Construction of Nanoflower Cobalt‐Based Catalyst for Methane‐Free CO Hydrogenation to Hydrocarbon Reaction

Author:

Liu Zhenxin1,Wu Depeng1,Liu Huiwen1,Gao Yuji1,Guo Xuehui1,Zhao Chenxi1,Xing Yu1ORCID

Affiliation:

1. Henan Provincial Key Laboratory of Surface and Interface Science School of Materials and Chemical Engineering Zhengzhou University of Light Industry Zhengzhou 450002 China

Abstract

AbstractMethane and its oxidation product (i. e., CO2) are both greenhouse gases. In the product chain of CO hydrogenation to hydrocarbon reaction, methane is also an unwanted product due to its poor added value. Herein we investigated the effect of structure‐directing agent urotropine on cobalt‐based catalyst supported on Al−O−Zn type carrier and achieved an initial and pioneering exploration of methane‐free CO hydrogenation to hydrocarbon reaction at mild CO conversion range. The catalyst modified by urotropine has a nanoflower micromorphology and can significantly change the reaction performance, almost completely eliminating the ability of the catalyst to inhibit C−C coupling within a mild CO conversion range, that is, it can produce no or less C1−C4 gaseous hydrocarbons, while rich in condensed hydrocarbons (i. e., C5+ hydrocarbon selectivity can reach as high as 92.8 %–100.0 %).

Funder

National Natural Science Foundation of China

Publisher

Wiley

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