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SYNTHESIS AND CATALYTIC PROPERTIES OF EGGSHELL COBALT CATALYSTS FOR THE FISCHER-TROPSCH SYNTHESIS

机译:费休合成的蛋壳钴催化剂的合成及催化性能

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CO diffusional restrictions decrease the rate and C-5(+) selectivity in large (1-3 mm) catalyst pellets required for Fischer-Tropsch synthesis in packed bed reactors. Eggshell catalysts, in which the active Co component is preferentially located near the outer pellet surface, decrease these transport restrictions and increase Fischer-Tropsch synthesis rates and C-5(+) selectivity. Maximum C-5(+) selectivities occur on catalysts with intermediate shell thickness, because these catalysts avoid intrapellet CO concentration gradients but still restrict the diffusive removal of reactive olefin products, which can readsorb and continue to grow to higher molecular weight hydrocarbons. Eggshell catalysts were prepared by a novel impregnation technique using molten cobalt nitrate. The eggshell thickness is controlled by the melt viscosity and by the contact time between the melt and the support pellet. These impregnation procedures and the slow reduction of the impregnated nitrate salts lead to relatively high cobalt dispersions (0.05-0.07) even at the high Co concentrations (40-50 wt%) present within the shell region. (C) 1995 Academic Press, Inc. [References: 62]
机译:CO扩散限制降低了填充床反应器中费-托合成所需的大(1-3毫米)催化剂颗粒的速率和C-5(+)选择性。蛋壳催化剂中的活性Co组分优先位于颗粒外部表面附近,可减少这些运输限制并提高费-托合成速率和C-5(+)选择性。具有中等壳厚度的催化剂具有最大的C-5(+)选择性,因为这些催化剂避免了颗粒内CO浓度梯度,但仍限制了反应性烯烃产物的扩散去除,后者可以重新吸收并继续增长为更高分子量的烃。通过使用熔融硝酸钴的新型浸渍技术制备了蛋壳催化剂。蛋壳的厚度由熔体粘度和熔体与载体颗粒之间的接触时间控制。这些浸渍程序和浸渍硝酸盐的缓慢还原导致即使在壳区域内存在高钴浓度(40-50 wt%)的情况下,钴分散度也相对较高(0.05-0.07)。 (C)1995 Academic Press,Inc. [参考:62]

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