Evdokimenko Nikolay Dmitrievich, Kapustin Gennady Ivanovich, Tkachenko Olga Petrovna, Kalmykov Konstantin Borisovich, Kustov Alexander Leonidovich
Laboratory of Nanochemistry and Ecology, National University of Science and Technology "MISiS", 4 Leninsky Prospekt, 119049 Moscow, Russia.
Laboratory for the Development and Research of Polyfunctional Catalysts, N.D. Zelinsky Institute of Organic Chemistry RAS, 47 Leninsky Prospekt, 119991 Moscow, Russia.
Molecules. 2022 Feb 4;27(3):1065. doi: 10.3390/molecules27031065.
In this work, we studied the role of zinc in the composition of supported iron-containing catalysts for the hydrogenation of CO. Various variants of incipient wetness impregnation of the support were tested to obtain catalyst samples. The best results are shown for samples synthesized by co-impregnation of the support with a common solution of iron and zinc precursors at the same molar ratio of iron and zinc. Catalyst samples were analyzed by various methods: Raman, DRIFT-CO, TPR-H, XPS, and UV/Vis. The introduction of zinc leads to the formation of a mixed ZnFeO phase. In this case, the activation of the catalyst proceeds through the stage of formation of the metastable wustite phase FeO. The formation of this wustite phase promotes the formation of metallic iron in the composition of the catalyst under the reaction conditions. It is believed that the presence of metallic iron is a necessary step in the formation of iron carbides-that is, active centers for the formation and growth of chain in the hydrocarbons. This leads to an increase in the activity and selectivity of the formation of hydrocarbons in the process of CO hydrogenation.
在这项工作中,我们研究了锌在负载型含铁催化剂用于CO加氢反应的组成中的作用。测试了载体初湿浸渍的各种变体以获得催化剂样品。对于通过载体与铁和锌前驱体的共同溶液以相同的铁和锌摩尔比进行共浸渍合成的样品,显示出最佳结果。通过各种方法对催化剂样品进行了分析:拉曼光谱、DRIFT-CO、TPR-H、XPS和紫外/可见光谱。锌的引入导致形成混合的ZnFeO相。在这种情况下,催化剂的活化通过亚稳方铁矿相FeO的形成阶段进行。这种方铁矿相的形成促进了在反应条件下催化剂组成中金属铁的形成。据信,金属铁的存在是形成碳化铁的必要步骤,碳化铁是烃类中链的形成和生长的活性中心。这导致在CO加氢过程中烃类形成的活性和选择性增加。