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Highly dispersed titania-supported iron oxide catalysts for efficient heterogeneous photo-Fenton oxidation: Influencing factors, synergistic effects and mechanism insight

机译:高度分散的二氧化钛支撑的氧化铁催化剂,用于高效异质光芬氧化氧化:影响因素,协同效应和机制洞察力

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Titania (TiO2) supported iron oxides (Fe-TiO2) are ideal catalysts to be applied in heterogeneous photoFenton oxidation (HPFO) for wastewater treatment because of the capabilities of TiO2 in photocatalysis and iron oxides in interfacial H2O2 activation. It is important to understand the influences of the structural parameters of Fe-TiO2 catalysts and the complicated interplay between TiO2 and iron oxides on the performance of HPFO. In this paper, a series of Fe-TiO2 catalysts are obtained through a facile solid-phase synthesis method. The iron loading content and the calcination temperature are systematically adjusted to tune the crystal phase, size, anatase/rutile ratio and density of oxygen vacancy (OV) site of TiO2, the dispersing state of iron species, and the interfacial structure of the Fe-TiO2 catalysts. Then, the performance of these catalysts in HPFO for degrading methylene blue (MB) are comparatively studied. Correlations between the performance and various structural properties of the catalysts are clarified. The interplay between TiO2 and iron oxides in the HPFO process is elucidated. The insight reaction mechanism is also discussed. Under optimized conditions (an iron loading of 1 wt% and a temperature of 600 degrees C), Fe-TiO2 catalysts with iron lattice doping, well-dispersed ultrasmall alpha-Fe2O3 nanoparticles, appropriate anatase/rutile ratios and abundant OV sites can be obtained. The anatase-rutile-Fe2O3 heterojunction, ultrasmall alpha-Fe2O3 nanoparticles and OV sites in the optimized catalysts work synergistically to improve the charge migration and interfacial activation of H2O2, leading to superior HPFO performance for MB degradation and mineralization. (c) 2020 Elsevier Inc. All rights reserved.
机译:二氧化钛(TiO2)负载的氧化铁(Fe-TiO2)是用于废水处理的非均相光芬顿氧化(HPFO)的理想催化剂,因为TiO2具有光催化能力,氧化铁具有界面H2O2活化能力。了解Fe-TiO2催化剂的结构参数以及TiO2和氧化铁之间复杂的相互作用对HPFO性能的影响非常重要。本文通过一种简便的固相合成方法制备了一系列Fe-TiO2催化剂。系统地调整铁负载量和煅烧温度,以调整TiO2的晶相、尺寸、锐钛矿/金红石比和氧空位(OV)密度、铁物种的分散状态以及Fe-TiO2催化剂的界面结构。然后,对这些催化剂在HPFO中降解亚甲基蓝(MB)的性能进行了比较研究。阐明了催化剂的性能与各种结构性质之间的关系。阐明了HPFO工艺中TiO2和氧化铁之间的相互作用。还讨论了insight反应机理。在优化的条件下(铁负载量为1 wt%,温度为600℃),可以获得具有铁晶格掺杂、分散良好的超小α-Fe2O3纳米颗粒、合适的锐钛矿/金红石比率和丰富的OV位的Fe-TiO2催化剂。在优化的催化剂中,锐钛矿-金红石-Fe2O3异质结、超小α-Fe2O3纳米颗粒和OV位点协同工作,以改善H2O2的电荷迁移和界面活化,从而在MB降解和矿化方面获得优异的HPFO性能。(c) 2020爱思唯尔公司版权所有。

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