Spherical TiO2 /Cr2O3 Composites Synthesized Using Ion-Exchange Resins as a Template

A. A. Buzaev, A. Rogacheva, T. Larina, E. V. Dokuchits, O. Khalipova, V. V. Zharkova
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Abstract

Two samples of TiO2 /Cr2O3 composites were synthesized as spherical grains by stepwise thermal treatment of ion-exchange resins, which were preliminarily saturated with chromium cations Cr3+ and dichromate anions Cr2O7 2– and covered with a film-forming solution of titania. The modes of calcination were based on thermal analysis and determined by the type of ion-exchange resin chosen as a template. The obtained composites consist mostly of the α-Cr2O3 phase, while the content of the TiO2 phase does not exceed 4 %. The composites retain the spherical grain shape of the initial ion-exchange resins with the size from 370 to 660 μm. Grains of the sample based on cationite, which adsorbs Cr3+ ions, have a pore structure with swells and voids. Grains of the sample based on anionite have fractures and cracks over the entire surface due to nonuniform distribution of adsorbed Cr2O72– anions in the initial anionite. The composites exhibit the catalytic activity in the complete oxidation of p-xylene. The sample based on cationite is more active. This may be related to a smaller accessible specific surface area of titania in the anionite-based sample due to formation of the Ti3+ solid solution in α-Cr2O3.
以离子交换树脂为模板制备球形TiO2 /Cr2O3复合材料
通过对离子交换树脂的逐步热处理,制备了两种球形TiO2 /Cr2O3复合材料样品,其中铬离子Cr3+和重铬酸盐阴离子cr2o72 -初步饱和,表面覆盖成膜二氧化钛溶液。煅烧方式以热分析为基础,并由选择的离子交换树脂类型作为模板决定。复合材料以α-Cr2O3相为主,TiO2相含量不超过4%。复合材料保持了初始离子交换树脂的球形晶粒形状,尺寸在370 ~ 660 μm之间。吸附Cr3+离子的阳离子矿基颗粒具有膨胀和孔洞的孔隙结构。由于初始阴离子中吸附的Cr2O72 -阴离子分布不均匀,以阴离子为基体的样品晶粒在整个表面出现断裂和裂纹。复合材料在对二甲苯的完全氧化中表现出催化活性。以阳离子矿为基材的样品活性更高。这可能与α-Cr2O3中Ti3+固溶体的形成导致阴离子基样品中二氧化钛的可接近比表面积变小有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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