Method of retrofitting a system for recovering paraxylene
A method for retrofitting a system for recovering paraxylene. The system is retrofitted with a pressure swing adsorption unit and a second isomerization reactor. The retrofit lowers the variable cost of the plant, while providing the opportunity to maintain existing equipment and furnace and refrigeration duty.
1. A method comprising,
retrofitting a system for recovering paraxylene, the system comprising an inlet adapted to introduce an aromatic hydrocarbon feed stream to a fractionation zone, the fractionation zone adapted to separate a C8-rich aromatic hydrocarbon stream from C7-aromatic hydrocarbons and C9+ aromatic hydrocarbons, a crystallization zone adapted to form a paraxylene-rich product stream and a paraxylene-lean stream from the C8-rich aromatic hydrocarbon stream and to recover a paraxylene product, an isomerization zone adapted to isomerize at least a portion of the metaxylene and orthoxylene in the paraxylene-lean stream to form an effluent having a paraxylene concentration higher than a paraxylene concentration of the paraxylene-lean stream, the isomerization zone effluent being introduced into the fractionation zone;
said retrofitting comprising adding a pressure swing adsorption zone and a secondary isomerization zone to the system such that at least a portion of the C8-rich aromatic hydrocarbon stream is fed to the pressure swing adsorption zone to form a paraxylene-rich intermediate stream and a second paraxylene-lean stream, the paraxylene-rich intermediate stream being fed to the crystallization zone and the second paraxylene-lean stream being fed to the secondary isomerization zone, the isomerate from the secondary isomerization zone having a concentration of paraxylene higher than the concentration of paraxylene in the second paraxylene-lean stream and being fed to the fractionation zone.
2. The method of claim 1 , wherein the retrofitting of the system increases the amount of paraxylene product recovered without increasing the throughput of the primary isomerization zone.
3. The method of claim 1 , wherein the system further comprises a source of hydrogen adapted to feed hydrogen to said primary isomerization zone, and said retrofitting comprises feeding hydrogen from said source to the secondary isomerization source, wherein retrofitting the system increases the amount of paraxylene product recovered without increasing the amount of hydrogen fed to the system.
4. The method of claim 1 , wherein the retrofitting of the system increases the amount of paraxylene product recovered without increasing a refrigeration duty of the crystallization zone.
5. The method of claim 1 , wherein the retrofitting of the system increases the amount of paraxylene product recovered without increasing a furnace duty of the isomerization zone.
6. The method of claim 1 , wherein the retrofitting of the system increases the amount of paraxylene product recovered without increasing a furnace duty of the fractionation zone.