Abstract
Several combinations of metals (mainly transition and noble metals) and the support (SiO2, ZrO2)[1a] depending from the actual substrate (e.g. long chain fatty acids) have been presented already in the literature for hydrogenation/hydrodeoxygenation (HDO) reaction.[1b] Hydrodeoxygenation of stearic acid (as a model compound of algae oil) to n-heptadecane on Ni/ZrO2 proceeds via hydrodeoxygenation of stearic acid to 1-octadecanal with subsequent decarbonylation of the aldehyde to n-heptadecane (Figure 1). Within our study, we have investigated the impact of Cu on Ni/ZrO2 based catalysts. It has been observed that the addition of Cu to Ni/ZrO2 enhanced the total reaction rate. Cu/ZrO2 was more active for the hydrodeoxygenation of stearic acid to aldehyde than Ni/ZrO2. Decarbonylation of 1-octadecanal, which is in equilibrium with 1-octadecanol proceeded, however, with a much higher rate on NixCu1-x/ZrO2 than compared to Ni/ZrO2. The combination of the higher hydrodeoxygenation rate of the acid to the aldehyde or alcohol and the high rate of elimination of water on Ni or NixCu1-x lead to the superior properties of the new catalyst.
Original language | English |
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Pages (from-to) | 3 |
Number of pages | 1 |
Journal | DGMK Tagungsbericht |
Volume | 2017 |
Issue number | 2 |
State | Published - 2017 |
Event | 2017 DGMK International Conference on Petrochemistry and Refining in a Changing Raw Materials Landscape - Dresden, Germany Duration: 9 Oct 2017 → 11 Oct 2017 |