Method for removal of mercury from hydrocarbon feedstocks
View Patent ↗The invention provides a method for removing mercury from a liquid or gas hydrocarbon stream, mixtures thereof, including mixtures of liquid streams with a solid carbonaceous substance, by contacting the hydrocarbon stream with a composition comprising silver and a support material, wherein the composition as measured by ammonia chemisorption has a surface acidity in the range of 0.1-10.0 μmole of irreversible NH 3 /g of the composition.
1. A method of removing mercury from a gas hydrocarbon stream from a hydrocarbon cracker and the stream comprises mercury and further comprises olefins, oxygenated by-products, dienes, and hydrocarbons other than dienes, the method comprising: contacting the stream with a composition comprising:
(a) a solid, porous, refractory support material having a surface acidity in the range of 0.1-10.0 μmole of irreversible NH 3 /g of support as measured by ammonia chemisorption, wherein the support material has a surface area of at least about 0.1 m 2 /g and up to about 1.6 m 2 /g and wherein the support material comprises at least about 80% by weight alpha-alumina; and
(b) silver in the form of reduced silver.
2. The method of claim 1 , wherein the composition has a surface acidity in the range of 0.1-10.0 μmole of irreversible NH 3 /g of composition as measured by ammonia chemisorption.
3. The method of claim 1 , wherein the composition has a surface acidity sufficient to reduce polymer and/or oligomer formation from dienes in the stream as compared to an composition with a surface acidity greater than 10.0 μmole of irreversible NH 3 /g of composition as measured by ammonia chemisorption.
4. The method of claim 1 , wherein the composition has a surface acidity sufficient to reduce water formation from a condensation reactions of oxygenated by-products in the stream as compared to a composition with a surface acidity greater than 10.0 μmole of irreversible NH 3 /g of composition as measured by ammonia chemisorption.
5. The method of claim 1 , wherein the composition has a surface acidity sufficient to reduce oligomer formation from a reaction of oxygenated by-products in the stream as compared to an composition with a surface acidity greater than 10.0 μmole of irreversible NH 3 /g of composition as measured by ammonia chemisorption.
6. The method of claim 1 , wherein the dienes comprise butadiene and cyclopentadiene and the hydrocarbons other than dienes in the stream comprise methane, and the olefins comprise ethylene and propylene.
7. The method of claim 1 , wherein the composition comprises a catalyst which is capable of being used or has been used to produce ethylene oxide, the catalyst comprising, silver and one or more promoters, and optionally wherein at least some of the one or more promoters has been removed.
8. The method of claim 1 , wherein the support material has a pore volume of at least about 0.2 cc/g, wherein at least about 40% of pore volume is present in pores between about 10 and 100 microns in diameter as measured by mercury porosimetry and wherein the composition comprises silver in the amount of at least about 1 and less than about 70 wt. percent.
9. The method of claim 1 wherein the silver is regenerated by the removal of mercury.