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Removal of toluene from water by photocatalytic oxidation with activated carbon supported Fe~(3+_-doped TiO_2 nanotubes

机译:活性炭负载Fe〜(3 + _掺杂TiO_2)纳米管光催化氧化脱除水中的甲苯。

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摘要

In this work, activated carbon (AC)-supported TiO2 containing 1.0% (mass percent) of 1.0 at.% (atomic percent) Fe~(3+)-doped TiO_2 nanotubes (Fe-TNTs) were successfully synthesized. The catalyst was used to effectively decompose toluene in water under O_3/UV conditions, and some properties including the morphology, X-ray photoelectron spectroscopy, X-ray diffraction patterns, specific surface area and UV-visible diffuse reflectance spectroscopy were analyzed. A removal efficiency of 90.7% was achieved in the presence of fresh AC-supported Fe-TNTs calcined at 550 °C, with a pseudo-first-order rate constant of 0.038/min. The removal efficiency of toluene was reduced when the catalysts were repeatedly used, since the amount of adsorption sites of the supporting substrates decreased. However, even after AC-supported catalyst was used four times, the removal efficiency of toluene was still sufficient in water treatment. The enhanced photocatalytic activity of AC-supported Fe-TNTs was related to the synergistic effect of AC adsorption and Fe-TNTs photocatalytic ozonation. The water from a petrochemical company in China was used to obtain the removal efficiency of the pollutants, and the toluene and total organic carbon removal efficiencies were 69.9% and 58.3%, respectively.
机译:在这项工作中,成功地合成了活性炭(AC)负载的TiO2,其中含有1.0%(原子百分比)的Fe〜(3+)掺杂的TiO_2纳米管(Fe-TNTs),占1.0%(质量百分比)。该催化剂用于在O_3 / UV条件下有效分解水中的甲苯,并分析了其性质,形态,X射线光电子能谱,X射线衍射图,比表面积和UV-可见漫反射光谱。在新鲜的AC支撑的Fe-TNT在550°C下煅烧的情况下,去除率达到90.7%,伪一级速率常数为0.038 / min。重复使用催化剂时,甲苯的去除效率降低,这是因为支撑基板的吸附部位减少。然而,即使在使用AC负载的催化剂四次之后,在水处理中甲苯的去除效率仍然足够。 AC负载的Fe-TNTs的光催化活性增强与AC吸附和Fe-TNTs的光催化臭氧化的协同作用有关。使用来自中国石化公司的水获得污染物的去除效率,甲苯和总有机碳去除效率分别为69.9%和58.3%。

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