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Novel low-cost Fenton-like layered Fe-titanate catalyst: Preparation, characterization and application for degradation of organic colorants

机译:新型低成本的Fenton状层状铁钛酸盐催化剂:有机着色剂降解的制备,表征和应用

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摘要

Novel low-cost layered Fe-titanate catalyst for photo-Fenton degradation of organic contaminants was successfully developed by ion exchange of Fe~(3+) with Na~+ layered nano Na-titanates which was prepared by alkali hydrothermal method. The as prepared materials were characterized by powder X-ray diffraction analysis (XRD), field emission scanning electron microscopy (FESEM) and energy-dispersive X-ray spectrometer (EDX). The catalytic activity of the Fe-titanate catalyst was evaluated by the decolorization of three different dyes (rhodamine 6G (R6G), methyl blue (MB), and methyl orange (MO)) under UV irradiation at room temperature. Effect of several important factors such as Fe loading in the catalyst, initial solution pH, catalyst dosage, H_2O_2 amount, and reaction time was systematically studied. It was found that the decolorization was very efficient for all three dyes. The efficiency reached 98% for R6G, 98.5% for MB, and 97% for MO, respectively, under optimal conditions. The oxidation process was quick, and only 15 min is needed for all three dyes. Moreover, the Fe-titanate catalyst could be used in a wider and near neutral pH range compared with classic Fenton systems which need to be operated at around pH 3.0. Kinetic analysis results showed that the oxidation kinetics was accurately represented by pseudofirst-order model. More importantly, the catalyst was very stable and could be reused for at least four cycles when operated under near neutral pH. The Fe leaching from the catalyst measured was almost negligible, which not only demonstrated the stability of the catalyst, but also avoided the formation of secondary Fe pollution. Therefore, the reported Fe-titanates are promising nanomaterials which can be used as Fenton like catalyst for the degradation of organic contaminant in wastewater.
机译:通过用碱水热法制备的Na〜+层状纳米钛酸钠与Fe〜(3+)进行离子交换,成功开发了新型的低成本层状Fe-钛酸酯催化剂,用于光芬顿降解有机污染物。通过粉末X射线衍射分析(XRD),场发射扫描电子显微镜(FESEM)和能量分散X射线光谱仪(EDX)对所制备的材料进行表征。通过在室温下紫外线照射下三种不同染料(若丹明6G(R6G),甲基蓝(MB)和甲基橙(MO))的脱色评估铁钛酸盐催化剂的催化活性。系统研究了催化剂中铁的负载量,初始溶液的pH值,催化剂用量,H_2O_2的量和反应时间等几个重要因素的影响。发现所有三种染料的脱色都非常有效。在最佳条件下,R6G的效率分别达到98%,MB的98.5%和MO的97%。氧化过程很快,所有三种染料仅需15分钟。此外,与经典的Fenton系统相比,钛铁酸催化剂可以在更宽的pH范围和接近中性的pH范围内使用,而Fenton系统需要在大约3.0的pH下运行。动力学分析结果表明,氧化动力学可以用伪一级模型精确表示。更重要的是,该催化剂非常稳定,在接近中性pH的条件下操作至少可以重复使用四个循环。从测定的催化剂中浸出的铁几乎可以忽略不计,这不仅证明了催化剂的稳定性,而且避免了二次铁污染的形成。因此,已报道的铁钛酸盐是有前途的纳米材料,可以用作芬顿类催化剂来降解废水中的有机污染物。

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