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基于第一性原理研究α-FeO(0001)表面上环境持久性自由基(EPFRs)的异质形成:氧空位的影响。

First-principles study on the heterogeneous formation of environmentally persistent free radicals (EPFRs) over α-FeO(0001) surface: Effect of oxygen vacancy.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

School of Environment, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310012, China.

出版信息

J Environ Sci (China). 2024 Aug;142:279-289. doi: 10.1016/j.jes.2023.07.021. Epub 2023 Jul 22.

Abstract

Metal oxides with oxygen vacancies have a significant impact on catalytic activity for the transformation of organic pollutants in waste-to-energy (WtE) incineration processes. This study aims to investigate the influence of hematite surface oxygen point defects on the formation of environmentally persistent free radicals (EPFRs) from phenolic compounds based on the first-principles calculations. Two oxygen-deficient conditions were considered: oxygen vacancies at the top surface and on the subsurface. Our simulations indicate that the adsorption strength of phenol on the α-FeO(0001) surface is enhanced by the presence of oxygen vacancies. However, the presence of oxygen vacancies has a negative impact on the dissociation of the phenol molecule, particularly for the surface with a defective point at the top layer. Thermo-kinetic parameters were established over a temperature range of 300-1000 K, and lower reaction rate constants were observed for the scission of phenolic O-H bonds over the oxygen-deficient surfaces compared to the pristine surface. The negative effects caused by the oxygen-deficient conditions could be attributed to the local reduction of Fe to Fe, which lower the oxidizing ability of surface reaction sites. The findings of this study provide us a promising approach to regulate the formation of EPFRs.

摘要

具有氧空位的金属氧化物对废物能源(WtE)焚烧过程中有机污染物转化的催化活性有重大影响。本研究旨在基于第一性原理计算,研究赤铁矿表面氧点缺陷对酚类化合物形成环境持久性自由基(EPFRs)的影响。考虑了两种氧空位条件:表面和次表面的氧空位。我们的模拟表明,氧空位的存在增强了苯酚在α-FeO(0001)表面的吸附强度。然而,氧空位的存在对苯酚分子的解离有负面影响,特别是对于顶层有缺陷点的表面。在 300-1000 K 的温度范围内建立了热动力学参数,与原始表面相比,在氧缺陷表面上酚类 O-H 键的断裂反应速率常数较低。氧缺陷条件引起的负效应可归因于 Fe 局部还原为 Fe,降低了表面反应位点的氧化能力。本研究的结果为调控 EPFRs 的形成提供了一种有前途的方法。

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