeNO(x) process for NO removal from gaseous effluents suffers from an unsolved problem that results from the oxygen sensitivity of the Fe-II-aminopolycarboxylate complexes used in the absorber unit to bind NO(g). The utilized [Fe-II(EDTA)(H2O)](2-) complex is extremely oxygen sensitive and easily oxidized to give a totally inactive [Fe-III(EDTA)(H2O)](-) species toward the binding of NO(g). We found that an in situ formed, less-oxygen-sensitive mixed-ligand complex, [Fe-II(EDTA)(F)](3-), still reacts quantitatively with NO(g). The formation constant for the mixed ligand complex was determined spectrophotometrically. For [Fe-III(EDTA)(F)](2-) we found log K-MLF(F) = 1.7 +/- 0.1. The [Fe-II(EDTA)(F)](3-) complex has a smaller value of log K-MLF(F) = 1.3 +/- 0.2. The presence of fluoride does not affect the reversible binding of NO(g). Even over extended periods of time and fluoride concentrations of up to 1.0 M, the nitrosyl complex does not undergo any significant decomposition. The [Fe-III(EDTA)(NO-)](2-) complex releases bound NO on passing nitrogen through the solution to form [Fe-II(EDTA)(H2O)](2-) almost completely. A reaction cycle is feasible in which fluoride inhibits the autoxidation of [Fe-II(EDTA)(H2O)](2-) during the reversible binding of NO(g).
机译:用于从气态废水中去除NO的有希望的BioDeNO(x)工艺存在一个未解决的问题,该问题是由吸收器单元中用于结合NO(g)的Fe-II-氨基聚羧酸盐络合物的氧敏感性引起的。所利用的[Fe-II(EDTA)(H2O)](2-)络合物对氧非常敏感,容易被氧化,从而形成完全不活泼的[Fe-III(EDTA)(H2O)](-)物种,从而与NO结合(G)。我们发现原位形成的,对氧敏感度较低的混合配体络合物[Fe-II(EDTA)(F)](3-)仍与NO(g)定量反应。分光光度法确定混合配体配合物的形成常数。对于[Fe-III(EDTA)(F)](2-),我们发现log K-MLF(F)= 1.7 +/- 0.1。 [Fe-II(EDTA)(F)](3-)配合物的log K-MLF(F)的值较小,为1.3 +/- 0.2。氟化物的存在不会影响NO(g)的可逆结合。即使经过较长的时间并且氟化物浓度高达1.0 M,亚硝酰基络合物也不会发生任何明显的分解。 [Fe-III(EDTA)(NO-)](2-)络合物在使氮通过溶液时释放结合的NO,从而几乎完全形成[Fe-II(EDTA)(H2O)](2-)。反应循环是可行的,其中氟化物抑制NO(g)的可逆结合过程中[Fe-II(EDTA)(H2O)](2-)的自氧化。

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