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High Activity and Selective Fischer-Tropsch Catalysts for Use in a Microchannel Reactor

机译:用于微通道反应器的高活性和选择性费-托催化剂

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Each process configuration for practicing the Fischer-Tropsch synthesis places demands particular to that configuration on the catalyst to be used. We discuss how a particular catalyst, prepared by the OMX (organic matrix combustion) method, when used in conjunction with the Velocys microchannel reactor system, results in a very stable, high performance Fischer-Tropsch synthesis system. With the ability to remove heat far more effectively than a conventional reactor system, this microchannel reactor requires a catalyst with much higher volumetric reactive site density. Further, with such a high volumetric reaction rate, mass transfer effects will be important in both the observed activity and selectivity of the operating catalyst. Nevertheless, the catalyst prepared using the OMX method exhibits an apparent turnover frequency which is considerably higher than reported for other catalysts in the literature. In addition to high activity, an economically useful catalyst must exhibit a stable, high selectivity for liquid products and be able to recover near-fresh performance using a regeneration approach which can be carried out with the catalyst in-place. An example of such a stable, multiply regenerated catalyst is given. Finally, further development has focused on a catalyst with even higher C_(5+) selectivity.
机译:用于实施费-托合成的每种工艺配置均对要使用的催化剂的该配置有特殊要求。我们讨论了通过OMX(有机基质燃烧)方法制备的特定催化剂与Velocys微通道反应器系统结合使用时,如何产生非常稳定,高性能的费托合成系统。与传统的反应器系统相比,该微通道反应器具有比传统反应器系统更有效地排热的能力,因此需要的催化剂具有更高的体积反应位密度。此外,由于具有如此高的体积反应速率,传质效应对于观察到的活性催化剂的活性和选择性都将是重要的。然而,使用OMX方法制备的催化剂表现出明显的周转频率,其明显高于文献中其他催化剂的报道频率。除了高活性之外,经济上可用的催化剂还必须对液体产品表现出稳定的高选择性,并能够使用可就地催化剂进行的再生方法来恢复近乎新鲜的性能。给出了这种稳定的,多重再生的催化剂的实例。最后,进一步的研究集中在具有更高C_(5+)选择性的催化剂上。

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