Heterogeneous Pt-catalyzed transfer dehydrogenation of long-chain alkanes with ethylene
The dehydrogenation of long-chain alkanes to olefins and alkylaromatics is a challenging endothermic reaction, typically requiring harsh conditions which can lead to low selectivity and coking. More favorable thermodynamics can be achieved by using a hydrogen acceptor, such as ethylene. In this work...
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Veröffentlicht in: | Catalysis science & technology 2023-12, Vol.13 (24), p.7123-7135 |
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Sprache: | eng |
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Zusammenfassung: | The dehydrogenation of long-chain alkanes to olefins and alkylaromatics is a challenging endothermic reaction, typically requiring harsh conditions which can lead to low selectivity and coking. More favorable thermodynamics can be achieved by using a hydrogen acceptor, such as ethylene. In this work, the potential of heterogeneous platinum catalysts for the transfer dehydrogenation of long-chain alkanes is investigated, using ethylene as a convenient hydrogen acceptor. Pt/C and Pt-Sn/C catalysts were prepared
via
a simple polyol method and characterized with CO pulse chemisorption, HAADF-STEM, and EDX measurements. Conversion of ethylene was monitored
via
gas-phase FTIR, and distribution of liquid products was analyzed
via
GC-FID, GC-MS, and 1H-NMR. Compared to unpromoted Pt/C, Sn-promoted catalysts show lower initial reaction rates, but better resistance to catalyst deactivation, while increasing selectivity towards alkylaromatics. Both reaction products and ethylene were found to inhibit the reaction significantly. At 250 °C for 22 h, TON up to 28 and 86 mol per mol Pt were obtained for Pt/C and PtSn
2
/C, respectively, with olefin selectivities of 94% and 53%. The remaining products were mainly unbranched alkylaromatics. These findings show the potential of simple heterogeneous catalysts in alkane transfer dehydrogenation, for the preparation of valuable olefins and alkylaromatics, or as an essential step in various tandem reactions.
The catalytic transfer dehydrogenation of long-chain alkanes was investigated with simple heterogeneous Pt catalysts under mild conditions and with high selectivity, using ethylene as a cheap and abundant hydrogen acceptor. |
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ISSN: | 2044-4753 2044-4761 |
DOI: | 10.1039/d3cy00370a |