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The influence of zeolites fly ash bead/TiO2 composite material surface morphologies on their adsorption and photocatalytic performance

机译:沸石粉煤灰珠/ TiO2复合材料表面形貌对其吸附和光催化性能的影响

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摘要

A low cost zeolite fly ash beadiTiO(2) (ZFABT) composite materials with various surface structure features were prepared for describing those structures importance on TiO2 coating, adsorbability and photocatalytic performances. The results indicated that fly ash bead (FAB) surface was significantly altered by the precipitation/growth of secondary zeolite phases after alkali activation, which generates abundant open pores and stacked petal-liked spherical beads (similar to 2 mu m, Sodalite zeolites). More importantly, this porosity increases as activation time was increased from 2 h to 12 h, through the precipitation of sodalite and then Na-P1 (lamellar crystals) and Na-X (octahedral crystals) zeolite structures. Compared to those of unsupported TiO2 or inactivated support/TiO2 samples, all of ZFABT samples exhibited a higher adsorption capacity and photocatalytic efficiency for RhB removal. However, adsorption is not only one factor to influence TiO2 surface reaction, the intraparticle diffusion rate of rhodamine B (RhB) molecules, and light penetration are also important parameters. Alkali activated 4h ZFABT sample exhibited the highest photocatalytic activity, indicating its pore structure provided a better balance for those parameters to achieve a synergistic adsorption/photocatalytic process. The kinetics model suggested its high intraparticle diffusion rate allowed for more RhB molecules to easily reach the reaction surface, which is more important for high efficiency photocatalysis. (C) 2016 Elsevier B.V. All rights reserved.
机译:制备了具有各种表面结构特征的低成本沸石粉煤灰beadiTiO(2)(ZFABT)复合材料,以描述这些结构对TiO2涂层,吸附性和光催化性能的重要性。结果表明,碱活化后,次级沸石相的沉淀/生长使粉煤灰珠(FAB)的表面发生了显着变化,从而产生了大量的开孔和堆积的花瓣状球形珠(类似于2μm的方钠石沸石)。更重要的是,孔隙率随着活化时间从2小时增加到12小时而增加,这通过方钠石,然后是Na-P1(层状晶体)和Na-X(八面体晶体)沸石的沉淀来实现。与无载体的TiO2或失活的载体/ TiO2样品相比,所有ZFABT样品均具有更高的吸附能力和光催化去除RhB的效率。然而,吸附不仅是影响TiO2表面反应的因素之一,若丹明B(RhB)分子的颗粒内扩散速率和光穿透率也是重要参数。碱活化的4h ZFABT样品表现出最高的光催化活性,表明其孔结构为这些参数提供了更好的平衡,从而实现了协同的吸附/光催化过程。动力学模型表明,其高的颗粒内扩散速率允许更多的RhB分子轻松到达反应表面,这对于高效光催化更重要。 (C)2016 Elsevier B.V.保留所有权利。

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