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Interfacial mechanisms of heterogeneous Fenton reactions catalyzed by iron-based materials: A review

机译:铁基材料催化非均相Fenton反应的界面机理研究进展

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The heterogeneous Fenton reaction can generate highly reactive hydroxyl radicals (center dot OH) from reactions between recyclable solid catalysts and H2O2 at acidic or even circumneutral pH. Hence, it can effectively oxidize refractory organics in water or soils and has become a promising environmentally friendly treatment technology. Due to the complex reaction system, the mechanism behind heterogeneous Fenton reactions remains unresolved but fascinating, and is crucial for understanding Fenton chemistry and the development and application of efficient heterogeneous Fenton technologies. Iron-based materials usually possess high catalytic activity, low cost, negligible toxicity and easy recovery, and are a superior type of heterogeneous Fenton catalysts. Therefore, this article reviews the fundamental but important interfacial mechanisms of heterogeneous Fenton reactions catalyzed by iron-based materials. UOH, hydroperoxyl radicals/superoxide anions (HO2 center dot/O-2 center dot(-)) and high-valent iron are the threemain types of reactive oxygen species (ROS), with different oxidation reactivity and selectivity. Based on the mechanisms of ROS generation, the interfacial mechanisms of heterogeneous Fenton systems can be classified as the homogeneous Fenton mechanism induced by surface-leached iron, the heterogeneous catalysis mechanism, and the heterogeneous reaction-induced homogeneous mechanism. Different heterogeneous Fenton systems catalyzed by characteristic iron-based materials are comprehensively reviewed. Finally, related future research directions are also suggested. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:非均相的Fenton反应可在酸性甚至环境pH值下,由可回收的固体催化剂与H2O2之间的反应生成高反应性的羟基自由基(中心点OH)。因此,它可以有效地氧化水或土壤中的难处理有机物,已成为一种有前途的环保处理技术。由于复杂的反应体系,异质Fenton反应背后的机理仍未解决,但很着迷,对于理解Fenton化学以及有效的异质Fenton技术的开发和应用至关重要。铁基材料通常具有高催化活性,低成本,可忽略不计的毒性和易于回收,并且是非均相芬顿催化剂的优良类型。因此,本文综述了铁基材料催化的非均相Fenton反应的基本但重要的界面机理。 UOH,氢过氧自由基/超氧阴离子(HO2中心点/ O-2中心点(-))和高价铁是活性氧种类(ROS)的三种主要类型,具有不同的氧化反应性和选择性。基于ROS的生成机理,非均相Fenton体系的界面机理可分为表面浸出铁诱导的均相Fenton机理,非均相催化机理和非均相反应诱导均相机理。全面审查了由特征性铁基材料催化的各种非均质Fenton系统。最后,还提出了相关的未来研究方向。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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