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Hydrogen storage into monobenzyltoluene over Ru catalyst supported on SiO2-ZrO(2)mixed oxides with different Si/Zr ratios

Authors
Kim, Tae WanKim, ChansongJeong, HwiramShin, Chae-HoSuh, Young-Woong
Issue Date
Aug-2020
Publisher
KOREAN INSTITUTE CHEMICAL ENGINEERS
Keywords
Liquid Organic Hydrogen Carrier; Hydrogen Storage; Supported Ru Catalysts; Silica-zirconia Mixed Oxide
Citation
KOREAN JOURNAL OF CHEMICAL ENGINEERING, v.37, no.8, pp.1427 - 1435
Indexed
SCIE
SCOPUS
KCI
Journal Title
KOREAN JOURNAL OF CHEMICAL ENGINEERING
Volume
37
Number
8
Start Page
1427
End Page
1435
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/32765
DOI
10.1007/s11814-020-0577-3
ISSN
0256-1115
Abstract
Supported Ru catalysts have been often employed for hydrogen charge into liquid organic hydrogen carrier molecules (monobenzyltoluene in this work), and their catalytic performance largely depends upon physicochemical properties of the support materials. We prepared supported Ru catalysts on SiO2-ZrO(2)with different Si/(Si+Zr) ratios ranging from 0 to 30mol% by loading Ru-3(CO)(12)onto Si,Zr-mixed metal hydroxide and subsequent thermolysis. The textural properties, Ru particle size, and hydrogenation activity of Ru/SiO2-ZrO(2)catalysts show a volcano-shaped dependence on the content of Si added, where the maximum is achieved at the Si/(Si+Zr) ratio of 5 mol%. Up to this Si content the incorporation of Si into ZrO(2)improves thermal stability and decreases the particle size of tetragonal ZrO2, resulting in a positive contribution to hydrogen storage efficiency. However, the further addition of Si increases surface heterogeneity and charge imbalance, and hence induces a decrease in the density of surface OH group reacting with Ru-3(CO)(12), which explains the lowered activity. Therefore, the addition of up to 5 mol% Si into ZrO(2)is effective in enhancing the hydrogenation performance of Ru/ZrO(2)owing to the improved textural properties and smaller Ru particles.
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