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Review on the application of modified iron oxides as heterogeneous catalysts in Fenton reaction

机译:改性铁氧化物作为非均相催化剂在芬顿反应中的应用综述

摘要

Heterogeneous Fenton reaction is an advanced oxidation process which has gained wide spread acceptance for higher removal efficiency of recalcitrant organic contaminants under wide range of pH compared to homogeneous reactions. Conventionally, iron oxides are used as heterogeneous catalysts for Fenton oxidation system because of their abundance, easy separation and lower cost. This paper reviews the substitution of iron in an iron oxide with other transition metals as a mean to improve the propertiesudof the iron oxide towards higher performance for contaminant degradation. Several studies have reportedudenhanced performance resulted from this substitution based on two possible mechanisms. First is the conjugation of redox pairs of iron species and imported active ion in hydroxyl radical production cycle. Second: the generation of oxygen vacancies as active sites on the surface of catalyst via adjustments for unequal charge substitutions. This class of catalysts is anticipated to work effectively for treatment of various recalcitrant waste waters using Fenton oxidation system. Subsequently, the stabilityudof the produced catalyst needs to be examined under various experimental conditions to prevent the adverse effects of transition metals on the receiving environment.
机译:非均相Fenton反应是一种先进的氧化过程,与均相反应相比,该方法已获得广泛的接受,以在宽pH范围内提高顽固有机污染物的去除效率。常规地,由于氧化铁的含量丰富,易于分离且成本较低,因此它们被用作Fenton氧化系统的多相催化剂。本文综述了用其他过渡金属替代氧化铁中的铁的方法,以改善氧化铁的性能,使其具有更高的污染物降解性能。几项研究报告了基于两种可能的机制,这种替代产生的性能增强。首先是铁物种的氧化还原对和进口活性离子在羟基自由基生产周期中的结合。第二:通过调节不相等的电荷取代,在催化剂表面上产生氧空位作为活性位点。预计此类催化剂将使用Fenton氧化系统有效处理各种难处理的废水。随后,需要在各种实验条件下检查制得的催化剂的稳定性,以防止过渡金属对接收环境的不利影响。

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