Method for recovering ethylbenzene from alkylation product of fluidized catalytic cracking off-gas and benzene
The present disclosure provides a process for effectively separating and removing by-products (light gas, C5-C6 hydrocarbon oil fraction, polyethylbenzene) contained in a substantial amount in addition to ethylbenzene as a target compound in an alkylation reaction product of a fluidized catalytic cracking off-gas to prepare ethylbenzene having high purity, and process economical efficiency may be secured by utilizing the polyethylbenzene as an absorbent or gasoline fraction, without requiring a transalkylation reaction for further producing ethylbenzene from polyethylbenzene.
1. A method for recovering ethylbenzene comprising:
reacting a mixture of benzene and fluidized catalytic cracking off-gas comprising ethylene and a light gas in an alkylation reactor to provide a product stream comprising light gas and ethylbenzene;
feeding the product stream to a quencher to separate a quencher overhead stream comprising light gas and a quencher bottom stream comprising benzene and heavier compounds;
feeding the quencher bottom stream to a benzene recovery column to separate a benzene recovery column overhead liquid stream comprising unreacted benzene and a C5-C6 hydrocarbon, a benzene recovery column overhead vapor stream comprising light gas, and a benzene recovery column bottom stream comprising ethylbenzene and heavier compounds; and
feeding the benzene recovery column bottom stream to an ethylbenzene recovery column and recovering ethylbenzene.
2. The method of claim 1 , further comprising:
raising a temperature of the benzene or the mixture of benzene and fluidized catalytic cracking off-gas by heat exchange with the product stream.
3. The method of claim 1 , wherein the mixture of benzene and fluidized catalytic cracking off-gas is heated and fed to the alkylation reactor.
4. The method of claim 1 , further comprising:
feeding the quencher overhead stream to an absorption tower, wherein the quencher overhead stream comprises an amount of heavy oil fraction, absorbing the amount of the heavy oil fraction by an absorbent to be recovered to an absorption tower bottom stream, and mixing the absorption tower bottom stream with the quencher bottom stream.
5. The method of claim 4 , wherein the light gas in the quencher overhead stream is recovered to an absorption tower overhead stream.
6. The method of claim 4 , wherein the absorption tower bottom stream is fed to an absorbent recovery column to be separated into a side-cut stream comprising benzene and an absorbent recovery column bottom stream, comprising a heavy oil fraction, and the side-cut stream is mixed with the quencher bottom stream.
7. The method of claim 6 , wherein at least a portion of the absorbent recovery column bottom stream is fed to the absorption tower as an absorbent.
8. The method of claim 6 , wherein the light gas included in the quencher bottom stream fed to the absorbent recovery column is separated into an absorbent recovery column overhead stream and recovered.
9. The method of claim 6 , wherein a residue after recovering the ethylbenzene in the ethylbenzene recovery column is discharged into an ethylbenzene recovery column bottom stream, the ethylbenzene recovery column bottom stream is mixed with the absorbent recovery column bottom stream, and at least a portion of a heavy oil fraction stream in which the ethylbenzene recovery column bottom stream and the absorbent recovery column bottom stream are mixed is fed to the absorption tower as the absorbent.
10. The method of claim 4 , wherein the benzene recovery column overhead vapor stream is fed to the absorption tower.
11. The method of claim 1 , wherein the benzene recovery column overhead liquid stream is recycled to the alkylation reactor.
12. The method of claim 1 , wherein the benzene recovery column overhead vapor stream is fed to the absorption tower to absorb benzene with the absorbent, and the absorption tower bottom stream containing the benzene separated from the light gas is discharged from the absorption tower and mixed with the quencher bottom stream.
13. The method of claim 1 , wherein a residue after recovering the ethylbenzene in the ethylbenzene recovery column is discharged into an ethylbenzene recovery column bottom stream, and at least a portion of the ethylbenzene recovery column bottom stream is fed to the absorption tower as the absorbent.