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The Gibbs free energy of formation of halogenated benzenes benzoates and phenols and their potential role as electron acceptors in anaerobic environments

机译:形成卤代苯苯甲酸酯和苯酚的吉布斯自由能及其在厌氧环境中作为电子受体的潜在作用

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摘要

The sequence of redox reactions in the natural environment generally follows the electron affinity of the electron acceptors present and can be rationalized by the redox potentials of the appropriate half-reactions. Answering the question how halogenated aromatics fit into this sequence requires information on their Gibbs free energy of formation values. In 1992 Gibbs free energy data for various classes of halogenated aromatic compounds were systematically explored for the first time based on Benson’s group contribution method. Since then more accurate quantum chemical calculation methods have become available. Here we use these methods to estimate enthalpy and Gibbs free energy of formation values of all chlorinated and brominated phenols. These data and similar state-of-the-art datasets for halogenated benzenes and benzoates were then used to calculate two-electron redox potentials of halogenated aromatics for standard conditions and for pH 7. The results underline the need to take speciation into consideration when evaluating redox potentials at pH 7 and highlight the fact that halogenated aromatics are excellent electron acceptors in aqueous environments.Electronic supplementary materialThe online version of this article (doi:10.1007/s10532-014-9710-5) contains supplementary material, which is available to authorized users.
机译:在自然环境中,氧化还原反应的顺序通常遵循存在的电子受体的电子亲和力,可以通过适当的半反应的氧化还原电势来合理化。要回答卤代芳族化合物如何适合该序列的问题,需要有关其吉布斯自由能形成值的信息。 1992年,根据Benson的基团贡献法首次系统地探索了各种类别的卤代芳族化合物的吉布斯自由能数据。从那时起,更精确的量子化学计算方法变得可用。在这里,我们使用这些方法来估算所有氯化和溴化苯酚的焓和吉布斯自由能的形成值。然后,这些数据和类似的有关卤代苯和苯甲酸酯的最新数据集被用于计算标准条件下和pH值为7时卤代芳族化合物的两电子氧化还原电势。结果强调了评估时需要考虑物种形成的需要。 pH值为7时的氧化还原电势,并突显了卤代芳族化合物在水性环境中是出色的电子受体的事实。电子补充材料本文的在线版本(doi:10.1007 / s10532-014-9710-5)包含补充材料,已授权使用用户。

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