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Complex investigations of structural and thermal properties of silica-titania adsorbents

机译:二氧化硅-二氧化钛吸附剂的结构和热性能的综合研究

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摘要

Mesoporous titanium-containing silicas with different Titania contents were investigated. The structural parameters of the materials were characterized by low-temperature adsorption/desorption of nitrogen and X-ray diffraction analysis. The thermodesorption of water using the quasi-isothermal thermogravimetry as well as the differential scanning calorimetry were used to characterize thermal and surface properties of these materials. The adsorbed water layers and the concentration of weakly and strongly bound water as well as the surface free energy on the adsorbent/water interfaces were calculated. It was stated that the increase of Titania content causes a gradual decrease of specific surface area and formation of biporous structure inside the tested materials. The water thermodesorption from the surface proceeds in two or three stages, which is connected mainly with pore distribution and TiO2 content. One can observe the increase of the total surface free energy (ΔGΣ) with the increasing TiO2 content, but the largest ΔGΣ value at the adsorbent/strongly bound water interface is exhibited by the adsorbent of intermediate content (30%) of TiO2. Freezing temperature of water contained in the pores of the studied materials is connected largely with their porous structure. Due to the well developed porous structure, the water freezing process is a multi-stage one.
机译:研究了二氧化钛含量不同的介孔含钛硅石。材料的结构参数通过氮气的低温吸附/解吸和X射线衍射分析来表征。使用准等温热重分析法和差示扫描量热法对水进行热脱附来表征这些材料的热和表面性质。计算了吸附水层,弱结合水和强结合水的浓度以及吸附剂/水界面上的表面自由能。据指出,二氧化钛含量的增加导致比表面积的逐渐减少和被测材料内部双孔结构的形成。从表面进行的水热解吸分两个或三个阶段进行,这主要与孔隙分布和TiO2含量有关。人们可以观察到总表面自由能(ΔGΣ)随着TiO2含量的增加而增加,但是在TiO2 /中间含量为30%的吸附剂中,吸附剂/强结合水界面的最大ΔGΣ值最大。所研究材料的孔中所含水的冻结温度很大程度上与其多孔结构有关。由于良好的多孔结构,水冷冻过程是一个多阶段的过程。

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