Claims
- 1. An apparatus comprising:
- a plurality of two or more reactors each reactor containing a plurally of two or more different compounds therein comprising a solid reactant adsorbent and a gaseous reactant adsorbed thrown, each of said compounds having a different gaseous reactant vapor pressure, substantially independents of the concentrating of the gaseous reactant therein, said compounds arranged in ascending order of gaseous reactant vapor pressure,
- means for supplying a heat transfer fluid to and from said reactors, and means for directing the heat transfer fluid through said reactors in success thermal combination with said compound therein,
- flow directing means for directing relatively heated gaseous reactant from one or more desorbing reactors to receiving means and for directing relatively cool gaseous reactant from receiving means to one or more adsorbing reactors, and
- a heat exchange competing with said flow directing mends for transferred heat between said heated aqueous reactant said relatively cool gaseous reactant.
- 2. Apparatus of claim 1 wherein said receiving manes comprises a condenser for receiving said reactively heated gaseous reactant and an evaporator for supplying relatively cool gaseous reactant.
- 3. Apparatus of claim 1 wherein said receiving means comprise means for adsorbing and desorbing said gaseous reactant.
- 4. Apparatus of claim 1 wherein said means for directing heat transfer fluid through said reactors comprises multiple channel means capable of directing different heat transfer fluids therethough in thermal commendation with said compound during absorption and deposition reactions in said reactors.
- 5. Apparatus of claim 1 wherein said solid reactant is selected from the group consisting of a metal oxide, halide, carbonate, nitrate, nitrite, sulfate, oxalate, or sulfide, and wherein the metal is selected from the group consisting of alkali metal, alkaline earth metal, transition metal, aluminum, zinc, cadmium, and tin.
- 6. Apparatus of claim 1 wherein said solid reactant comprises a double metal chloride, said metals selected from the group consisting of an alkali metal, alkaline earth metal, aluminum, manganese, iron, nickel and cobalt.
- 7. Apparatus of claim 1 wherein said gaseous reactant is selected from the group consisting of ammonia, water, carbon dioxide, sulfur dioxide, lower alkanol, alkylamine, polyamine and phosphine.
- 8. Apparatus of claim 7 wherein said solid reactant is selected from the group consisting of a metal oxide, halide, carbonate, nitrate, nitrite, sulfate, oxalate, or sulfide, and wherein the metal is selected from the group consisting of alkali metal, alkaline earth metal, transition metal, aluminum, zinc, cadmium, and tin.
- 9. Apparatus of claim 7 wherein said solid reactant comprises a double metal chloride, said metals selected from the group consisting of an alkali metal, alkaline earth metal, aluminum, manganese, iron, nickel and cobalt.
- 10. Apparatus of claim 1 wherein said plurality of compounds include one or more of the following:
- ______________________________________Ba Cl.sub.2 .cndot. 0-8 (NH.sub.3), Sr Cl.sub.2 .cndot. 1-8 (NH.sub.3),Sr Br.sub.2 .cndot. 2-8 (NH.sub.3),Ca Cl.sub.2 .cndot. 0-1 (NH.sub.3), Ca Cl.sub.2 .cndot. 1-2 (NH.sub.3),Ca Cl.sub.2 .cndot. 2-4 (NH.sub.3),Ca Cl.sub.2 .cndot. 4-8 (NH.sub.3), Ca Br.sub.2 .cndot. 2-6 (NH.sub.3),Ni Cl.sub.2 .cndot. 2-6 (NH.sub.3),Fe Cl.sub.2 .cndot. 2-6 (NH.sub.3), Fe Br.sub.2 .cndot. 2-6 (NH.sub.3),Co Cl.sub.2 .cndot. 2-6 (NH.sub.3), Co Br.sub.2 .cndot. 2-6 (NH.sub.3),Mg Cl.sub.2 .cndot. 2-6 (NH.sub.3), Mg Br.sub.2 .cndot. 2-6 (NH.sub.3),Mn Cl.sub.2 .cndot. 2-6 (NH.sub.3), Mn Br.sub.2 .cndot. 2-6 (NH.sub.3),Cu SO.sub.4 .cndot. 2-5 (NH.sub.3), Zn Cl.sub.2 .cndot. 1-4 (NH.sub.3),andNa BF.sub.4 .cndot. 0 .cndot. 5-2 .cndot. 5 (NH.sub.3) .cndot.______________________________________
- 11. An apparatus comprising plurality of two or more reactors, each reactor containing a plurally of two or more different compounds comprising a solid reactant adsorbent and a gaseous reactant adsorbed thereon, each of said compounds having a different gaseous reactant vapor pressure, substantially independents of the concentration of the gaseous reactant therein, said compounds arranged in ascending order of gaseous reactant vapor pressure,
- means for supplying a heat transfer fluid to and from said reactors, and means for directing the heat transfer fluid through said reactors in successive thermal communication with said compounds therein,
- a condenser for condensing gaseous reactant desorbed from said compounds, and first means for directing said gaseous reactant from said reactors to said condenser,
- an evaporator for said gaseous reactant, and second means for directing said gaseous reactant from said evaporator to said reactors, and
- a heat exchange cooperating with said first means and said second means for transferring heat therebetween.
