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Influence of oxalic acid formed on the degradation of phenol by Fenton reagent.

机译:Fenton试剂形成的草酸对苯酚降解的影响。

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摘要

The objective of this work is to examine the influence of oxalic acid formed on the degradation of phenol by Fenton reagent. Oxalic acid formed at initial stage within 30min significantly suppresses the reduction of ferric ion, thus terminating degradation reaction. The yield of oxalic acid is dependent on the amount of ferrous ion dosed since the minimal amount of oxalic acid is formed after the degradation reaction terminates. Mineralization of phenol by Fenton reagent stagnates after 120min under the conditions used in this study. The reason why the mineralization stagnated can be assumed to be following two mechanisms other than the depletion of H(2)O(2). In the case where a small amount of ferrous ions is dosed, the reduction of ferric ions is minimal by oxalic acid formed. In the case where a large amount of ferrous ions is dosed, the amount of degradable organic compounds is insufficient owing to preferential conversion to oxalic acid. The mineralization can be enhanced by the intermittent dosing of ferrous ions, which facilitates the suppression of oxalic acid formation during the degradation by Fenton reagent.
机译:这项工作的目的是研究形成的草酸对Fenton试剂降解苯酚的影响。在初始阶段30分钟内形成的草酸会显着抑制铁离子的还原,从而终止降解反应。草酸的收率取决于所加入的亚铁离子的量,因为在降解反应终止后形成的草酸量最少。在本研究中使用的条件下,芬顿试剂在120分钟后会停滞苯酚的矿化作用。除了H(2)O(2)的消耗外,矿化停滞的原因可以认为是以下两种机理。在添加少量亚铁离子的情况下,由于草酸的形成,铁离子的还原作用最小。在添加大量亚铁离子的情况下,由于优先转化为草酸,因此可降解有机化合物的量不足。可以通过间歇性添加亚铁离子来增强矿化作用,这有助于抑制Fenton试剂降解过程中草酸的形成。

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