Claims
- 1. A process for improved CO.sub.2 absorption from a gas by an absorbent liquid which has an improved absorption capacity for CO.sub.2 which process comprises contacting said gas and the absorbent liquid in an absorption zone having an upper and lower part, thereby obtaining a treated gas with a reduced content of CO.sub.2 and the absorbent liquid with increased CO.sub.2 content, and regenerating the absorbent liquid which has an increased CO.sub.2 content, thereby releasing the CO.sub.2 and producing at least one gaseous fraction containing the released CO.sub.2 and at least one portion of the regenerated absorbent liquid and recycling said regenerated absorbent liquid to the absorption zone, the absorbent liquid being a mixture of one or more tertiary alkanolamines and an activator of improved CO.sub.2 absorption by said tertiary alkanolamines, the activator having the general formula
- Y--(C.sub.p H.sub.2p)--NHZ
- wherein Y is a monovalent radical selected from the group consisting of piperazyl, piperidinyl, furyl, tetrahydrofuryl, thienyl, tetrahydrothienyl and --OR.sub.2 radicals, Z is an --R.sub.2 radical or hydrogen, R.sub.2 is a monovalent hydrocarbon residue, and p is an integer from 1 to 6.
- 2. The process of claim 1 wherein Y is a monovalent radical selected from the group consisting of ##STR6## and C.sub.1 -C.sub.6 alkoxy radicals and Z is hydrogen.
- 3. The process of claim 1 wherein the activator is selected from the group consisting of methoxypropylamine, ethoxypropylamine, aminoethylpiperazine, aminopropylpiperazine, aminoethylpiperidine, aminopropylpiperidine and furfurylamine.
- 4. The process of claim 1 wherein in the formula for the activator, R.sub.2 is substituted by a functional group.
- 5. The process of claim 4 wherein the functional group is hydroxyl or phenyl.
- 6. The process of claim 1 wherein the activator is present in an activating amount.
- 7. The process of claim 1 wherein the gas is subjected to a treatment comprising an absorption stage and a regeneration stage during which the charged absorbent liquid is subjected to a regeneration treatment to release the CO.sub.2 which it has retained and to produce, on the one hand, at least one acidic gaseous fraction containing the released CO.sub.2 and, on the other hand, at least one regenerated absorbent liquid which is recycled towards the absorption zone.
- 8. The process of claim 7 wherein the regeneration is carried out by decompression in one or more stages of at least a part of the charged absorbent liquid.
- 9. The process of claim 1 wherein the regeneration of the charged absorbent liquid is carried out by subjecting all of the charged absorbent liquid to decompression in one or more stages to release most of the CO.sub.2 present in the said charged absorbent liquid, then subjecting the decompressed absorbent liquid to a complementary regeneration by steam-stripping by direct or indirect heating of the absorbent liquid, the absorbent liquid resulting from the complementary regeneration being recycled into the absorption zone.
- 10. The process of claim 1 wherein a part of the decompressed absorbent liquid is subjected to a complementary regeneration by stripping, the absorbent liquid resulting from the complementary regeneration being recycled into the upper part of the absorption zone while the part of the decompressed absorbent liquid which is not subjected to the complementary regeneration is being recycled into the absorbent zone below the absorbent liquid regenerated by stripping.
- 11. The process of claim 1 wherein the regeneration of the charged absorbent liquid is carried by subjecting a fraction of the charged absorbent liquid to decompression in one or more stages to release most of the CO.sub.2 which it contains while the remaining fraction of the charged absorbent liquid is subjected directly to a regeneration by steam-stripping, by direct or indirect heating of the absorbent liquid of the remaining fraction, the fraction of the absorbent liquid regenerated by stripping is being recycled into the upper part of the absorption zone while the decompressed fraction of absorbent liquid is being recycled into the absorption zone below the absorbent liquid regenerated by stripping.
- 12. The process of claim 1 wherein the CO.sub.2 -containing gas to be treated also comprises other acidic gas including H.sub.2 S and/or COS.
- 13. The process of claim 7 wherein the decompressed absorbent liquid is subjected to a complementary regeneration step which comprises steam-stripping the absorbent liquid by direct or indirect heating.
- 14. An absorbent liquid for improved absorption capacity for CO.sub.2 in a gas due the presence of an activator for CO.sub.2 absorbent from said gas, the absorption liquid comprising a mixture of one or more tertiary alkanolamines and an activator of CO.sub.2 absorption by said tertiary alkanolamine, which activator has the general formula
- Y--(C.sub.p H.sub.2p)--NHZ
- wherein Y is a monovalent radical selected from the group consisting of piperazyl, piperidinyl, furyl, tetrahydrofuryl, thienyl, tetrahydrothienyl and --OR.sub.2 radicals, Z is an --R.sub.2 radical or hydrogen, R.sub.2 is a monovalent hydrocarbon residue, and p is an integer from 1 to 6.
- 15. The absorbent liquid of claim 14 wherein in the formula for the activator, R.sub.2 is substituted by a functional group.
- 16. The absorbent liquid of claim 15 wherein the functional group is hydroxyl or phenyl.
- 17. The absorbent liquid of claim 15 wherein the activator is present in an activating amount.
- 18. The absorbent liquid of claim 17 wherein the absorbent liquid is an aqueous solution of the tertiary alkanolamine and the activator.
- 19. The absorbent liquid of claim 18 wherein the absorbent liquid contains a minor quantity of at least one water-soluble organic solvent for the CO.sub.2, selected from the group consisting of sulpholane, methanol and N-methylpyrrolidone.
- 20. The absorbent liquid of claim 18 wherein the concentration of the tertiary alkanolamine in the aqueous solution is between 1N and 6N.
- 21. The absorbent liquid of claim 18 wherein the quantity of activator is such that the ratio of the number of moles of activator to the total number of moles of activator and of tertiary alkanolamine is between 0.01 and 0.5.
- 22. The absorbent liquid of claim 18 wherein the tertiary alkanolamine is selected from the group consisting of at least one of the tertiary alkanolamines N-methyldiethanolamine, triethanolamine, 2-dimethylaminoethanol, 3-dimethylamino-1-propanol and 1-diethylamino-2-propanol.
- 23. The absorbent liquid of claim 18 wherein the activating amount of the activator in the absorbent liquid is between 0.05 mole and about 2 moles per liter.
- 24. The absorbent liquid of claim 23 wherein the activating amount is from about 0.1 mole to about 1 mole per liter.
- 25. The absorbent liquid of claim 20 wherein the concentration of the tertiary alkanolamine is between 2.5N and 5N.
- 26. The absorbent liquid of claim 21 wherein the ratio is between 0.05 and 0.25.
Priority Claims (3)
Number |
Date |
Country |
Kind |
88 06880 |
May 1989 |
FRX |
|
88 06881 |
May 1989 |
FRX |
|
88 16130 |
Dec 1989 |
FRX |
|
Parent Case Info
This patent application is a divisional application of allowed application Ser. No. 07/460,958, filed Jan. 18, 1990, for Liquid Absorbing Acidic Gases and Use Thereof in Deacidification of Gases, now U.S. Pat. No. 5,209,914, and a continuation in-part of copending application Ser. No. 07/917,758, filed Jul. 21, 1992, pending, for Liquid Absorbent For Acidic Gases and Process of Deacidification of a Gas, which are both incorporated herein by reference.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4101633 |
Sartori et al. |
Jul 1978 |
|
Divisions (1)
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Number |
Date |
Country |
Parent |
460958 |
Jan 1990 |
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