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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Influence of internal diffusion on selective hydrogenation of 4-carboxybenzaldehyde over palladium catalysts supported on carbon nanofiber coated monolith
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Influence of internal diffusion on selective hydrogenation of 4-carboxybenzaldehyde over palladium catalysts supported on carbon nanofiber coated monolith

机译:碳纳米纤维包覆整体载体上钯催化剂上内部扩散对4-羧基苯甲醛选择性加氢的影响

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In this study, a macro-structured Pd catalyst supported on carbon nanofiber coated on cordierite monolith (Pd/CNF/TiO2/monolith) was employed for hydrogenation of 4-CBA. The effect of mass transfer on the catalyst performance was studied experimentally and the results are described using a simple kinetic model. The results were compared to Pd catalysts supported on activated carbon (Pd/AC) and on carbon nanofibers aggregates (Pd/CNF). Catalytic performance of the Pd/CNF/TiO2/monolith is similar to Pd/CNF and the Pd/AC with particles as small as 50 mu m (Pd/AC50), whereas Pd/AC with larger support particles revealed a lower activity per Pd active surface site, due to internal mass transfer limitation. Also the selectivity to the intermediate hydrogenation product (4-HMBA), versus deep hydrogenation to p-TA, is clearly affected by internal mass transfer. Pd/AC with large particles (3000 mu m) achieves a maximum yield to the intermediate product of only 35%, whereas all the other catalysts achieve typically 70%. Remarkably, the conversion level at which the maximum yield of the intermediate product is achieved is highest for the Pd/CNF/TiO2/monolith. This advantage is assigned to superior internal mass transfer properties, thanks to high porosity, low tortuosity and short diffusion length of the CNF layer. Clearly, the CNF/TiO2/monolith applied as a fixed bed outperforms slurry phase catalysts, abandoning the need of a filtration section. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本研究中,负载在堇青石整料(Pd / CNF / TiO2 /整料)上的碳纳米纤维上负载的宏观结构Pd催化剂用于4-CBA的加氢。实验研究了传质对催化剂性能的影响,并使用简单的动力学模型描述了结果。将结果与负载在活性炭(Pd / AC)和碳纳米纤维聚集体(Pd / CNF)上的Pd催化剂进行了比较。 Pd / CNF / TiO2 /整料的催化性能与Pd / CNF和颗粒小至50μm的Pd / AC(Pd / AC50)相似,而具有较大载体颗粒的Pd / AC则显示出较低的活性。由于内部传质限制,活性表面位点。相对于对p-TA的深度氢化,对中间氢化产物(4-HMBA)的选择性也明显受内部传质的影响。具有大颗粒(3000微米)的Pd / AC只能达到35%的中间产品最大收率,而所有其他催化剂通常达到70%。显着地,对于Pd / CNF / TiO2 /整体而言,达到中间产物的最大产率的转化水平最高。由于CNF层的高孔隙率,低曲折性和较短的扩散长度,该优势被赋予了优异的内部传质性能。显然,用作固定床的CNF / TiO2 /整料的性能优于淤浆相催化剂,从而无需过滤部分。 (C)2015 Elsevier B.V.保留所有权利。

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