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Monitoring transport phenomena of paramagnetic metal-ion complexes inside catalyst bodies with magnetic resonance imaging

机译:用磁共振成像监测催化剂体内的传输现象或顺磁金属离子络合物

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摘要

An indirect magnetic resonance imaging (MRI) method has been developed to determine in a noninvasive manner the distribution of paramagnetic Co2+ complexes inside Co/Al2O3 catalyst extrudates after impregnation with Co2+/citrate solutions of different pH and citrate concentrations. UV/Vis/NIR microspectroscopic measurements were carried out simultaneously to obtain complementary information on the nature of the Co2+ complexes. In this way, it could be confirmed that the actual distribution of Co2+ inside the extrudates could be derived from the MRI images. By combining these space- and time-resolved techniques, information was obtained on both the strength and the mode of interaction between [Co(H2O)6]2+ and different Co2+ citrate complexes with the Al2O3 support. Complexation of Co2+ by citrate was found to lead to a stronger interaction of Co with the support surface and formation of an eggshell distribution of Co2+ complexes after impregnation. By addition of free citrate and by changing the pH of the impregnation solution, it was possible to obtain the rather uncommon egg-yolk and egg-white distributions of Co2+ inside the extrudates after impregnation. In other words, by carefully altering the chemical composition and pH of the impregnation solution, the macrodistribution of Co2+ complexes inside catalyst extrudates could be fine-tuned from eggshell over egg white and egg yolk to uniform.
机译:已经开发了一种间接磁共振成像(MRI)方法,以无创方式确定在用不同pH和柠檬酸盐浓度的Co2 + /柠檬酸盐溶液浸渍后,Co / Al2O3催化剂内挤出的顺磁性Co2 +配合物的分布。同时进行UV / Vis / NIR显微光谱测量,以获得有关Co2 +配合物性质的补充信息。以此方式,可以确认挤出物内部Co 2+的实际分布可以源自MRI图像。通过结合这些空间和时间分辨技术,获得了有关[Co(H2O)6] 2+与带有Al2O3载体的不同柠檬酸Co2 +配合物之间的强度和相互作用方式的信息。发现柠檬酸盐使Co 2+络合导致浸渍后Co与载体表面的更强相互作用以及形成Co 2 +络合物的蛋壳分布。通过添加游离柠檬酸盐并通过改变浸渍溶液的pH,可以在浸渍后获得挤出物中内部Co 2+的相当罕见的蛋黄和蛋清分布。换句话说,通过小心地改变浸渍溶液的化学组成和pH,可以从蛋壳上的蛋清和蛋黄微调Co2 +配合物在催化剂挤出物中的宏观分布,使其均匀。

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