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Impact of radical versus non-radical pathway in the Fenton chemistry on the iron redox cycle in clouds

机译:Fenton化学中自由基和非自由基途径对云中铁氧化还原循环的影响

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摘要

Modeling studies have shown that the Fenton reaction of iron(Ⅱ) with H_2O_2 can contribute, in a significant amount, to OH radicals production in cloud droplets. However, the destruction mechanism of hydrogen peroxide by iron(Ⅱ) is still uncertain. Two reaction pathways for the first step of Fenton chemistry have been advanced: a radical pathway which considers an OH radical production and a non-radical pathway considering ferryl ion production. The aim of this work is to evaluate the impact of these two possible reaction pathways for Fenton chemistry on the iron redox cycle in cloud droplets. For this purpose, the numerical model of multiphase chemistry M2C2 has been applied to a rural chemical scenario representative of continental conditions. This study highlights that the iron redox cycling is driven by Fenton reaction whatever Fenton mechanism is considered. The ferryl ion chemistry becomes significant in the iron redox cycling when this species is considered as an active intermediate in Fenton chemistry and under night time conditions the iron redox chemistry is controlled by the ferryl ion reactivity. The partitioning of iron between its two main oxidation states (+Ⅱ and +Ⅲ) in cloud droplets, which is the indicator of the iron oxido-reduction potential, does not change significantly between the two cases. However, for the non-radical case, the ferryl ion concentration is up to four orders of magnitude higher than the OH concentration highlighting its potential role in oxidative capacity of cloud droplets.
机译:模拟研究表明,铁(Ⅱ)与H_2O_2的芬顿反应可以极大地促进云滴中OH自由基的产生。但是,铁(Ⅱ)对过氧化氢的破坏机理仍不确定。 Fenton化学第一步的两个反应途径已经提出:考虑OH自由基产生的自由基途径和考虑亚硝酸根离子产生的非自由基途径。这项工作的目的是评估芬顿化学的这两种可能的反应途径对云滴中铁氧化还原循环的影响。为此,已经将多相化学M2C2的数值模型应用于代表大陆条件的农村化学情景。这项研究强调,无论考虑Fenton机制如何,铁的氧化还原循环都是由Fenton反应驱动的。当该物种被认为是芬顿化学中的活性中间体时,铁离子还原化学在铁氧化还原循环中就变得很重要,并且在夜间条件下,铁还原氧化化学作用受到铁离子还原反应的控制。铁在云滴中的两个主要氧化态(+Ⅱ和+Ⅲ)之间的分配(这是铁氧化还原电位的指标)在两种情况下没有显着变化。但是,对于非自由基情况,亚铁离子浓度比OH浓度高出四个数量级,突显了其在云滴氧化能力中的潜在作用。

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