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首页> 外文期刊>ChemEngineering >Natural Hematite and Siderite as Heterogeneous Catalysts for an Effective Degradation of 4-Chlorophenol via Photo-Fenton Process
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Natural Hematite and Siderite as Heterogeneous Catalysts for an Effective Degradation of 4-Chlorophenol via Photo-Fenton Process

机译:天然赤铁矿和菱铁矿作为多相催化剂通过光芬顿法有效降解4-氯苯酚

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This paper describes a simple and low-cost process for the degradation of 4-Chlorophenol (4-CP) from aqueous solution, using natural Tunisian Hematite (M1) and Siderite (M2). Two natural samples were collected in the outcroppings of the Djerissa mining site (Kef district, northwestern Tunisia). Both Hematite and Siderite ferrous samples were characterized using several techniques, including X-Ray Diffraction (XRD), Nitrogen Physisorption (BET), Infrared Spectroscopy (FTIR), H2-Temperature Programmed Reduction (H2-TPR), Scanning Electronic Microscopy (SEM) linked with Energy Dispersive X-ray (EDS) and High-Resolution Transmission Electron Microscopy (HRTEM). Textural, structural and chemical characterization confirmed the presence of Hematite and Siderite phases with a high amount of iron on the both surface materials. Their activity was evaluated in the oxidation of 4-CP in aqueous medium under heterogeneous photo-Fenton process. Siderite exhibited higher photocatalytic oxidation activity than Hematite at pH 3. The experimental results also showed that 100% conversion of 4-CP and 54% TOC removal can be achieved using Siderite as catalyst. Negligible metal leaching and catalyst reutilization without any loss of activity point towards an excellent catalytic stability for both natural catalysts.
机译:本文介绍了一种使用天然突尼斯赤铁矿(M1)和菱铁矿(M2)从水溶液中降解4-氯苯酚(4-CP)的简单且低成本的方法。在杰里萨(Djerissa)采矿场(突尼斯西北部的科夫区)的露头处采集了两个自然样本。使用多种技术对赤铁矿和菱铁矿样品进行了表征,包括X射线衍射(XRD),氮物理吸附(BET),红外光谱(FTIR),H2-温度程序化还原(H2-TPR),扫描电子显微镜(SEM)与能量色散X射线(EDS)和高分辨率透射电子显微镜(HRTEM)相连。织构,结构和化学特征证实了两种表面材料上均存在着铁含量高的赤铁矿和菱铁矿相。在异质光芬顿过程中,在水性介质中4-CP的氧化中评估了它们的活性。在pH 3时,菱铁矿比赤铁矿具有更高的光催化氧化活性。实验结果还表明,使用菱铁矿作为催化剂,可以实现100%的4-CP转化率和54%的TOC去除率。可以忽略不计的金属浸出和催化剂的再利用而不损失任何活性,这表明两种天然催化剂都具有出色的催化稳定性。

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