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Calcination Effects on Texture and Porosimetric Properties of Regular and Nano-Structured Alumina Utilized as Catalyst Support for the FT Synthesis

机译:煅烧对常规和纳米结构氧化铝的纹理和孔隙性特性使用作为FT合成的催化剂载体

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Samples of regular gamma and nano-structured alumina were prepared and their porosimetric properties evaluated by N_2 porosimetry method. Moreover, cobalt based catalysts for Fischer-Tropsch (FT) Synthesis were prepared by loading cobalt under two calcinations using these alumina supports. Then the porosimetric properties of these materials as well as; their reactor behaviors assessed. Although the nano-structured favored the gamma alumina from pore volume and surface points of view, comparison of porosimetric properties of fresh alumina samples with corresponding catalysts prepared revealed that calcination effect in decreasing those factors was more pronounced for the nano-structured compared to gamma alumina. Also adsorption/desorption isotherms revealed that both materials were mesoporous. Catalytic activity assessment of both catalysts made by these supports showed that nano-structured alumina was more appropriate from activity and liquid hydrocarbon production points of view.
机译:制备常规伽马和纳米结构氧化铝的样品及其通过N_2孔隙测定法评价的孔隙率特性。此外,通过使用这些氧化铝支撑件在两种煅烧中加载钴来制备基于钴的钴 - 托(FT)合成的催化剂。然后是这些材料的孔隙性特性以及;他们的反应堆行为评估。虽然纳米结构偏离孔体积和表面观点的γ氧化铝,但新鲜氧化铝样品的孔隙性特性与相应的催化剂的比较显示,与γ氧化铝相比,纳米结构的煅烧效果更为显着,对纳米结构更加明显。还发现吸附/解吸等温度显示,两种材料都是介孔。这些载体制备的两种催化剂的催化活性评估表明,纳米结构氧化铝更适合于活性和液态烃的观点。

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