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Elaboration of an Easy Aqueous Sol-Gel Method for the Synthesis of Micro- and Mesoporous γ-Al2O3 Supports

机译:简易水溶胶-凝胶法合成微孔和中孔γ-Al2O3载体的方法

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An aqueous sol-gel method for the synthesis of γ-Al2O3 supports has been developed for the use in tar reforming applications. It was determined the influences of two different aluminum precursors (aluminum sec-butoxide (Al[OCH(CH3)CH2CH3]3) and aluminum nitrate (Al(NO3)3)) on the textural and crystallographic properties of Al2O3 supports. Only the formation of γ-Al2O3 is aimed in order to use these alumina materials as catalytic supports, because it presents high specific surface area and pore volume values. Additionally, the synthesis of γ-Al2O3 was realized with the use of a functionalized silicon precursor, [3-(2-aminoethylamino)propyl]trimethoxysilane, called EDAS. By the presence of an ethylenediamine group in this molecule, it is possible to chelate metallic ions and to highly increase their dispersion at a molecular level during the synthesis of metallic catalysts supported on alumina, which is an asset for catalytic applications. So it was developed a synthesis sol-gel procedure for the cogelation between the functionalized silicon alkoxide EDAS and alumina precursor. The alumina supports synthesized with Al(NO3)3 as precursor presented higher porous values than the ones obtained with aluminium sec-butoxide precursor. Since nitrate salts are much easier to handle than alkoxides, these observations allowed validating Al(NO3)3 as aluminum source for the future synthesis procedures for metallic catalysts supported on alumina.
机译:已开发出用于合成γ-Al2O3载体的水溶胶-凝胶法,用于焦油重整应用。确定了两种不同的铝前体(仲丁醇铝(Al [OCH(CH3)CH2CH3] 3)和硝酸铝(Al(NO3)3))对Al2O3载体的结构和晶体学性能的影响。为了将这些氧化铝材料用作催化载体,仅旨在形成γ-Al2 O 3,因为它具有高的比表面积和孔体积值。此外,γ-Al2O3的合成是通过使用功能化的硅前体[3-(2-氨基乙基氨基)丙基]三甲氧基硅烷,称为EDAS来实现的。通过在该分子中存在乙二胺基团,可以在负载于氧化铝的金属催化剂的合成过程中螯合金属离子,并在分子水平上高度提高其分散性,这是催化应用的资产。因此,开发了一种用于功能化烷氧基化硅EDAS与氧化铝前体之间胶凝的合成溶胶-凝胶法。以Al(NO3)3为前驱体合成的氧化铝载体的多孔值高于仲丁醇铝前驱体获得的多孔值。由于硝酸盐比醇盐更易于处理,因此这些观察结果可验证将Al(NO3)3用作铝源,可用于氧化铝载体上未来金属催化剂的合成程序。

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