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Experimental Validation of Hydrogen Atom Transfer Gibbs Free Energy as a Predictor of Nitroaromatic Reduction Rate Constants

机译:氢原子转移Gibbs自由能的实验验证作为硝基芳族减少率常数的预测因子

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摘要

Nitroaromatic compounds (NACs) are a class of prevalent contaminants. Abiotic reduction is an important fate process that initiates NAC degradation in the environment. Many linear free energy relationship (LFER) models have been developed to predict NAC reduction rates. Almost all LFERs to date utilize experimental aqueous-phase one-electron reduction potential (E-H(1)) of NAC as a predictor, and thus, their utility is limited by the availability of E-H(1) data. A promising new approach that utilizes computed hydrogen atom transfer (HAT) Gibbs free energy instead of E-H(1) as a predictor was recently proposed. In this study, we evaluated the feasibility of HAT energy for predicting NAC reduction rate constants. Using dithionite-reduced quinones, we measured the second-order rate constants for the reduction of seven NACs by three hydroquinones of different protonation states. We computed the gas-phase energies for HAT and electron affinity (EA) of NACs and established HAT- and EA-based LFERs for six hydroquinone species. The results suggest that HAT energy is a reliable predictor of NAC reduction rate constants and is superior to EA. This is the first independent, experimental validation of HAT-based LFER, a new approach that enables rate prediction for a broad range of structurally diverse NACs based solely on molecular structures.
机译:硝基芳族化合物(NAC)是一类普遍的污染物。非生物减少是一个重要的命运过程,引发了环境中的NAC降解。已经开发出许多线性自由能量关系(LFER)模型来预测NAC减少率。几乎所有迄今为止迄今为止NAC的实验水相一电子减少电位(E-H(1))作为预测器,因此它们的实用性受E-H(1)数据的可用性受到限制。最近提出了一种利用计算的氢原子转移(帽子)Gibbs自由能而不是E-H(1)作为预测的新方法。在这项研究中,我们评估了帽子能量的可行性,以预测NAC减少率常数。使用二硫代硫菌喹酮,我们测量了二阶率常数,用于减少七种NAC的不同质子化状态的三种水醌。我们计算了NACS的帽子和电子亲和力(EA)的气相能量,并为六种氢醌物种建立了基于帽子和EA的液体。结果表明,帽子能量是NAC减少率常量的可靠预测因子,优于EA。这是基于帽子的LBER的第一个独立的实验验证,这是一种新方法,其能够在分子结构上基于各种结构多样化NAC的速率预测。

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  • 来源
    《Environmental Science & Technology》 |2019年第10期|5816-5827|共12页
  • 作者单位

    Univ Delaware Dept Civil & Environm Engn Newark DE 19716 USA;

    Univ Delaware Dept Civil & Environm Engn Newark DE 19716 USA;

    Univ Delaware Dept Civil & Environm Engn Newark DE 19716 USA;

    Univ Delaware Dept Civil & Environm Engn Newark DE 19716 USA;

    Manhattan Coll Dept Chem Engn Riverdale NY 10471 USA|Mutch Associates LLC Ramsey NJ 07446 USA;

    Univ Delaware Dept Civil & Environm Engn Newark DE 19716 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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