Claims
- 1. In a process for separating a feed gas stream containing methane, C2 components, C3 components and heavier components into a volatile gas stream containing a major portion of the methane and C2 components and a less volatile stream containing a major portion of the C3 and heavier components by adjusting the temperature and pressure of the feed gas stream to a suitable temperature for separation into an absorber gas stream and a first liquid stream in a separator/absorber with the absorber gas stream containing a major portion of the methane and C2 components and the first liquid stream containing a major portion of the C3 and heavier components, the first liquid stream being charged to a deethanizer from which a bottoms liquid product comprising primarily the C3 and heavier components is recovered with the deethanizer overhead consisting primarily of C2 and lighter components, the improvement comprising:a) cooling the deethanizer overhead to produce a partially condensed stream; b) separating the cooled deethanizer overhead stream into a liquid stream comprising principally C2 components and a residue gas stream; and, c) cooling a portion of the liquid stream in heat exchange with the absorber gas stream to produce a subcooled liquid stream and passing the subcooled liquid stream to an upper portion of the separator/absorber for contact with a gas stream rising through the separator/absorber to absorb C3 and heavier components therefrom.
- 2. The improvement of claim 1 wherein a pressure in the deethanizer is at least 25 psi greater than a pressure in the separator/absorber.
- 3. The improvement of claim 1 wherein the pressure in the deethanizer is at least 100 psi greater than the pressure in the separator/absorber.
- 4. The process of claim 1 wherein the separator/absorber contains at least one theoretical stage of mass transfer.
- 5. A process for separating a feed gas stream containing methane, C2 components, C3 components and heavier components into a volatile gas stream containing a major portion of the methane and C2 components and a less volatile stream containing a major portion of the C3 and heavier components, the process comprising:a) cooling the feed gas stream to a temperature sufficient to condense the majority of the C3 components in the feed gas stream by heat exchange with at least one of a first liquid stream containing C3 and heavier components and a refrigerant stream to produce a cooled feed gas stream; b) passing the cooled feed gas stream to a separator/absorber to produce the first liquid stream as a bottoms product and a separator/absorber overhead residue gas stream; c) passing the first liquid stream to a deethanizer tower operating at a pressure at least 25 psi above the pressure in the separator/absorber; d) separating the first liquid stream into a deethanizer bottoms stream containing a majority of the C3 and heavier components and a deethanizer overhead gas stream; e) cooling the deethanizer overhead gas stream to partially condense the deethanizer overhead gas stream by heat exchange with a refrigerant stream to produce a deethanizer liquid reflux stream, a second liquid stream and a deethanizer residue gas stream; and, f) cooling the second liquid stream by heat exchange with the separator/absorber overhead residue gas stream to produce a subcooled second liquid stream and passing the subcooled second liquid stream into an upper portion of the separator/absorber.
- 6. The process of claim 5 wherein the refrigerant comprises propane.
- 7. The process of claim 5 where the pressure of the deethanizer is at least 100 psi greater than the pressure in the separator/absorber.
- 8. The process of claim 5 wherein the pressure in the deethanizer is at least about 200 psi greater than the pressure in the separator/absorber.
- 9. The process of claim 5 wherein the separator/absorber contains at least one theoretical stage of mass transfer.
- 10. A process for separating a feed gas stream containing methane, C2 components, C3 components and heavier components into a volatile gas stream containing a major portion of the methane and C2 components and a less volatile stream containing a major portion of the C3 and heavier components, the process comprising:a) cooling the feed gas stream to a temperature sufficient to condense the majority of the C3 components in the feed gas stream by heat exchange with at least one of a first liquid stream containing C3 and heavier components, a second liquid stream containing C3 and heavier components, a residue gas stream, and a refrigerant stream to produce a cooled feed gas stream; b) passing the cooled feed gas stream to a separator to produce a separator gas stream and the first liquid stream; c) optionally further cooling the separator gas stream by heat exchange or expansion and passing it to a separator/absorber wherein a second liquid stream is produced as a bottoms stream and wherein a separator/absorber overhead residue gas stream is produced; d) passing the first liquid stream and the second liquid stream to a deethanizer tower operating at a pressure at least 25 psi above the separator/absorber pressure; e) separating the first and the second liquid streams into a deethanizer bottoms stream containing a majority of the C3 and heavier components and a deethanizer overhead gas stream; f) cooling the deethanizer overhead gas stream to partially condense the deethanizer overhead gas stream by heat exchange with a refrigerant stream to produce a deethanizer liquid reflux stream, a third liquid stream and a deethanizer residue gas stream; and, g) cooling the third liquid stream by heat exchange with the separator/absorber overhead residue gas stream to produce a subcooled third liquid stream and passing the subcooled third liquid stream into an upper portion of the separator/absorber.
- 11. The process of claim 10 wherein the refrigerant comprises propane.
- 12. The process of claim 10 wherein the pressure of the deethanizer is at least 100 psi greater than the pressure in the separator/absorber.
- 13. The process of claim 10 wherein the pressure of the deethanizer is at least 200 psi greater than the pressure in the separator/absorber.
- 14. The process of claim 10 wherein the separator/absorber contains at least one theoretical stage of mass transfer.
- 15. A process for separating a feed gas stream containing methane, C2 components, C3 components and heavier components into a volatile gas stream containing a major portion of the methane and C2 components and a less volatile stream containing a major portion of the C3 and heavier components, the process comprising:a) cooling the feed gas stream to a temperature sufficient to condense the majority of the C3 components in the feed gas stream by heat exchange with at least one of a first liquid stream containing C3 and heavier components, a second liquid stream containing C3 and heavier components, a residue gas stream, and a refrigerant stream to produce a cooled gas stream; b) passing the cooled gas stream to a first separator to produce a first separator gas stream and a first separator liquid stream; c) optionally further cooling the first separator gas stream by heat exchange or expansion and passing it to a separator/absorber wherein the second liquid stream is produced as a bottoms stream and wherein a separator/absorber overhead residue gas stream is produced; d) passing the first separator liquid stream to a second separator at a lower pressure than the first separator and separating a second separator residue gas stream and a second separator liquid stream; e) passing the first separator liquid stream and the second separator liquid stream to a deethanizer tower operating at a pressure at least 25 psi above the separator/absorber pressure; f) separating the first and the second separator liquid streams into a deethanizer bottoms stream containing a majority of the C3 and heavier components and a deethanizer overhead gas stream; g) cooling the deethanizer overhead gas stream to partially condense the deethanizer overhead gas stream by heat exchange with a refrigerant stream to produce a deethanizer liquid reflux stream, a third liquid stream and a deethanizer residue gas stream; and, j) cooling the third liquid stream by heat exchange with the separator/absorber overhead residue gas stream to produce a subcooled third liquid stream and passing the subcooled third liquid stream into an upper portion of the separator/absorber.
- 16. The process of claim 15 wherein the refrigerant comprises propane.
- 17. The process of claim 15 wherein the pressure of the deethanizer is at least 100 psi greater than the pressure in the separator/absorber.
- 18. The process of claim 15 wherein the pressure in the deethanizer is at least 200 psi greater than the pressure in the separator/absorber.
- 19. The process of claim 15 wherein the separator/absorber contains at least one theoretical stage of mass transfer.
RELATED APPLICATION
This application is entitled to and hereby claims the benefit of the filing date of a provisional application entitled “Gas Separation Process” Ser. No.: 60/291,079, filed May 15, 2001 by Robert A. Mortko and Kevin L. Currence.
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Provisional Applications (1)
|
Number |
Date |
Country |
|
60/291079 |
May 2001 |
US |