- 12. A process for staging solid-vapor compounds comprising:
- alternately adsorbing and desorbing a gaseous reactant from first and second reactors, respectively, each reactor containing a plurality of two or more different compounds comprising a solid reactant and a gaseous reactant adsorbed thereon or desorbed therefrom, wherein each of said compounds has a different gaseous reactant vapor pressure, substantially independent of the concentration of gaseous reactant, said compounds arranged in successive order of gaseous reactant vapor pressure,
- supplying a heat transfer fluid at a first temperature along one of said reactors in successive thermal communication with said first set of compounds resulting in a first pressure, whereby said compounds desorb said gaseous reactant in endothermic reactions, and directing desorbed gaseous reactant from the desorbing reactor to a condenser,
- supplying a heat transfer fluid at a second temperature, lower than said first temperature, along the other of said reactors in successive thermal communication with said second set of compound, directing gaseous reactant from an evaporator to said other reactor, and operating said other reactor at a second pressure whereby said compounds therein adsorb said gaseous reactant in exothermic reactions, and
- directing a first flow of said gaseous reactant from the desorbing reactor to a condenser and concurrently directing a second flow of gaseous reactant from said evaporator to the adsorbing reactor through a heat exchanger and exchanging heat between said first and second flows.
- 13. A process for staging solid-vapor compounds comprising:
- alternately adsorbing and desorbing a gaseous reactant from first and second reactors, respectively, each reactor containing a plurality of two or more different compounds comprising a solid reactant and a gaseous reactant adsorbed thereon or desorbed therefrom, wherein each of said compounds has a different gaseous reactant vapor pressure, substantially independent of the concentration of gaseous reactant, said compounds arranged in successive order of gaseous reactant vapor pressure,
- supplying a heat transfer fluid at a first temperature along one of said reactors in successive thermal communication with said first set of compounds resulting in a first pressure, whereby said compounds desorb said gaseous reactant in endothermic reactions, and directing desorbed gaseous reactant from the desorbing reactor to a receiving means,
- supplying a heat transfer fluid at a second temperature, lower than said first temperature, along the other of said reactors in successive thermal communication with said second set of compounds, directing gaseous reactant from an receiving means to said other reactor, and operating said other reactor at a second pressure whereby said compounds therein adsorb said gaseous reactant in exothermic reactions, and
- directing a first flow of said gaseous reactant from the desorbing reactor to a receiving means and concurrently directing a second flow of gaseous reactant from said receiving means to the adsorbing reactor through a heat exchanger and exchanging heat between said first and second flows.
