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Enhanced optical properties and photocatalytic activity of TiO_2 nanotubes by using magnetic activated carbon: evaluating photocatalytic reduction of Cr(Ⅵ)

机译:使用磁性活性炭增强TiO_2纳米管的光学性质和光催化活性:评价Cr(ⅵ)的光催化减少

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In recent years, photocatalytic reduction of Cr(VI) to Cr(III) by TiO2 nanostructures, as a potent environmental technology has attracted a lot of attention. However, several defects including the large band gap energy of TiO2, fast photogenerated charge recombination and re-oxidation of Cr(III) restrict their practical application. In this work, the incorporation of TiO2 nanotubes (TNTs) with magnetic activated carbon (MAC) and photoreduction in the presence of a hole scavenger were studied as a preferable approach. The results revealed that coupling TNTs with 2 wt% MAC can boost the surface area from 89.54 to 307.87 m(2) g(-1) as well as decrease the band gap energy from 3.1 to 2.7 eV. As a consequence of the enhancement in textural features and optical properties, TNTs/MAC (2%) led to improvement of photoreduction efficiency (from 47% to 66%) in comparison with the TNTs. Meanwhile, the experiments demonstrated that using 0.2 g TNTs/MAC as an optimal dosage in acidic solution increases the photoreduction efficiency up to 81%. The hole scavenger investigation had a marvellous result. It was found that in the presence of oxalic acid, TNTs/MAC (2%) could reduce 97% of Cr(VI) which it was due to trapping oxidative species and charge-transfer-complex-mediated process. Furthermore, the kinetic study affirmed that the photoreduction follow first-order kinetics and the reaction rate constants by TNTs/MAC (2%) are 1.5 times as great as those of TNTs. Moreover, the reusability tests illustrated TNTs/MAC (2%) has good stability and is active even up to the six runs.
机译:近年来,通过TiO2纳米结构将Cr(VI)的光催化还原为CR(III),作为一种有效的环境技术引起了很多关注。然而,包括TiO 2的大带间隙能量的几种缺陷,Cr(III)的快速光发液电荷重组和再氧化限制了它们的实际应用。在这项工作中,研究了与磁性活性炭(Mac)的TiO2纳米管(TNT)掺入孔清除剂中的光电作为优选的方法。结果表明,具有2wt%MAC的偶联TNT可以将表面积从89.54升至307.87m(2)G(-1),以及将带隙能量从3.1降至2.7eV。由于纹理特征和光学性质的增强,TNT / MAC(2%)导致与TNT相比的光电效率(从47%到66%)提高。同时,实验证明,在酸性溶液中使用0.2g TNTS / MAC将光电效率增加到81%。清除孔调查有一个奇妙的结果。发现在草酸存在下,TNT / MAC(2%)可以降低97%的Cr(VI),其是由于捕获氧化物质和电荷转移复合介导的方法。此外,动力学研究肯定了遵循首级动力学和TNT / MAC(2%)的反应速率常数是TNTs的1.5倍。此外,所示的可重用性测试TNT / MAC(2%)具有良好的稳定性,并且甚至是六次运行的活跃。

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