IP Library Granted Patent US 7,856,847
Granted Patent B2
US 7,856,847 · App. 12/345,829 · Granted Dec 28, 2010

Multiple reflux stream hydrocarbon recovery process

Assignee: Lummus Technology Inc.
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Quick Facts
Patent No.
US 7,856,847
App. No.
12/345,829
Granted
Dec 28, 2010
Kind
B2
Abstract

An ethane recovery process utilizing multiple reflux streams is provided. Feed gas is cooled, partially condensed, and separated into a first liquid stream and a first vapor stream. First liquid stream is expanded and sent to a demethanizer. First vapor stream is split into a first and a second separator vapor streams. First separator vapor stream is expanded and sent to demethanizer. Second separator vapor stream is partially condensed and is separated into a reflux separator liquid stream, which is sent to demethanizer, and a reflux separator vapor stream, which is condensed and sent to demethanizer. Demethanizer produces a tower bottom stream containing a substantial amount of ethane and heavier components, and a tower overhead stream containing a substantial amount of remaining lighter components and forms a residue gas stream. A portion of residue gas stream is cooled, condensed, and sent to the demethanizer tower as top reflux stream.

Claims (13)

1. A process for separating a gas stream containing methane and ethane, ethylene, propane, propylene and heavier components into a volatile gas fraction containing a substantial amount of methane and a less volatile fraction containing a large portion of ethane, ethylene, propane, propylene and heavier components, the process comprising the steps of:

a. splitting a hydrocarbon feed stream into a first inlet stream, a second inlet stream and a third inlet stream and cooling the first, second, and third inlet streams;

b. supplying the first inlet stream and the second inlet stream to a cold separator;

c. separating the first inlet stream and the second inlet stream to produce a first vapor stream and a first liquid stream;

d. expanding the first vapor stream to produce an expanded first vapor stream and then supplying a demethanizer with the first liquid stream as a first tower feed stream and the expanded first vapor stream as a second tower feed stream;

e. cooling and at least partially condensing the third inlet stream and then supplying a reflux separator with the third inlet stream and producing a reflux separator overhead stream and a reflux separator bottoms stream;

f. supplying the demethanizer with the reflux separator bottoms stream as a third tower feed stream;

g. cooling and substantially condensing and then supplying the demethanizer with the reflux separator overhead stream as a fourth tower feed stream, the demethanizer producing a demethanizer overhead stream containing a substantial amount of methane and lighter components and a demethanizer bottoms stream containing a major portion of recovered ethane, ethylene, propane, propylene and heavier components;

h. warming and compressing the demethanizer overhead stream to produce a residue gas stream; and

i. wherein an improvement comprises removing at least a portion of the residue gas stream as a residue gas reflux stream and cooling, substantially condensing and then supplying the residue gas reflux stream to the demethanizer as a reflux stream.

2. The process of claim 1 , wherein the step of supplying the first inlet stream and the second inlet stream to a cold separator includes supplying a top of a cold absorber with the first inlet stream and a bottom of the cold absorber with the second inlet stream where the first inlet stream has a temperature colder than the second inlet stream, the cold absorber having a packed bed contained therein.

3. The process of claim 1 , further including subcooling and supplying at least a portion of the first liquid stream to the demethanizer at a feed location located above that of the expanded first separator overhead stream.

4. The process of claim 1 , wherein the steps of supplying the demethanizer with the first, second, third and fourth tower feed streams includes sending the first tower feed stream at a lowest feed location, sending the second tower feed stream at a second tower feed location that is higher than the lowest feed location, sending the third tower feed stream at a third tower feed location that is higher than the second tower feed location, and sending the fourth tower feed stream at a fourth tower feed location that is higher than the third tower feed location.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2010
From: PATEL, SANJIV M.; FOGLIETTA, JORGE H.
To: ABB LUMMUS GLOBAL INC.
Reel/Frame 024194/0195 →
CHANGE OF NAME Recorded Mar 29, 2010
From: ABB LUMMUS GLOBAL INC.
To: LUMMUS TECHNOLOGY INC.
Reel/Frame 024154/0106 →
Continuity (3)
Division 1075619600 · Jan 13, 2004
Provisional Application 6044053800 · Jan 16, 2003
Related Publication 20090113930A1 · May 7, 2009