Claims
- 1. In a process for the at least partial liquefaction of a low-boiling gaseous mixture wherein the gaseous mixture under pressure is precooled in heat exchange with a vaporizing single-component refrigerant which flows in a first closed refrigeration cycle, purified during the course of the precooling step and, after the precooling step is subjected to a preliminary separation in a fractionating column to obtain a gaseous fraction, the improvement comprising:
- precooling and partially liquefying to the extent of 40 to 65 volume % a closed cycle multicomponent gas refrigerant which flows in a second closed refrigeration cycle, in indirect heat exchange with said vaporizing single-component refrigerant,
- completing the liquefying of said multicomponent gas refrigerant by cooling in one heat exchange stage, by expansion of resultant completely liquiefied multi-component refrigerant against itself, and
- said expansion being conducted simultaneously in indirect heat exchange contact with the gaseous fraction obtained from said preliminary separation, to at least partially liquefy said gaseous fraction, said partial liquefaction being conducted at a temperature lower than the precooling step.
- 2. The process improvement according to claim 1 also including the step of
- compressing said multicomponent gas before said step of precooling and partially liquefying and
- wherein said step of completing the liquefying of said multicomponent gas at one stage includes evaporating said multicomponent gas in said one stage.
- 3. The process improvement according to claim 1 also including the steps of
- expanding said at least partially liquefied gaseous mixture to a slight excess pressure to obtain a liquid fraction and a vapor fraction,
- utilizing said vapor fraction for partial condensation of gaseous mixture obtained from the top of the fractionating column in said preliminary separation, and
- refluxing said liquid fraction to said fractionating column, the reflux ratio in said column being about 0.03 : 1 to 0.04 : 1.
- 4. The process improvement according to claim 3 wherein said step of expanding comprises passing said at least partially liquefied gaseous mixture through an ejector; and comprising the further steps of
- expanding said liquid fraction to about atmospheric pressure and storing same at said pressure, and
- passing vapor arising from the expansion of said liquid stored at about atmospheric pressure to the suction side of said ejector.
- 5. The process improvement according to claim 4 including the step of
- rectifying said liquid fraction at slight excess pressure and wherein
- said vapor fraction of said gaseous mixture utilized for said partial condensation is the overhead gas produced by said rectifying.
- 6. The process improvement according to claim 3 including the step of
- rectifying said liquid fraction at slight excess pressure and wherein
- said vapor fraction of said gaseous mixture utilized for said partial condensation is the overhead gas produced by said rectifying.
- 7. A process as defined by claim 1 wherein said low boiling gaseous mixture is natural gas, said singlecomponent refrigerant is propane, said multi-component gas comprises on a mol percent basis, nitrogen 8-18, methane 25-45, ethane 35-55, and propane 1-8.
- 8. A process as defined by claim 7 wherein said mutli-component gas comprises about 12.0 nitrogen, about 38.0 methane, about 45.5 ethane, and about 4.4 propane.
- 9. A process as defined by claim 7 wherein said multi-component gas is liquefied to the extent of 44-15 volume percent.
- 10. A process for at least the partial liquefaction of a natural gas comprising:
- precooling said natural gas in indirect heat exchange with a refrigerant which flows in a first closed cycle; subjecting said natural gas to a preliminary separation step to obtain a liquid and a gaseous fraction compressing a multicomponent gas which flows in a second closed cycle;
- partially liquefying to the extent of 40 to 65 volume % said compressed multicomponent gas by precooling against an external refrigerant,
- completing the liquefying of said partially liquefied multicomponent gas by heat exchange with expanding previously liquefied multicomponent gas in a single heat exchanger stage, and
- simultaneously at least partially liquefying said gaseous fraction of natural gas by heat exchange with said expanding multicomponent gas in said single heat exchanger stage.
- 11. The process according to claim 10, wherein said external refrigerant is a three cascade stage propane cycle and the natural gas is precooled by heat exchange with said external refrigerant and wherein said step of partially liquefying said multicomponent gas by precooling is accomplished by heat exchange with said external refrigerant simultaneously with said precooling of the natural gas, and wherein said multicomponent gas completely evaporates during said single stage.
- 12. The process according to claim 11, wherein said
- preliminary separation of said precooled natural gas is conducted in a fractionating column to form a first vapor fraction, and a first liquid fraction,
- expanding in an ejector said natural gas at least partially liquefied in said single stage to a slight excess pressure, and
- cooling said first vapor fraction by heat exchange with said vapor fraction expanded to a slight excess pressure.
- 13. The process according to claim 12, wherein said cooled first vapor fraction is thereby partially liquefied and wherein said process includes the additional steps of:
- separating said cooled first vapor fraction into a second vapor fraction and a second liquid fraction; and
- said second vapor fraction passing as said gaseous fraction of natural gas in indirect heat exchange with said expanding multicomponent gas in said single stage.
- 14. The process according to claim 12, wherein said process additionally includes the steps of:
- refluxing said second liquid fraction into said fractionating columnm, the reflux ratio in said column being about 0.03 : 1 to about 0.04 : 1.
- 15. The process according to claim 14, also including the steps of:
- separating said expanded gaseous mixture at least partially liquefied in said single stage into a third vapor fraction and a third liquid fraction;
- storing said third liquid fraction; and
- passing vapor expanding from said step of storing to the suction side of said ejector.
- 16. The process according to claim 14, also including the steps of:
- rectifying said expanded gaseous mixture at least partially liquefied in said single stage;
- separating the sump product formed by said rectifying step into a third vapor fraction and a third liquid fraction; and
- passing vapor expanding from said step of storing to the suction side of said ejector.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2336273 |
Jul 1973 |
DT |
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Parent Case Info
This application is a continuation-in-part of application Ser. No. 489,245 filed July 17, 1974, now abandoned under the same title and by the same inventors.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
895,094 |
May 1962 |
EN |
Continuation in Parts (1)
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Number |
Date |
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Parent |
489245 |
Jul 1974 |
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