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Degradation of Phenol with Fenton-like Treatment by Using Heterogeneous Catalyst (Modified Iron Oxide) and Hydrogen Peroxide

机译:非均相催化剂(改性氧化铁)和过氧化氢的芬顿样处理降解苯酚

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Goethite, hematite, magnetite and synthesized iron oxide are used as catalysts for Fenton-type oxidation of phenol. The synthesized iron oxides were characterized by X-ray diffraction (XRD), BET, X-ray photoelectron spectroscopy (XPS), and electron paramagnetic resonance (EPR). The catalytic activity of these materials is classified according to the observed rate of phenol oxidation. The effectiveness of the catalysts followed the sequence: ferrous ion > synthesized iron oxide magnetite hematite > goethite. According to these results, the most effective iron oxide catalyst had the structure similar to natural hematite. The surface oxidation state of the catalyst was between magnetite and hematite (+2.5 ~ +3.0). Phenol degraded completely in 40 min at neutral pH (pH = 7). Soluble ferric and ferrous ions were not detected in the filtrate from Fenton reaction solution by AAS. The formation of hydroxyl radicals was confirmed by EPR.
机译:针铁矿,赤铁矿,磁铁矿和合成的氧化铁用作苯酚的Fenton型氧化催化剂。合成的铁氧化物通过X射线衍射(XRD),BET,X射线光电子能谱(XPS)和电子顺磁共振(EPR)进行表征。这些材料的催化活性根据观察到的苯酚氧化速率进行分类。催化剂的有效性依次为:亚铁离子>合成氧化铁磁铁矿赤铁矿>针铁矿。根据这些结果,最有效的氧化铁催化剂具有类似于天然赤铁矿的结构。催化剂的表面氧化态介于磁铁矿和赤铁矿之间(+2.5〜+3.0)。在中性pH(pH = 7)下,苯酚在40分钟内完全降解。通过AAS在Fenton反应溶液的滤液中未检测到可溶性铁离子和亚铁离子。 EPR证实了羟基自由基的形成。

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