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Controllable preparation and catalytic performance of Pd/anodic alumina oxide@Al catalyst for hydrogenation of ethylanthraquinone

机译:Pd /阳极氧化铝@Al催化剂的乙基蒽醌加氢可控制备及催化性能

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摘要

Anodic alumina oxide (AAO) supports with different pore sizes and depths were controllable prepared by a two-step low-potential anodizing process. The prepared AAO supports with e-ring shape were utilized to prepare supported Pd catalysts by impregnaiton method for the first time. The catalytic performance of the Pd/AAO@Al catalysts were investigated in the catalytic hydrogenation of 2-ethylanthractuinone (eAQ) 2-ethylanthrahydroquinone, a key step in the anthraquinone process for the manufacture of hydrogen peroxide. Compared with Pd supported on spherical Al2O3 catalyst, Pd/AAO@Al catalysts showed much higher anthraquinone hydrogenation activity and preferable selectivity due to the highly ordered array of cylindrical shaped pores, short diffusion distance and confinement effect of the AAO supports. Furthermore, the effect of pore size and depth to the catalytic performance towards hydrogenation of eAQ has also been studied. Pd nanoparticles supported on AAO support with 24.5 nm pore size and 18 mu m depth exhibited the best catalytic performance towards hydrogenation of eAQ. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过两步低电位阳极氧化工艺可控制制备具有不同孔径和深度的阳极氧化铝(AAO)载体。制备的具有e环形状的AAO载体首次用于通过浸渍法制备负载的Pd催化剂。研究了Pd / AAO @ Al催化剂在2-乙基蒽醌(eAQ)2-乙基蒽对苯二酚的催化加氢中的性能,这是蒽醌制备过氧化氢工艺中的关键步骤。与球形Al2O3催化剂上负载的Pd相比,Pd / AAO @ Al催化剂显示出更高的蒽醌氢化活性和较好的选择性,这归因于圆柱形孔的高度有序排列,较短的扩散距离和AAO载体的限制作用。此外,还研究了孔径和深度对eAQ加氢催化性能的影响。载于24.5 nm孔径和18μm深度的AAO载体上的Pd纳米颗粒表现出对eAQ氢化的最佳催化性能。 (C)2015 Elsevier Ltd.保留所有权利。

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