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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Preparation of N-I co-doped TiO2 supported on activated carbon photocatalyst for efficient photocatalytic reduction of Cr(VI) ions
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Preparation of N-I co-doped TiO2 supported on activated carbon photocatalyst for efficient photocatalytic reduction of Cr(VI) ions

机译:支持活性炭光催化剂的N-I共掺杂TiO2的制备,用于高效光催化Cr(VI)离子的光催化还原

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Photocatalytic reduction of Cr(VI) is a safe, economical and clean method. In this study, a series of photocatalysts based on N-I co-doped TiO2 supported on activated carbon (denoted as x/yNIT@AC-z, N-I/Ti = x/y, calcination temperature = z degrees C) were synthesized, characterized and utilized for Cr(VI) photocatalytic reduction. Results of characterization revealed that all the prepared TiO2 existed in the form of monocrystalline tetragonal anatase phase with the particle size of 20 nm. Among them, 1/2NIT@AC-350 exhibited the highest photocatalytic performance. 1/2NIT@AC-350 showed a narrow band gap of 2.77 eV, which was chiefly because of the role of defect levels caused by pentavalent iodine, interstitial and substitutional nitrogen. 1/2NIT@AC-350/UV light/citric acid system exhibited the complete removal of 50 mg/L Cr(VI), over four successive reuse cycles without any obvious decrease in its photocatalytic reduction capability. In addition, the activated carbon in 1/2NIT@AC-350 provided a high concentration reaction environment for TiO2 via electrostatic attraction, which makes the photocatalyst possess a strong photocatalytic reaction driving force even at low concentration. Cr(VI) was also successfully removed in an actual water matrix (Yangtze river). This study provides a promising demonstration for the treatment of environmental pollutants, especially for Cr(VI) in wastewater effluents.
机译:光催化还原六价铬是一种安全、经济、清洁的方法。在这项研究中,一系列基于N-I共掺杂TiO2的光催化剂以活性炭(表示为x)为载体/yNIT@AC-z、 合成了N-I/Ti=x/y,煅烧温度=z摄氏度)并对其进行了表征,并将其用于Cr(VI)的光催化还原。表征结果表明,所有制备的TiO2均以单晶硅四方锐钛矿相的形式存在,粒径为20nm。其中,1/2NIT@AC-350表现出最高的光催化性能。1/2NIT@AC-350显示出2.77 eV的窄带隙,这主要是由于五价碘、间隙氮和替代氮引起的缺陷能级的作用。1/2NIT@AC-350/紫外光/柠檬酸体系在四个连续的重复使用循环中完全去除了50 mg/L的Cr(VI),其光催化还原能力没有明显降低。此外,活性炭在1/2NIT@AC-350通过静电吸引为TiO2提供了高浓度的反应环境,使得光催化剂即使在低浓度下也具有很强的光催化反应驱动力。在实际的水基质(长江)中,Cr(VI)也被成功去除。本研究为处理环境污染物,尤其是废水中的六价铬提供了一个有希望的示范。

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