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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Influence of pore size of SBA-15 on activity and selectivity of H-3[PMo12O40] supported on tailored SBA-15
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Influence of pore size of SBA-15 on activity and selectivity of H-3[PMo12O40] supported on tailored SBA-15

机译:SBA-15孔径对定制SBA-15负载的H-3 [PMo12O40]活性和选择性的影响

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Large pore SBA-15 was successfully synthesized and used as support material for molybdenum based oxidation catalysts. H-3[PMo12O40] was supported on SBA-15 with modified pore radii (10, 14, 19 nm). All samples were prepared with a similar surface coverage of 1 Keggin ion per 13 nm(2) independent of the pore radii. Structural evolution and catalytic activity of H-3[PMo12O40] supported on SBA-15 (PMo12-SBA-15) with different pore radii (10, 14, 19 nm) were investigated under selective propene oxidation conditions by in situ X-ray absorption spectroscopy investigations. PMo12-SBA-15 (10, 14, 19 nm) formed a mixture of mostly tetrahedral [MoO4] and octahedral [MoO6] units during thermal treatment in propene oxidation conditions. A higher concentration of octahedral [MoO6] units and higher oligomerized [MoxOy] units were detected for act. PMo12-SBA-15 (10 nm) compared to act. PMo12-SBA-15 (14, 19 nm). The higher concentration of [MoxOy] units present in act. PMo12-SBA-15 (10 nm) resulted in an increased catalytic activity compared to activated PMo12-SBA-15 (14, 19 nm) with a lower concentration of [MoxOy] units. Selectivities towards oxidation products during propene oxidation were comparable and largely independent of the pore radii of act. PMo12-SBA-15 (10, 14, 19 nm). Apparently, tailoring the pore radius of silica SBA-15 permitted to prepare Mo oxide model systems to investigate correlation between activity and structure of characteristic oxide species at similar surface coverage. (C) 2015 Elsevier Inc. All rights reserved.
机译:大孔SBA-15已成功合成,并用作钼基氧化催化剂的载体材料。 H-3 [PMo12O40]以改良的孔半径(10、14、19 nm)负载在SBA-15上。所有样品均具有与每一个13 nm(2)相似的1 Keggin离子的表面覆盖率,而与孔隙半径无关。在选择性丙烯氧化条件下,通过原位X射线吸收研究了在不同孔径半径(10、14、19 nm)的SBA-15(PMo12-SBA-15)上负载的H-3 [PMo12O40]的结构演变和催化活性。光谱学调查。 PMo12-SBA-15(10、14、19 nm)在丙烯氧化条件下的热处理过程中形成了大部分为四面体[MoO4]和八面体[MoO6]的混合物。检测到较高浓度的八面体[MoO6]单元和较高的低聚[MoxOy]单元。与PMo12-SBA-15(10 nm)比较。 PMo12-SBA-15(14,19 nm)。行为中存在较高浓度的[MoxOy]单元。与活化的PMo12-SBA-15(14,19 nm)相比,PMo12-SBA-15(10 nm)导致催化活性增加,而[MoxOy]单元的浓度较低。在丙烯氧化过程中对氧化产物的选择性是可比的,并且在很大程度上与作用的孔半径无关。 PMo12-SBA-15(10、14、19 nm)。显然,定制二氧化硅SBA-15的孔半径允许制备Mo氧化物模型系统,以研究在相似的表面覆盖率下活性和特征氧化物物种的结构之间的相关性。 (C)2015 Elsevier Inc.保留所有权利。

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