The present invention relates to a hybrid vapor compression-absorption cooling or heating system and apparatus containing a refrigerant pair comprising at least one refrigerant and at least one ionic liquid. The present invention also provides for the performance of a hybrid vapor compression-absorp
The present invention relates to a hybrid vapor compression-absorption cooling or heating system and apparatus containing a refrigerant pair comprising at least one refrigerant and at least one ionic liquid. The present invention also provides for the performance of a hybrid vapor compression-absorption cycle that utilizes refrigerants and absorbents such as fluorocarbon gases in fluorinated ionic liquids. The present invention also provides a method of cooling by the execution of a hybrid vapor compression-absorption cycle using a refrigerant pair comprising at least one refrigerant and at least one ionic liquid. The present invention also provides a method of heating by the execution of a hybrid vapor compression-absorption cycle using a refrigerant pair comprising at least one refrigerant and at least one ionic liquid.
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What is claimed is: 1. An apparatus for temperature adjustment comprising (a) an absorber that forms a mixture of a mixture of a refrigerant and an absorbent; (b) a generator that receives the mixture from the absorber and heats the mixture to separate refrigerant, in vapor form, from the absorbent
What is claimed is: 1. An apparatus for temperature adjustment comprising (a) an absorber that forms a mixture of a mixture of a refrigerant and an absorbent; (b) a generator that receives the mixture from the absorber and heats the mixture to separate refrigerant, in vapor form, from the absorbent, and increases the pressure of the refrigerant vapor; (c) a condenser that receives the vapor from the generator and condenses the vapor under pressure to a liquid; (d) a pressure reduction device through which the liquid refrigerant leaving the condenser passes to reduce the pressure of the liquid to form a mixture of liquid and vapor refrigerant; (e) an evaporator that receives the mixture of liquid and vapor refrigerant that passes through the pressure reduction device to evaporate the remaining liquid to form first and second portions of refrigerant vapor; (f) a compressor that receives the first portion of the refrigerant vapor, increases the pressure thereof, and passes the first portion of the refrigerant vapor to the condenser; and (g) a conduit that passes the second portion of the refrigerant vapor leaving the evaporator to the absorber; wherein the absorbent comprises one or more ionic liquids; and wherein the refrigerant is selected from one or more members of the group consisting of hydrofluorocarbons, N2, O2, CO2, Ar, H2 and non-fluorinated hydrocarbon, wherein the non-fluorinated hydrocarbon is selected from the group consisting of C1 to C4 straight-chain, branched or cyclic alkanes and C1 to C4 straight-chain, branched or cyclic alkenes. 2. An apparatus for temperature adjustment comprising (a) an absorber that forms a mixture of a mixture of a refrigerant and an absorbent; (b) a generator that receives the mixture from the absorber and heats the mixture to separate refrigerant, in vapor form, from the absorbent, and increases the pressure of the refrigerant vapor; (c) a compressor that receives the vapor from the generator and further increases its pressure; (d) a condenser that receives the vapor from the compressor and condenses the vapor under pressure to a liquid; (e) a pressure reduction device through which the liquid refrigerant leaving the condenser passes to reduce the pressure of the liquid to form a mixture of liquid and vapor refrigerant; (f) an evaporator that receives the mixture of liquid and vapor refrigerant that passes through the pressure reduction device to evaporate the remaining liquid to form refrigerant vapor; and (g) a conduit that passes the refrigerant vapor leaving the evaporator to the absorber; wherein the absorbent comprises one or more ionic liquids; and wherein the refrigerant is selected from one or more members of the group consisting of hydrofluorocarbons, N2, O2, CO2, Ar, H2 and non-fluorinated hydrocarbon, wherein the non-fluorinated hydrocarbon is selected from the group consisting of C1 to C4 straight-chain, branched or cyclic alkanes and C1 to C4 straight-chain, branched or cyclic alkenes. 3. An apparatus according to claim 1 wherein the condenser is located in proximity to an object, medium or space to be heated. 4. An apparatus according to claim 2 wherein the condenser is located in proximity to an object, medium or space to be heated. 5. An apparatus according to claim 1 wherein the evaporator is located in proximity to an object, medium or space to be cooled. 6. An apparatus according to claim 2 wherein the evaporator is located in proximity to an object, medium or space to be cooled. 7. An apparatus according to claim 1 or 2 wherein a hydrofluorocarbon is selected from the group consisting of: difluoromethane (HFC-32), pentafluoroethane (HFC-125), 1,1,2,2-tetrafluoroethane (HFC-134), 1,1,1,2-tetrafluoroethane (HFC-134a), 1, 1,1-trifluoroethane (HFC-143a), 1,1-difluoroethane (HFC-152a), and fluoroethane (HFC-161) and mixtures thereof. 