Gold containing catalyst, method of preparation and use
The present invention relates to improvements in known gold containing catalysts. In particular, the present invention relates to improving the stability and/or inhibition of deactivation of gold containing catalysts via the addition of an inorganic oxide, hydroxide, oxo-salt or oxo-acid. There is also disclosed a method for preparing said catalyst most suitably via an impregnation method. Such catalysts are useful in the production of vinyl chloride monomer.
1. A catalyst comprising:
a complex of gold with a sulphur-containing ligand; and
an additive that is an oxide, hydroxide, oxo-salt, or oxo-acid of silicon;
on a support comprising carbon,
wherein the catalyst contains less than 0.5% of gold by weight based on the total weight of the catalyst; and,
wherein the catalyst has a silicon content of 0.1-10 wt % based on the total weight of the catalyst.
2. The catalyst according to claim 1 , wherein the additive is a silicic acid.
3. The catalyst according to claim 1 , wherein the additive is sodium metasilicate pentahydrate.
4. The catalyst according to claim 1 , comprising no more than 0.1% of gold, by weight based on the total weight of the total catalyst.
5. The catalyst according to claim 1 , comprising no more than 0.05% of gold, by weight based on the total weight of the catalyst.
6. The catalyst according to claim 1 , wherein said sulphur-containing ligand is selected from the group consisting of a sulphate, a sulphonate, a thiosulphate, a thiocyanate, a thiourea, a thiol or thionyl chloride.
7. A method of manufacturing a catalyst according to claim 1 , wherein,
i) a solution of gold is provided,
ii) a solution of sulphur containing ligand is provided,
iii) a solution of an additive that is an oxide, hydroxide, oxo-salt, or oxo-acid of silicon, or precursor thereof is provided,
iv) the gold solution comprising carbon is mixed with the sulphur containing ligand solution to provide a gold complex impregnation solution, and
v-i) a catalyst support comprising carbon is impregnated with the gold complex impregnation solution, followed by drying the impregnated support, then impregnated with the solution from (iii), followed by drying the impregnated support, or
v-ii) a catalyst support is impregnated with the solution from step (iii), followed by drying then impregnated support, then impregnated with the gold complex impregnation solution, followed by drying the impregnated support.
8. A method of manufacturing a catalyst according to claim 1 , wherein,
i) an impregnation solution is provided comprising a gold complex and an additive that is an oxide, hydroxide, oxo-salt, or oxo-acid of silicon, or a precursor thereof;
ii) a catalyst support comprising carbon is impregnated with the solution from step (i) to produce an impregnated support, followed by drying the impregnated support.
9. The method according to claim 7 , wherein the additive precursor is transformed into an inorganic oxide, hydroxide, oxo-salt or oxo-acid via a thermal or chemical degradation.
10. The method according to claim 8 , wherein the additive precursor is transformed into an inorganic oxide, hydroxide, oxo-salt or oxo-acid via a thermal or chemical degradation.
11. A process for the hydrochlorination of an alkyne comprising reacting said alkyne with hydrogen chloride in the presence of a catalyst according to claim 1 .