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Application of recycled lanthanum-doped TiO_2 immobilized on commercial air filter for visible-light photocatalytic degradation of acetone and NO

机译:固定在商用空气滤清器上的掺镧掺杂TiO_2在可见光催化降解丙酮和NO中的应用

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摘要

Herein, La-doped TiO2 photocatalyst was synthesized by utilizing the recycled lanthanum from the waste fluorescent powder, and then was firstly immobilized on a commercial ceramic filter with porous structure and high surface area. Immobilized La-doped TiO2 (La-TiO2) was applied for photocatalytic degradation of acetone and NO at the ppb level under visible light region. It was found that 0.5 wt% La doping into TiO2 exhibited an excellent photocatalytic performance. The photocatalytic removal efficiency of acetone and NO under visible light could reach up to 38% and 98% respectively, which were much higher than that of pure TiO2 (28% and 65%, respectively). Moreover, the results of various physicochemical characterization showed that La-TiO2 sol-gel could be uniformly immobilized on the ceramic filter by impregnation method and followed by a low-temperature calcination treatment process. The three-dimensional porous structure of ceramic air filter resulted in more adsorption sites and reaction contact between pollution gas and photocatalyst surface, which is superior to the powdered TiO2 catalyst on substrates or thin film deposited on glasses. In order to the further application, the effect of relative humidity on photocatalytic performance was discussed. This work will provide a new perspective for promoting large-scale environmental application of immobilized photocatalysts.
机译:在此,利用废荧光粉中回收的镧合成镧掺杂的TiO2光催化剂,然后将其首先固定在具有多孔结构和高表面积的商用陶瓷过滤器上。固定化的La掺杂的TiO 2(La-TiO 2)被用于在可见光区域以ppb水平光催化降解丙酮和NO。发现0.5重量%的La掺杂到TiO 2中表现出优异的光催化性能。可见光下丙酮和NO的光催化去除率分别达到38%和98%,远高于纯TiO2的去除率(分别为28%和65%)。此外,各种物理化学表征的结果表明,可以通过浸渍方法将La-TiO 2溶胶-凝胶均匀地固定在陶瓷过滤器上,然后进行低温煅烧处理。陶瓷空气滤清器的三维多孔结构导致更多的吸附位点和污染气体与光催化剂表面之间的反应接触,这优于基材上的粉末TiO2催化剂或沉积在玻璃上的薄膜。为了进一步应用,讨论了相对湿度对光催化性能的影响。这项工作将为促进固定化光催化剂的大规模环境应用提供新的视角。

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