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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >High thermal conductive core-shell structured Al2O3@Al composite supported cobalt catalyst for Fischer-Tropsch synthesis
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High thermal conductive core-shell structured Al2O3@Al composite supported cobalt catalyst for Fischer-Tropsch synthesis

机译:费-托合成用高导热核壳结构Al2O3 @ Al复合负载钴催化剂

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摘要

High thermal conductive Al2O3@Al composite synthesized via metallic Al powders corrosion method has been applied as support for preparing Co/Al2O3@Al catalyst for high exothermic Fischer-Tropsch synthesis. The prepared Al2O3@Al composite is a hierarchical macro-mesoporous structure and consist of two parts, namely the inner metallic Al and the outer Al2O3 with two kinds of morphologies. Increasing the concentration of the corrosive NaOH or extending the corrosion time could increase the specific surface area of the composite. For the prepared Co/Al2O3@Al, Co3O4 phase is located on the outer plate-like Al2O3 layer. The Co/AI-0.03-20 possesses higher CO conversion and C5+ selectivity due to the appropriate cobalt reducibility, dispersion and high thermal conductivity. The thermal conductive coefficient of Co/Al2O3@Al catalysts is 13-98 times of conventional Co/Al2O3. Compared to Co/Al2O3, the Co/Al2O3@Al shows higher CO conversion and C5+ selectivity as well as lower CH4 and CO2 selectivity, which is attributed to the macro-mesoporous structure and high thermal conductivity. In addition, because of the high thermal conductivity, no heat disperser should be used and a homogeneous temperature gradient maintains within the catalyst bed for Co/Al2O3@Al. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过金属铝粉腐蚀法合成的高导热Al2O3 @ Al复合材料已被用作制备高放热费托合成Co / Al2O3 @ Al催化剂的载体。制备的Al2O3 @ Al复合材料是一种层级的宏观中微孔结构,由内部两种形态的金属Al和外部Al2O3两部分组成。增加腐蚀性NaOH的浓度或延长腐蚀时间可能会增加复合材料的比表面积。对于制备的Co / Al2O3 @ Al,Co3O4相位于外板状Al2O3层上。由于适当的钴还原性,分散性和高导热性,Co / AI-0.03-20具有较高的CO转化率和C5 +选择性。 Co / Al2O3 @ Al催化剂的导热系数是常规Co / Al2O3的13-98倍。与Co / Al2O3相比,Co / Al2O3 @ Al显示出更高的CO转化率和C5 +选择性以及更低的CH4和CO2选择性,这归因于宏观中孔结构和高导热率。另外,由于高的热导率,不应该使用热分散器,并且在Co / Al2O3 @ Al的催化剂床内保持均匀的温度梯度。 (C)2016 Elsevier B.V.保留所有权利。

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