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首页> 外文期刊>International journal of hydrogen energy >Methanation of GO on Ru/graphitized-carbon catalysts: Effects of the preparation method and the carbon support structure
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Methanation of GO on Ru/graphitized-carbon catalysts: Effects of the preparation method and the carbon support structure

机译:Ru /石墨化 - 碳催化剂上的甲烷化:制备方法和碳载体结构的影响

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Two kinds of Ru/C catalysts prepared by two different methods and supported on two graphitized carbons differing in their surface area were studied in CO methanation in the H-2-rich gas. The textural parameters of the support materials were characterized by means of N-2 physisorption. XRPD, XPS, TEM and CO- chemisorption studies indicate that the application of wet impregnation leads to more homogeneous composition of the Ru/carbon system and higher Ru dispersion than dry impregnation for both supports. The activity of the Ru/carbon samples in CO methanation in a H-2 -rich gas stream depends on the structure and average size of the active phase crystallites. The combination of wet impregnation and the use of graphitized carbon of appropriate structure in the preparation of the Ru/C catalyst lead to a complete conversion of CO at 240 degrees C. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过两种不同的方法制备的两种Ru / C催化剂并在其表面积中不同的图形化碳,在H-2的气体中进行了共同甲烷化。通过N-2物理吸附的方法表征了支持材料的纹理参数。 XRPD,XPS,TEM和共同化学研究表明,湿浸渍的应用导致Ru /碳系统的更均匀组合物和高于双浸渍的Ru /碳系统和高ru分散体。 H-2-rich气流中CO甲烷化中的Ru /碳样品的活性取决于活性相结晶的结构和平均尺寸。湿浸渍和使用适当结构的石墨化碳的组合在制备Ru / C催化剂时导致Co的完全转化为240℃C.(c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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