- 14. A method of staging solid vapor compound reactions comprising:
- (a) selecting a plurality of two or more different compounds comprising a solid reactant adsorbent and a gaseous reactant adsorbed thereon, wherein each of said compounds has a different gaseous reactant vapor pressure, substantially independents of the concentration of the gaseous reactant and wherein at least one of said compounds is selected from the following:
- ______________________________________Ba Cl.sub.2 .cndot. 0-8 (NH.sub.3), Sr Cl.sub.2 .cndot. 1-8 (NH.sub.3),Sr Br.sub.2 .cndot. 2-8 (NH.sub.3),Ca Cl.sub.2 .cndot. 0-1 (NH.sub.3), Ca Cl.sub.2 .cndot. 1-2 (NH.sub.3),Ca Cl.sub.2 .cndot. 2-4 (NH.sub.3),Ca Cl.sub.2 .cndot. 4-8 (NH.sub.3), Ca Br.sub.2 .cndot. 2-6 (NH.sub.3),Ni Cl.sub.2 .cndot. 2-6 (NH.sub.3),Fe Cl.sub.2 .cndot. 2-6 (NH.sub.3), Fe Br.sub.2 .cndot. 2-6 (NH.sub.3),Co Cl.sub.2 .cndot. 2-6 (NH.sub.3), Co Br.sub.2 .cndot. 2-6 (NH.sub.3),Mg Cl.sub.2 .cndot. 2-6 (NH.sub.3), Mg Br.sub.2 .cndot. 2-6 (NH.sub.3),Mn Cl.sub.2 .cndot. 2-6 (NH.sub.3), Mn Br.sub.2 .cndot. 2-6 (NH.sub.3),Cu SO.sub.4 .cndot. 2-5 (NH.sub.3), Zn Cl.sub.2 .cndot. 1-4 (NH.sub.3),andNa BF.sub.4 .cndot. 0 .cndot. 5-2 .cndot. 5 (NH.sub.3) .cndot.______________________________________
- (b) locating a first set of the said different compounds in one or more first reactors and a second set of the said different compounds in one or more second reactors, wherein each of said compounds of said first set and each of said compounds of said second set absorb and desorb the same gaseous reactant at a temperature different from the other compounds of each of said sets, respectively, at the reaction pressures and wherein the compounds of each of said first and second sets are located in said first and second reactors in successive order of compound vapor pressure,
- (c) supplying a heat transfer fluid at a first temperature along said one or more first reactors in successive thermal communication with said first set of compounds resulting in a first pressure whereby said compounds desorb said gaseous reactant in endothermic reactions, and
- supplying a heat transfer fluid at a second temperature, lower than said first temperature, along said one or more second reactors in successive thermal communication with said second set of compounds, whereby said compounds adsorb said gaseous reactant in exothermic reactions.
- 15. The method of claim 14, wherein said heat transfer fluid is directed through each of said first and second reactors to successively thermally communicate with said compounds in successive order of compound vapor pressure.
- 16. The method of claim 15 wherein said heat transfer fluid is heated to said first temperature prior to being supplied to said first reactor, and becomes gradually cooled as it directed through said first reactor in successive thermal communication with said compounds therein.
- 17. The method of claim 16 wherein said heat transfer fluid is cooled to said second temperature prior to being supplied to said second reactor, and becomes gradually heated as it is directed through said second reactor in successive thermal communication with said compounds therein.
- 18. The method of claim 14 including condensing gaseous reactant released from said compounds during said desorption and recovering heat from the gaseous reactant condensation and evaporating at least a portion of such condensed gaseous reactant and absorbing heat from said evaporation.
- 19. The method of claim 14 wherein at least a portion of gaseous reactant from desorption reactions is directed to an external absorber/desorber reactor and wherein at least a portion of gaseous reactant for adsorption reactions is directed thereto from an external absorber/desorber reactor.
- 20. An apparatus comprising:
- a plurality of two or more realtors, each reactor containing a plurally of two or more different compounds therein comprising a solid reactant adsorbent and a gaseous reactant adsorbed thereon, each of said compounds having a different gaseous reactant vapor pressure, substantially independents of the concentration of the gaseous reactant therein, and wherein at least one of said compounds is
- ______________________________________Ba Cl.sub.2 .cndot. 0-8 (NH.sub.3), Sr Cl.sub.2 .cndot. 1-8 (NH.sub.3),Sr Br.sub.2 .cndot. 2-8 (NH.sub.3),Ca Cl.sub.2 .cndot. 0-1 (NH.sub.3), Ca Cl.sub.2 .cndot. 1-2 (NH.sub.3),Ca Cl.sub.2 .cndot. 2-4 (NH.sub.3),Ca Cl.sub.2 .cndot. 4-8 (NH.sub.3), Ca Br.sub.2 .cndot. 2-6 (NH.sub.3),Ni Cl.sub.2 .cndot. 2-6 (NH.sub.3),Fe Cl.sub.2 .cndot. 2-6 (NH.sub.3), Fe Br.sub.2 .cndot. 2-6 (NH.sub.3),Co Cl.sub.2 .cndot. 2-6 (NH.sub.3), Co Br.sub.2 .cndot. 2-6 (NH.sub.3),Mg Cl.sub.2 .cndot. 2-6 (NH.sub.3), Mg Br.sub.2 .cndot. 2-6 (NH.sub.3),Mn Cl.sub.2 .cndot. 2-6 (NH.sub.3), Mn Br.sub.2 .cndot. 2-6 (NH.sub.3),Cu SO.sub.4 .cndot. 2-4 (NH.sub.3), Zn Cl.sub.2 .cndot. 1-4 (NH.sub.3),orNa BF.sub.4 .cndot. 0 .cndot. 5-2 .cndot. 5 (NH.sub.3)______________________________________
- said compounds arranged in ascending order of gaseous reactant vapor pressure,
- means for supplying a heat transfer fluid to and from said reactors, and means for directing the heat transfer fluid through said reactors in successive thermal communication with said compounds therein,
- means for directing gaseous reactant to and from said reactors, and
- heat exchange means for heating and/or cooling said heat transfer liquid and for selectively recovering and/or absorbing heat therefrom.
