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首页> 外文期刊>European journal of inorganic chemistry >Mechanism Involving Hydrogen Sulfite Ions, Chlorite Ions, and Hypochlorous Acid as Key Intermediates of the Autocatalytic Chlorine Dioxide-Thiourea Dioxide Reaction
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Mechanism Involving Hydrogen Sulfite Ions, Chlorite Ions, and Hypochlorous Acid as Key Intermediates of the Autocatalytic Chlorine Dioxide-Thiourea Dioxide Reaction

机译:亚硫酸氢根离子,亚氯酸根离子和次氯酸作为自催化二氧化氯-二氧化硫脲反应的关键中间体的机理

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The kinetics of the chlorine dioxide-thiourea dioxide reaction was investigated by monitoring absorbance-time profiles at = 360 nm. Under acidic conditions, the primary carbon-containing product is cyanamide, not urea as considered previously for many oxidation reactions of thiourea dioxide. Increase of the rate of the reaction by an increase of pH can be readily explained by the slow pH-dependent formation of a more reactive form of thiourea dioxide (TDO) that is produced steadily and unavoidably as the stock TDO solution ages. We have also found that the absorbance-time profiles of the chlorine dioxide-TDO reaction are sigmoidal with excess TDO. The addition of methionine as a hypochlorous acid scavenging agent inhibits the reaction significantly, whereas the addition of chlorite ions and trace amounts of hydrogen sulfite ions accelerates the decay of chlorine dioxide. On the basis of these experiments, a sixteen-step kinetic model involving hypochlorous acid, chlorite ions, and hydrogen sulfite ions as key intermediates that provide an autocatalytic cycle is proposed to account for the overall kinetic behavior observed, including the slow rearrangement of TDO.
机译:通过监测在= 360 nm处的吸收时间曲线,研究了二氧化氯-二氧化硫脲反应的动力学。在酸性条件下,主要的含碳产物是氰胺,而不是先前许多二氧化硫脲氧化反应所考虑的尿素。随着pH值的增加,反应速率的增加可以很容易地解释为,随着pH值的逐渐增加,反应性的形式会逐渐稳定,不可避免地随着储备TDO溶液的老化而逐渐生成更具反应性的硫脲二氧化物(TDO)。我们还发现,二氧化氯-TDO反应的吸光度-时间曲线为S型,过量的TDO为S型。蛋氨酸作为次氯酸清除剂的加入显着抑制了反应,而亚氯酸根离子和痕量亚硫酸氢根离子的加入加速了二氧化氯的分解。在这些实验的基础上,提出了以次氯酸,亚氯酸根离子和亚硫酸氢根离子为关键中间体的十六步动力学模型,该模型提供了自动催化循环,以说明观察到的总体动力学行为,包括TDO的缓慢重排。

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