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Investigation of reaction mechanisms by electrospray ionization mass spectrometry: characterization of intermediates in the degradation of phenol by a novel iron/magnetite/hydrogen peroxide heterogeneous oxidation system

机译:通过电喷雾电离质谱研究反应机理:新型铁/磁铁矿/过氧化氢非均相氧化系统降解苯酚中中间体的特征

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Electrospray ionization (ESI) mass spectrometry (MS) and tandem mass spectrometry (MS/MS) were used to monitor the oxidation of phenol by a novel heterogeneous Fenton system based on a Fe-0/Fe3O4 composite and H2O2. On-line ESI-MS(/MS) shows that this heterogeneous system promotes prompt oxidation of phenol to hydroquinone, which is subsequently oxidized to quinone, other cyclic poly-hydroxylated intermediates and an acyclic carboxylic acid. A peroxide-type intermediate, probably formed via an electrophilic attack of HOO. on the phenol ring, was also intercepted and characterized. ESI-MS(/MS) monitoring of the oxidation of two other model aromatic compounds, benzene and chlorobenzene, indicates the participation of analogous intermediates. These results suggest that oxidation by the heterogeneous system is promoted by highly reactive HO. and HOO. radicals generated from H2O2 on the surface of the Fe-0/Fe3O4 composite via a classical Fenton-like mechanism. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:使用电喷雾电离(ESI)质谱(MS)和串联质谱(MS / MS)来监测基于Fe-0 / Fe3O4复合材料和H2O2的新型异质Fenton系统对苯酚的氧化。在线ESI-MS(/ MS)表明,这种异质系统可促进苯酚迅速氧化为对苯二酚,然后将其氧化为醌,其他环状多羟基化中间体和无环羧酸。过氧化物类中间体,可能是通过HOO的亲电作用形成的。在苯酚环上,也被截获并表征。 ESI-MS(/ MS)监测的其他两种芳香族化合物苯和氯苯的氧化反应表明类似中间体的参与。这些结果表明高反应性HO促进了异质系统的氧化。和嘘。 Fe-0 / Fe3O4复合材料表面上的H2O2通过经典的Fenton类机制生成自由基。版权所有(c)2006 John Wiley&Sons,Ltd.

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