Chinese Journal of Chemistry p. 655 - 660 (2011)
Update date:2022-08-17
Topics:
Zhu, Jie
Lu, Mohong
Li, Mingshi
Zhu, Jianjun
Shan, Yuhua
A novel carbon-titania composite material, C/TiO2, has been prepared by growing carbon nanofibers (CNFs) on TiO2 surface via methane decomposition using Ni-Cu as a catalyst. The C/TiO2 was used for preparing supported palladium catalyst, Pd/C/TiO2. The support and Pd/C/TiO2 catalyst were characterized by BET, SEM, XRD and TG-DTG. Its catalytic performance was evaluated in selective hydrogenation of citral to citronellal, and compared with that of activated carbon supported Pd catalyst. It was found that the Pd/C/TiO2 catalyst contains 97% of mesopores. And it exhibited 88% of selectivity to citronellal at citral conversion of 90% in citral hydrogenation, which was much higher than that of activated carbon supported Pd catalyst. This result may be attributed to elimination of internal diffusion limitations, which were significant in activated carbon supported Pd catalyst, due to its microporous structure. A novel palladium catalyst supported on carbon-titanium composite, Pd/C/TiO 2, has been prepared via chemical reduction process. It contains 97% mesopores and exhibited higher selectivity to citronellal in citral hydrogenation compared to formed activated carbon supported palladium catalyst, which was attributed to elimination of internal diffusion limitations.
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