- 21. Apparatus of claim 20 wherein at least one of said compounds is Ba Cl.sub.2 .multidot.0-8 (NH.sub.3).
- 22. Apparatus of claim 20 wherein at least one of said compounds is Sr Cl.sub.2 .multidot.1-8 (NH.sub.3).
- 23. Apparatus of claim 20 wherein at least one of said compounds is Sr Br.sub.2 .multidot.2-8 (NH.sub.3).
- 24. Apparatus of claim 20 wherein at least one of said compounds is Ca Cl.sub.2 .multidot.0-1 (NH.sub.3) or Ca Cl.sub.2 .multidot.1-2 (NH.sub.3).
- 25. Apparatus of claim 20 wherein at least one of said compounds is Ca Cl.sub.2 .multidot.2-4 (NH.sub.3) or Ca Cl.sub.2 .multidot.4-8 (NH.sub.3).
- 26. Apparatus of claim 20 wherein at least one of said compounds is Ca Br.sub.2 .multidot.2-6 (NH.sub.3).
- 27. Apparatus of claim 20 wherein at least one of said compounds is Ni Cl.sub.2 .multidot.2-6 (NH.sub.3).
- 28. Apparatus of claim 20 wherein at least one of said compounds is Fe Cl.sub.2 .multidot.2-6 (NH.sub.3) or Fe Br.sub.2 .multidot.2-6 (NH.sub.3).
- 29. Apparatus of claim 20 wherein at least one of said compounds is Co Cl.sub.2 .multidot.2-6 (NH.sub.3) or Co Br.sub.2 .multidot.2-6 (NH.sub.3).
- 30. Apparatus of claim 20 wherein at least one of said compounds is Mg Cl.sub.2 .multidot.2-6 (NH.sub.3) or Mg Br.sub.2 2-6 (NH.sub.3).
- 31. Apparatus of claim 20 wherein at least one of said compounds is Mn Cl.sub.2 2-6 (NH.sub.3) or Mn Br.sub.2 .multidot.2-6 (NH.sub.3).
- 32. Apparatus of claim 20 wherein at least one of said compounds is Cu So.sub.4 .multidot.2-5 (NH.sub.3).
- 33. Apparatus of claim 20 wherein at least one of said compounds is Zn Cl.sub.2 .multidot.1-4 (NH.sub.3).
- 34. Apparatus of claim 20 wherein at least one of said compounds is Na BF.sub.4 .multidot.0-2.5 (NH.sub.3).
- 35. Apparatus of claim 20 including receiving means for treating gaseous reactant directed from said reactors.
- 36. Apparatus of claim 35 wherein said receiving means comprises means for condensing and evaporating said gaseous reactant.
- 37. Apparatus of claim 35 wherein said receiving means comprises means for adsorbing and desorbing said gaseous reactant.
- 38. Apparatus of claim 37 wherein said means for adsorbing and desorbing comprises reactors containing a solid adsorbent or liquid absorbent.
- 39. Apparatus of claim 35 wherein said receiving means comprises a pressure activated heat pump.
- 40. Apparatus of claim 35 said receiving means comprises a mechanical compressor.
Parent Case Info
This application is a continuation-in-part of co-pending application Ser. No. 07/436,431 filed Nov. 14, 1989 now U.S. Pat. No. 5,025,635, issued Jun. 25, 1991.
US Referenced Citations (23)
Foreign Referenced Citations (5)
Number |
Date |
Country |
272868 |
Jan 1928 |
EPX |
2095818 |
Mar 1981 |
EPX |
0071271 |
Feb 1983 |
EPX |
9100979 |
Jan 1991 |
WOX |
9107627 |
May 1991 |
WOX |
Non-Patent Literature Citations (2)
Entry |
Proceeding of the DOE Thermal and Chemical Storage Annual Contractor's Review Meeting, Mar. 1981. |
Thermodynamic Analysis of a Metal-Hydride Heat Pump. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
436431 |
Nov 1989 |
|