IP Library Granted Patent US 9,808,783
Granted Patent B2
US 9,808,783 · App. 14/415,283 · Granted Nov 7, 2017

Regenerable sorbent for carbon dioxide removal

Inventors: Jian-Ping Shen (Chapel Hill, NC); Luke James Ivor Coleman (Durham, NC); Marty Alan Lail (Raleigh, NC); Raghubir Prasad Gupta (Durham, NC); Brian Scott Turk (Durham, NC)
Assignee: Research Triangle Institute
B01J20/043B01D53/02B01D53/62B01D53/82B01D53/96B01J20/04B01J20/041B01J20/28011B01J20/3078B01J20/3085B01J20/3433B01J20/3483B01J20/3491B01D53/0462B01D53/0476B01D2251/304B01D2251/402B01D2251/602B01D2251/606B01D2253/1124B01D2257/504B01D2258/01B01D2258/025B01D2258/0241B01D2258/0283B01J2220/42C10K1/005C10K1/26Y02C10/04Y02C10/08Y02C20/20Y02P20/152
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Quick Facts
Patent No.
US 9,808,783
App. No.
14/415,283
Granted
Nov 7, 2017
Kind
B2
Abstract

A mixed salt composition adapted for use as a sorbent for carbon dioxide removal from a gaseous stream is provided, the composition being in solid form and including magnesium oxide, an alkali metal carbonate, and an alkali metal nitrate, wherein the composition has a molar excess of magnesium characterized by a Mg:X atomic ratio of at least about 3:1, wherein X is the alkali metal. A process for preparing the mixed salt is also provided, the process including mixing a magnesium salt with a solution comprising alkali metal ions, carbonate ions, and nitrate ions to form a slurry or colloid including a solid mixed salt including magnesium carbonate; separating the solid mixed salt from the slurry or colloid to form a wet cake; drying the wet cake to form a dry cake including the solid mixed salt; and calcining the dry cake to form a mixed salt sorbent.

Claims (22)

1. A mixed salt composition adapted for use as a sorbent for carbon dioxide removal from a gaseous stream, the composition being in solid form and comprising:

i) magnesium oxide;

ii) an alkali metal carbonate; and

iii) an alkali metal nitrate, wherein the composition has a molar excess of magnesium characterized by a Mg:X atomic ratio of at least about 1.1:1, wherein X is the alkali metal.

2. The mixed salt composition of claim 1 , wherein the alkali metal comprises sodium.

3. The mixed salt composition of claim 1 , wherein the Mg:X atomic ratio is at least about 4:1.

4. The mixed salt composition of claim 1 , wherein the Mg:X atomic ratio is at least about 6:1.

5. The mixed salt composition of claim 1 , wherein the alkali metal nitrate is present in an amount of at least about 1% by weight, based on total dry weight of the mixed salt composition.

6. The mixed salt composition of claim 1 , comprising the mixture MgO:Na 2 CO 3 :NaNO 3 , wherein the atomic ratio of Mg:Na is at least about 1.1:1.

7. The mixed salt composition of claim 1 , having a crush strength in pellet form, as determined by the Shell method, of at least about 0.3 MPa.

8. A process for preparing a mixed salt composition, comprising:

i) mixing a magnesium salt with a solution comprising alkali metal ions, carbonate ions, and optionally nitrate ions, to form a slurry or colloid comprising a solid mixed salt comprising magnesium carbonate;

ii) separating the solid mixed salt from the slurry or colloid to form a wet cake of the solid mixed salt;

iii) drying the wet cake to form a dry cake comprising the solid mixed salt; and

iv) calcining the dry cake to form a mixed salt composition according to claim 1 .

9. The process of claim 8 , wherein the mixing step comprises mixing a first solution containing a dissolved alkali metal carbonate and optionally a dissolved alkali metal nitrate, and a second solution containing a dissolved magnesium salt to form the solid mixed salt as a co-precipitate.

10. The process of claim 9 , wherein the water solubility of the magnesium salt is at least about 10 g per 100 ml at 25° C. and one atmosphere.

11. The process of claim 9 , wherein the magnesium salt is selected from magnesium nitrate, magnesium acetate, and magnesium chloride.

12. The process of claim 8 , wherein the mixing step comprising combining a solid magnesium salt with a solution containing a dissolved alkali metal carbonate and a dissolved alkali metal nitrate to form the solid mixed salt as a colloid.

13. The process of claim 12 , wherein the solid magnesium salt is basic magnesium carbonate.

14. The process of claim 8 , wherein the carbonate ions in the solution are derived from a precipitating salt comprising a carbonate ion added to the solution.

15. The process of claim 14 , wherein the precipitating salt is an alkali metal carbonate or ammonium carbonate.

Continuity (2)
Provisional Application 61673626 · Jul 19, 2012
Related Publication 20150190777A1 · Jul 9, 2015