1,2,6-Hexanetriol
1,2,6-Hexanetriol is a trivalent alcohol with two primary and one secondary hydroxy group. It is similar to glycerol in many respects and is used as a substitute for glycerol in many applications due to its more advantageous properties, such as higher thermal stability and lower hygroscopicity.
Production
Racemic 1,2,6-hexanetriol is obtained by catalytic hydrogenation of 2-hydroxyadipaldehyde which is in turn produced by the acid hydrolysis of acrolein dimer in dilute aqueous solution.Despite high product yields, a lightly colored product is obtained on this direct route and the hydrogenation catalyst is rapidly poisoned under the high aldehyde concentrations. For industrial production, it is therefore suitable to carry out the reaction in acidic alcoholic solutions, whereby the solvent alcohol quickly adds to the activated double bond to form 2-formyl-6-alkoxytetrahydropyran and then reacts with the formyl group to form the corresponding hemiacetal. Water is added to the reaction mixture to hydrolyse the acetal groups and Raney nickel is added as a hydrogenation catalyst. The hydrogenation under 20 atm hydrogen at 140 °C is completed after approx. 1.5 h and, after work-up, yields pure 1,2,6-hexanetriol in a yield >95 %.
Recently, several authors have described the synthesis of 1,2,6-hexanetriol from the easily accessible platform chemical hydroxymethylfurfural, which can be produced from "carbon neutral" raw materials such as pentoses, hexoses, and other carbohydrates. In the first hydrogenation step from HMF to tetrahydrofuran-dimethanol, Raney nickel again shows the highest catalyst activity. Further hydrogenation, even with expensive rhodium-rhenium catalysts, leads only to modest selectivities and unsatisfactory yields.