Spjelkavik Aud I, Divekar Swapnil, Didriksen Terje, Blom Richard
SINTEF Materials and Chemistry, P. O. Box 124 Blindern, 0314 Oslo (Norway).
Chemistry. 2014 Jul 14;20(29):8973-8. doi: 10.1002/chem.201402464. Epub 2014 Jun 25.
A novel method utilizing hydrocolloids to prepare nicely shaped spheres of metal-organic frameworks (MOFs) has been developed. Microcrystalline CPO-27-Ni particles are dispersed in either alginate or chitosan solutions, which are added dropwise to solutions containing, respectively, either divalent group 2 cations or base that act as gelling agents. Well-shaped spheres are immediately formed, which can be dried into spheres containing mainly MOF (>95 wt %). The spheronizing procedures have been optimized with respect to maximum specific surface area, shape, and particle density of the final sphere. At optimal conditions, well-shaped 2.5-3.5 mm diameter CPO-27-Ni spheres with weight-specific surface areas <10 % lower than the nonformulated CPO-27-Ni precursor, and having sphere densities in the range 0.8 to 0.9 g cm(-3) and particle crushing strengths above 20 N, can be obtained. The spheres are well suited for use in fixed-bed catalytic or adsorption processes.
一种利用水胶体制备形状规整的金属有机框架(MOF)球体的新方法已被开发出来。微晶CPO-27-Ni颗粒分散在藻酸盐或壳聚糖溶液中,然后分别逐滴加入含有二价第2族阳离子或作为胶凝剂的碱的溶液中。立即形成形状规整的球体,这些球体可以干燥成主要含有MOF(>95 wt%)的球体。已针对最终球体的最大比表面积、形状和颗粒密度对球化程序进行了优化。在最佳条件下,可以获得直径为2.5 - 3.5 mm的形状规整的CPO-27-Ni球体,其重量比表面积比未成型的CPO-27-Ni前体低不到10%,球体密度在0.8至0.9 g cm(-3)范围内,颗粒抗压强度超过20 N。这些球体非常适合用于固定床催化或吸附过程。