Generation of an alkaline liquid and forming a continuous generation alkaline liquid loop
11465908 ยท 2022-10-11
Assignee
Inventors
- Lai O. Kuku (Gilbert, AZ, US)
- Gypsy M. Biller (Chandler, AZ, US)
- Michael P. Wounderberg (Phoenix, AZ, US)
- Kyle J. Koleber (Phoenix, AZ, US)
- Girish N Raghunathan (Tempe, AZ, US)
Cpc classification
B01D53/1493
PERFORMING OPERATIONS; TRANSPORTING
B01D53/1481
PERFORMING OPERATIONS; TRANSPORTING
C01B25/301
CHEMISTRY; METALLURGY
B01D53/502
PERFORMING OPERATIONS; TRANSPORTING
B01D53/96
PERFORMING OPERATIONS; TRANSPORTING
B01D53/1425
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D53/96
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A process is provided using a concentrated sodium bicarbonate solution as a solubilizer mixed with a calcium hydroxide to chemically produce an insoluble calcium carbonate and produce an alkaline liquid solution, then passing the alkaline liquid solution through detrimental gases in a scrubber to produce an enhanced sodium bicarbonate which regenerates the sodium bicarbonate thus creating a continuous closed loop. The process can also produce a sodium phosphate (trisodium phosphate) by mixing the alkaline liquid solution with a phosphoric acid.
Claims
1. A process comprising mixing a blended solution with a solubilizer to produce an ionic solid for commercial use and to produce an alkaline liquid solution, and wherein the alkaline liquid solution is further chemically mixed with a phosphoric acid to produce a sodium phosphate.
2. The process of claim 1 wherein the solubilizer is a commercially available concentrated sodium bicarbonate and the blended solution is calcium hydroxide; wherein the chemically produced ionic solid is calcium carbonate; and wherein the alkaline liquid solution is an enriched alkaline sodium hydroxide.
3. The process of claim 2 further comprising a scrubber fluidly disposed between the enriched alkaline sodium hydroxide solution and the source of the sodium bicarbonate solution; and directing the flue gases from the power plant through the enriched alkaline sodium hydroxide solution flowing through the scrubber.
4. The process of claim 3 wherein the enriched sodium hydroxide solution passing through the scrubber is chemically changed to a sodium bicarbonate solution.
5. The process of claim 4 wherein a continuous sodium bicarbonate solution regeneration loop is provided from the source of sodium bicarbonate solution to the mixing tank with the calcium hydroxide+water, to the alkaline sodium hydroxide solution tank, to the scrubber, and back to the source of sodium bicarbonate solution.
6. The process of claim 3 wherein the flue gases from the power plant contains carbon dioxide, sulfur dioxide, and nitrogen oxide, and wherein the enriched alkaline sodium dioxide solution is effective to remove the sulfur dioxide and nitrogen oxide gases and capture the carbon dioxide gases; and during the chemical reaction, chemically transforming the carbon dioxide gases to a newly created sodium bicarbonate solution that is directed to the source of sodium bicarbonate solution downstream of the scrubber.
7. The process of claim 1 wherein the chemically produced sodium phosphate is separated from the water and stored in the sodium phosphate tank and the water is passed to the pure water tank.
8. The process of claim 1 wherein the solubilizer is a commercially available sodium bicarbonate solution stored as a source of sodium bicarbonate; wherein, to further enhance the concentration of the stored sodium bicarbonate, the sodium bicarbonate is selectively directed through a deionizer where additional water is drawn off and passed to a water tank; and directing the further concentrated sodium bicarbonate solution as the solubilizer to be chemically mixed with the blended solution in the mixing tank.
