首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Supported H4SiW12O40/Al2O3 solid acid catalysts for dehydration of glycerol to acrolein: Evolution of catalyst structure and performance with calcination temperature
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Supported H4SiW12O40/Al2O3 solid acid catalysts for dehydration of glycerol to acrolein: Evolution of catalyst structure and performance with calcination temperature

机译:用于甘油脱水成丙烯醛的负载型H4SiW12O40 / Al2O3固体酸催化剂:催化剂结构和性能随煅烧温度的变化

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Al2O3 supported silicotungstic acid (H4SiW12O40/Al2O3) samples were prepared by impregnation and calcined at 350, 450, 550, 650 degrees C to study the structural evolution of the H4SiW12O40 heteropolyacid and its effect on the catalytic performance during glycerol conversion to acrolein. For comparison, a WOx/Al2O3 catalyst was also prepared by impregnation with ammonium paratungstate. The catalysts were extensively characterized using BET, NH3-TPD, FT-IR, XRD, Raman, UV-vis DR and XAFS. The evolution of catalyst structure and catalytic performance was carefully resolved and analyzed. XAFS analysis reveals that the oxygen coordination number in the first shell with short W-o bond distance increases as the calcination temperature is increased, suggesting the transform of W-species on surface. Slight degradation of Keggin structure of H4SiW12O40 supported on Al2O3 is observed upon calcination at 350 and 450 degrees C, though [SiW12O40](4-) anions with Keggin structure are still the dominating species. The total decomposition of Keggin unit occurs after calcination at 550 and 650 degrees C. Isolated WO6 species and small amount of WO3 micro-crystallites are formed as a result of the decomposition. The glycerol conversion increases with acid center concentration under the specified reaction condition. As well, selectivity to acrolein increases with Bronsted/Lewis acid ratio, suggesting the crucial role of Bronsted acid sites for acrolein formation. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过浸渍制备Al2O3负载的硅钨酸(H4SiW12O40 / Al2O3)样品并在350、450、550、650℃下煅烧,以研究H4SiW12O40杂多酸的结构演变及其对甘油转化为丙烯醛过程中催化性能的影响。为了进行比较,还通过用对钨酸铵浸渍制备了WOx / Al2O3催化剂。使用BET,NH3-TPD,FT-IR,XRD,拉曼,UV-vis DR和XAFS对催化剂进行了广泛表征。仔细解析和分析了催化剂结构和催化性能的演变。 XAFS分析显示,随着煅烧温度的升高,具有短W-o键距离的第一壳中的氧配位数会增加,表明表面上W物种发生了转变。在350和450摄氏度下煅烧时,观察到Al2O3上负载的H4SiW12O40的Keggin结构略有降解,尽管具有Keggin结构的[SiW12O40](4-)阴离子仍然是主要的物种。 Keggin单元的总分解发生在550和650摄氏度的煅烧之后。分解产生了孤立的WO6物种和少量的WO3微晶体。在指定的反应条件下,甘油转化率随酸中心浓度的增加而增加。同样,对丙烯醛的选择性随着布朗斯台德/路易斯酸比率的增加而增加,表明布朗斯台德酸位对于丙烯醛形成的关键作用。 (C)2014 Elsevier B.V.保留所有权利。

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