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Synergetic effect between adsorption and photodegradation on nanostructured TiO2/activated carbon fiber felt porous composites for toluene removal

机译:纳米结构TiO2 /活性炭纤维毡多孔复合材料的吸附与光降解协同作用

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摘要

The low quantum efficiency and limited adsorption efficiency of TiO2 makes it only fit for the removal of VOCS with low concentrations. Herein, we for the first time fabricated nanostructured TiO2/activated carbon fiber felt (TiO2/ACFF) porous composites by the in situ deposition of TiO2 microspheres on the carbon fibers in ACFF. Interestingly, the TiO2 microspheres exhibit hierarchical nanostructures constructed by nanocrystals as building blocks. The TiO2/ACFF porous composites possess excellent adsorption and photodegradation properties for toluene because of the synergetic effects between the nanostructured TiO2 and ACFF. The adsorption efficiencies of the TiO2/ACFF porous composites reach approximately 98% at the toluene concentration (<1150 ppm) and approximately 77% even at the high concentration of 6900 ppm. Moreover, the ACFF in the TiO2/ACFF porous composites significantly enhances photocatalytic property for toluene by hindering the recombination of electron-hole pairs, reducing the TiO2 band gap energy (E-g) to 2.95 eV and accelerating toluene adsorption. At the toluene concentrations of 230 ppm and 460 ppm, the photocatalytic oxidation efficiency of toluene into CO2 arrives at 100% and 81.5%, respectively. Therefore, the TiO2/ACFF porous composites with synergetic adsorption and photocatalytic activities have great potentials for toluene removal. (C) 2017 Elsevier B.V. All rights reserved.
机译:TiO2的低量子效率和有限的吸附效率使其仅适合于去除低浓度的VOCS。本文中,我们首次通过在ACFF中将TiO2微球原位沉积在碳纤维上来制备纳米结构的TiO2 /活性炭纤维毡(TiO2 / ACFF)多孔复合材料。有趣的是,TiO2微球展现出由纳米晶体构成的分层纳米结构。 TiO2 / ACFF多孔复合材料由于具有纳米结构的TiO2和ACFF之间的协同作用而具有优异的对甲苯的吸附和光降解性能。 TiO2 / ACFF多孔复合材料的吸附效率在甲苯浓度(<1150 ppm)下达到约98%,即使在6900 ppm的高浓度下也达到约77%。此外,TiO2 / ACFF多孔复合材料中的ACFF通过阻碍电子-空穴对的再结合,将TiO2带隙能量(E-g)降低至2.95 eV并加速甲苯吸附,显着增强了对甲苯的光催化性能。在甲苯浓度为230 ppm和460 ppm时,甲苯向CO2的光催化氧化效率分别达到100%和81.5%。因此,具有协同吸附和光催化活性的TiO2 / ACFF多孔复合材料具有去除甲苯的巨大潜力。 (C)2017 Elsevier B.V.保留所有权利。

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