9. The process of claim 8 wherein to further enhance the concentration of the stored sodium bicarbonate, the sodium bicarbonate is selectively directed through a demineralization process where addition water is drawn off and passed to a water tank; and directing the further concentrated sodium bicarbonate solution as the solubilizer to be chemically mixed with the blended solution in the mixing tank.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
DETAILED DESCRIPTION
(3) Referring to
(4) The concentrated sodium bicarbonate solution 12 is passed on to a mixing tank 20 where the concentrated sodium bicarbonate solution 12 is chemically mixed with a calcium hydroxide+water 21. From the chemical reaction in the mixing tank 20, an alkaline sodium hydroxide solution 26 and an ionic solid 22 (calcium carbonete} are generated. The calcium carbonate 22 is drawn off and stored in a calcium carbonate tank 24. The alkaline liquid sodium hydroxide 26 is stored in a sodium hydroxide tank 28. The process further includes delivering the alkaline sodium hydroxide solution 26 from the sodium hydroxide tank 28 through a line 30, to another mixing tank 32. Phosphoric acid 36 stored in a tank 38 is delivered to the mixing tank 32 through a line 40. The phosphoric acid 36 chemically mixes with the alkaline liquid sodium hydroxide solution 26 and the resulting solution is a sodium phosphate 42 and water. The sodium phosphate 42 is separated from the water and passed to a sodium phosphate tank 45. The remaining water is passed to the water tank 46 through a line 48.
(5) Referring to the embodiment of
(6) In the embodiment of
INDUSTRIAL APPLICABILITY
(7) The subject process, as set forth in
(8) Referring to
(9) The alkaline liquid sodium hydroxide 26 in the storage tank 28 may be directed in two different directions. Depending on the volume of the alkaline liquid sodium hydroxide 26 produced, all may be passed on to the scrubber 50 for the generation of the sodium bicarbonate solution 12/54 or if the volume of the alkaline liquid sodium hydroxide 26 is higher than needed, a portion of the alkaline liquid sodium hydroxide 26 may be passed on to the sodium hydroxide and phosphoric acid mixing tank 32. From the chemical reaction in the mixing tank 32 between the alkaline liquid sodium hydroxide 26 and the phosphoric acid, the sodium phosphate 42 is produced.
(10) The portion of the alkaline liquid sodium hydroxide 26 that is selectively passed on to the scrubber 50 and therethrough is subjected to the exhaust flue gases 53 coming from the power plant 52 through the line 55. The exhaust gases 53 from the power plant 52 normally contain, at least, CO.sub.2 (carbon dioxide), SO.sub.2 (sulfur), and NO.sub.x gases that are significantly reduced or totally removed. The high purity liquid sodium hydroxide 26 efficiently removes or captures these detrimental exhaust gases from the power plant 52. During the chemical reaction, the sulfur dioxides and the nitrogen oxides are removed, and the captured carbon dioxide is chemically transformed to the newly formed high purity sodium bicarbonate 54 (NaHCO.sub.3). The newly formed high purity sodium bicarbonate 54 is directed to the source of sodium bicarbonate solution tank 12/54. As set forth above, if the concentration of the sodium bicarbonate solution 12/54 is low, the sodium carbonate solution 12/54 is directed through the deionizer/demineralization process 18 to make it more concentrated and then pass it on to the concentrated sodium bicarbonate tank 16. The continuous loop created continues to function to regenerate concentrated sodium bicarbonate 12/54 as needed.
(11) Other embodiments, as well as certain variations and modification of the embodiments herein shown and described, will obviously occur to those skilled in the art upon becoming familiar with the underlying concept. It is to be understood, therefore, that the subject process, as claimed, may be practiced otherwise than specifically set forth above.
ELEMENT LIST
(12) 10. process 12. source of sodium bicarbonate 14. line 16. concentrated sodium bicarbonate tank 18. deionizer 20. mixing tank 21. calcium hydroxide 22. calcium carbonate 24. calcium carbonate tank 26. alkaline liquid sodium hydroxide 28. sodium hydroxide tank 30. line 32. mixing tank 36. phosphoric acid 38. phosphoric acid tank 40. line 42. sodium phosphate (trisodium phosphate) 44. sodium phosphate+water tank 45. sodium phosphate tank 46. water tank 48. line 50. scrubber 51. line 52. power plant 53. exhaust gases 54. sodium bicarbonate solution 55. line