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ZIF-67 as precursor to prepare high loading and dispersion catalysts for Fischer-Tropsch synthesis: Particle size effect

机译:ZIF-67作为制备费托合成高负荷和分散催化剂的前体:粒径效应

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摘要

A series of cobalt embedded in nano-porous carbons (Co@C) with different particle sizes have been synthesized by one-step carbonization of metal-organic-framework (MOFs) ZIF-67. The particle size of Co@C can be determined by its precursor which is modified by the content of CTAB (cetyltrimethyl ammonium bromide). The as prepared catalysts were characterized by XRD, N-2 adsorption-desorption, SEM, TEM, TGA and H-2-TPR, showing not only high loading but also superior dispersion. The Co@C catalysts have similar morphology with their corresponding precursors, on which highly dispersed cobalt was achieved even at high Co loading. The particle size of Co@C catalyst decreases with the increase of CTAB content. When CO conversion is plotted as a function of CTAB content, a volcano-like curve is obtained with an optimum CTAB content at m((CTAB))((Co))= 8 (m stands for the weight of CTAB, n stands for the moles of cobalt). Among these catalysts, the 8CTAB-Co@C catalyst exhibited the smallest Co crystalline size, best Co dispersion and highest CO conversion, while the 16CTAB-Co@C catalyst showed the lowest activity due to the biggest cobalt crystalline size.
机译:通过金属-有机骨架(MOFs)ZIF-67的一步碳化,合成了一系列嵌入在具有不同粒径的纳米多孔碳(Co @ C)中的钴。 Co @ C的粒径可以通过其前体确定,该前体可以通过CTAB(十六烷基三甲基溴化铵)的含量进行修饰。所制备的催化剂通过XRD,N-2吸附-解吸,SEM,TEM,TGA和H-2-TPR进行表征,不仅显示出高负载量,而且表现出优异的分散性。 Co @ C催化剂与其相应的前体具有相似的形貌,即使在高Co负载下,其上也可以得到高度分散的钴。随着CTAB含量的增加,Co @ C催化剂的粒径减小。当将CO转化率作为CTAB含量的函数作图时,将获得一条火山状曲线,其最佳CTAB含量为m((CTAB))/ n((Co))= 8(m代表CTAB的重量,n代表钴的摩尔数)。在这些催化剂中,8CTAB-Co @ C催化剂显示出最小的Co晶体尺寸,最佳的Co分散度和最高的CO转化率,而16CTAB-Co @ C催化剂由于最大的钴晶体尺寸而显示出最低的活性。

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