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Generation of hydroxyl radicals from reactions between a dimethoxyhydroquinone and iron oxide nanoparticles

机译:从二甲氧基羟基醌和氧化铁纳米粒子之间的反应产生羟基自由基

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The hydroxyl radical (·OH) is a powerful oxidant that is produced in a wide range of environments via the Fenton reaction (Fe2+ +?H2O2?→?Fe3+ +?·OH?+?OH-). The reactants are formed from the reduction of Fe3+ and O2, which may be promoted by organic reductants, such as hydroquinones. The aim of this study was to investigate the extent of ·OH formation in reactions between 2,6-dimethoxyhydroquinone (2,6-DMHQ) and iron oxide nanoparticles. We further compared the reactivities of ferrihydrite and goethite and investigated the effects of the O2 concentration and pH on the generation of ·OH. The main finding was that the reactions between 2,6-DMHQ and iron oxide nanoparticles generated substantial amounts of ·OH under certain conditions via parallel reductive dissolution and catalytic oxidation reactions. The presence of O2 was essential for the catalytic oxidation of 2,6-DMHQ and the generation of H2O2. Moreover, the higher reduction potential of ferrihydrite relative to that of goethite made the former species more susceptible to reductive dissolution, which favored the production of ·OH. The results highlighted the effects of surface charge and ligand competition on the 2,6-DMHQ oxidation processes and showed that the co-adsorption of anions can promote the generation of ·OH.
机译:羟基(哦)是一种强氧化剂,其通过FENTON反应(Fe 2 ++ + + + H 2 O 2→→Fe3 + +··OH?+→OH-)在各种环境中生产。反应物由Fe3 +和O 2的还原形成,其可以通过有机还原剂,例如氢醌促进。本研究的目的是探讨2,6-二甲氧基羟基醌(2,6-DMHQ)和氧化铁纳米颗粒之间反应中的·OH形成的程度。我们进一步比较了Ferrihydrite和Geethite的反应性,并研究了O2浓度和pH对·OH产生的影响。主要发现是,通过并联还原溶解和催化氧化反应在某些条件下产生大量·OH之间的反应。 O 2的存在对于2,6-DMHQ的催化氧化和产生H2O2的产生至关重要。此外,Ferrihydrite相对于Geethite的更高的降低潜力使前一种物种更容易被还原溶解,这有利于生产·哦。结果突出了表面电荷和配体竞争对2,6-DMHQ氧化过程的影响,并表明阴离子的共吸收可以促进·哦的产生。

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