Fischer-Tropsch catalysts
The invention relates to the preparation of a Fischer-Tropsch catalyst support and of a Fischer-Tropsch catalyst. A silica comprising support is subjected to hydrothermal treatment. The hydrothermal treatment results in catalysts having improved C 5 + selectivity as compared with catalysts prepared with a non-treated silica comprising support.
1. A process for performing a Fischer Tropsch reaction comprising the following steps:
providing a reactor with a cobalt based Fischer-Tropsch catalyst
comprising a catalyst support material consisting of 80 to 100% by weight silica and up to 20% by weight of another refractory oxide; wherein the
the catalyst support material has previously been subjected to a hydrothermal treatment wherein the hydrothermal treatment is performed using a monoethanolamine comprising solution with a pH in the range of between 7 and 11, or using a monoethanolamine and nitric acid comprising solution with a pH in the range of between 7 and 11; and wherein
the catalyst support material is shaped before or after the hydrothermal treatment;
providing syngas to the reactor and providing the following process conditions in the reactor: a temperature in the range from 125 to 350° C., a pressure in the range from 5 to 150 bar absolute, and a gaseous hourly space velocity in the range from 500 to 10000 Nl/l/h;
removing Fischer Tropsch product from the reactor.
2. The process for performing a Fischer Tropsch reaction according to claim 1 wherein the process for manufacturing the Fischer-Tropsch catalyst further comprises the step of:
impregnating the shaped treated catalyst support material with a catalytically active metal.
3. The process for performing a Fischer Tropsch reaction according to claim 2 wherein the process for manufacturing the Fischer-Tropsch catalyst further comprises the step of:
subjecting the obtained catalyst to hydrogen or a hydrogen-containing gas.
4. The process for performing a Fischer Tropsch reaction according to claim 2 , wherein the silica in the catalyst support material has a surface area of 200 m 2 /g or less prior to impregnation with the catalytically active metal.
5. The process for performing a Fischer Tropsch reaction according to claim 2 , wherein the silica in the catalyst support material has a total pore volume in the range of from 50 to 200 ml/g prior to impregnation with the catalytically active metal.
6. The process for performing a Fischer Tropsch reaction according to claim 1 , wherein in process for manufacturing the Fischer-Tropsch catalyst the catalyst support material is subjected to hydrothermal treatment in the presence of an acid, in the presence of an alkali, or in the presence of an acid and an alkali.
7. The process for performing a Fischer Tropsch reaction according to claim 1 , wherein in process for manufacturing the Fischer-Tropsch catalyst the hydrothermal treatment of the catalyst support material is carried out at a temperature in the range of from 120 to 250° C.
8. The process for performing a Fischer Tropsch reaction according to claim 1 , wherein the silica in the catalyst support material has a median pore diameter [V] of 20 nm or greater prior to impregnation with the catalytically active metal.