Method of converting ethanol to higher alcohols
A method and catalyst for forming higher alcohols from lower alcohol feedstocks. In one application a highly selective and stable copper pseudo-single-atom supported on MgO—Al 2 O 3 catalyst is provided which provides ethanol condensation to higher alcohols at ˜50% yields and ˜85% selectivity is demonstrated with stable catalyst lifetime over 500 hours in a continuous flow system. In some applications a Guerbet condensation process is further utilized to yield a higher alcohol at a selectivity of near ˜90%.
1. A method for converting an alcohol containing feedstock containing ethanol, the method comprising the steps of:
introducing the feedstock to a co-precipitated CuO—MgO—Al 2 O 3 catalyst having dispersed and stabilized Cu 1+ copper sites at an atomic level (pseudo-single atom) on a MgO—Al 2 O 3 catalyst, wherein the copper percentage is between 0.025 wt % and 0.25 wt % under a hydrogen carrier gas at a pressure above 100 psig and at a temperature between 275-350 degrees C. to facilitate in-line process intensification selectively form a preselected higher alcohol product.
2. The method of claim 1 wherein the catalyst is a sinter resistant catalyst.
3. The method of claim 1 further comprising the step of condensing the preselected higher alcohol product through a Guerbet reaction to yield a second product.
4. The method of claim 3 further comprising the step of: passing the second product from the Guerbet reaction through a second catalyst bed to improve selectivity to alcohols via conversion of esters and aldehydes and minimize downstream separation.