摘要
A highly efficient Ni-Pt bimetallic catalyst over Al2O3 for the conversion of oleic acid to heptadecane without using external hydrogen source is synthesized by the atomic layer deposition (ALD). The combined characterizations of HAADF-STEM, in-situ XAFS and CO-DRIFTS confirmed that Ni-Pt-ALD formed a Pt-skin structure over the sub-surface Ni particles. With the modification of Ni, the Pt-skin bimetallic particles exhibit excellent activity and selectivity in the upgrade reaction of oleic acid to aviation fuels. The yield of heptadecane reaches 91%, near the theoretical upper limit of the “self-hydrogen supply-consumption”. The remarkable catalytic performance of the Ni-Pt-ALD catalyst demonstrates that the subsurface Ni-modulated Pt skin structure is capable of integrating the dehydrogenation, decarboxylation and hydrogenation reactions. The undesired side reactions such as alkyl chain aromatization and polymerization could be effectively inhibited.
源语言 | 英语 |
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文章编号 | 124603 |
期刊 | Chemical Engineering Journal |
卷 | 390 |
DOI | |
出版状态 | 已出版 - 15 6月 2020 |