8. An apparatus according to claim 1 or 2 wherein an ionic liquid comprises a cation selected from the group consisting of: wherein R1, R2, R3, R4, R5 and R6 are each independently selected from the group consisting of: (i) H; (ii) halogen; (iii) —CH3, —C2H5, or C3 to C25 straight-chain, branched or cyclic alkane or alkene, optionally substituted with at least one member selected from the group consisting of Cl, Br, F, I, OH, NH2 and SH; (iv) —CH3, —C2H5, or C3 to C25 straight-chain, branched or cyclic alkane or alkene comprising one to three heteroatoms selected from the group consisting of O, N, Si and S, and optionally substituted with at least one member selected from the group consisting of Cl, Br, F, I, OH, NH2 and SH; (v) C6 to C20 unsubstituted aryl, or C3 to C25 unsubstituted heteroaryl having one to three heteroatoms independently selected from the group consisting of O, N, Si and S; and (vi) C6 to C25 substituted aryl, or C3 to C25 substituted heteroaryl having one to three heteroatoms independently selected from the group consisting of O, N, Si and S; wherein said substituted aryl or substituted heteroaryl has one to three substituents independently selected from the group consisting of: 1. —CH3, —C2H5, or C3 to C25 straight-chain, branched or cyclic alkane or alkene, optionally substituted with at least one member selected from the group consisting of Cl, Br, F I, OH, NH2 and SH, 2. OH, 3. NH2, and 4. SH; and wherein R7, R8, R9, and R10 are each independently selected from the group consisting of: (vii) —CH3, —C2H5, or C3 to C25 straight-chain, branched or cyclic alkane or alkene, optionally substituted with at least one member selected from the group consisting of Cl, Br, F, I, OH, NH2 and SH; (viii) —CH3, —C2H5, or C3 to C25 straight-chain, branched or cyclic alkane or alkene comprising one to three heteroatoms selected from the group consisting of O, N, Si and S, and optionally substituted with at least one member selected from the group consisting of Cl, Br, F, I, OH, NH2 and SH; (ix) C6 to C25 unsubstituted aryl, or C3 to C25 unsubstituted heteroaryl having one to three heteroatoms independently selected from the group consisting of O, N, Si and S; and (x) C6 to C25 substituted aryl, or C3 to C25 substituted heteroaryl having one to three heteroatoms independently selected from the group consisting of O, N, Si and S; wherein said substituted aryl or substituted heteroaryl has one to three substituents independently selected from the group consisting of: —CH3, —C2H5, or C3 to C25 straight-chain, branched or cyclic alkane or alkene, optionally substituted with at least one member selected from the group consisting of Cl, Br, F, I, OH, NH2 and SH, (2) OH, (3) NH2, and (4) SH; and wherein optionally at least two of R1, R2, R3, R4, R5, R6, R7, R8, R9, and R10 can together form a cyclic or bicyclic alkanyl or alkenyl group. 9. An apparatus according to claim 8 wherein any one of, or any group of more than one of, R1, R2, R3, R4, R5, R6, R7, R8, R9 and R10 comprises F—. 10. An apparatus according to claim 1 or 2 wherein an ionic liquid comprises an anion selected from the group consisting of [CH3CO2]—, [HSO4]—, [CH3OSO3]—, [C2H5OSO3]—, [AlCl4]—, [CO3]2—, [HCO3]—, [NO2]—, [NO3]—, [SO4]2—, [PO4]3—, [HPO4]2—, [H2PO4]—, [HSO3]—, [CuCl2]—, CL—, Br—, I—, SCN— and any fluorinated anion. 11. An apparatus according to claim 10 wherein a fluorinated anion is selected from the group consisting of [BF4]—, [PF6]—, [SbF6]—, [CF3SO3]—, [HCF2CF2SO3]—, [CF3HFCCF2SO3]—, [HCClFCF2SO3]—, [(CF3SO2)2N]—, [(CF3CF2SO2)2N]—, [(CF3SO2)3C]—, [CF3CO2]—, [CF3OCFHCF2SO3]—, [CF3CF2OCFHCF2SO3]—, [CF3CFHOCF2CF2SO3]—, [CF2HCF2OCF2CF2SO3]—, [CF2ICF2OCF2CF2SO3]—, [CF3CF2OCF2CF2SO3]—, [(CF2HCF2SO2)2N]—, [(CF3CFHCF2SO2)2N]—, and F—. 12. An apparatus according to claim 1 or 2 wherein a refrigerant comprises from about 0.05 to about 99.95 mole percent of the mixture of refrigerant and absorbent over a temperature range from the evaporator temperature to the generator temperature at a pressure from vacuum to the critical pressure. 13. An apparatus according to claim 1 or 2 wherein the mixture of refrigerant and absorbent comprises an additive selected from the group consisting of lubricants, corrosion inhibitors, stabilizers and dyes. 14. An apparatus according to claim 1 or 2 that is fabricated as a refrigerator, a freezer, an ice machine, an air conditioner, an industrial cooling system, heater or heat pump. 15. An apparatus according to claim 2 wherein (i) the evaporator (f) receives the mixture of liquid and vapor refrigerant that passes through the pressure reduction device to evaporate the remaining liquid and forms first and second portions of refrigerant vapor; (ii) the conduit (g) passes the first portion of the refrigerant vapor leaving the evaporator to the absorber; and (iii) the apparatus further comprises a conduit (h) that passes the second portion of the refrigerant vapor to the compressor. 16. An apparatus according to claim 1 or 2 wherein an ionic liquid absorbent comprises one or both of a fluorinated cation and a fluorinated anion; and the refrigerant comprises a hydrofluorocarbon. 17. An apparatus according to claim 16 wherein a hydrofluorocarbon is selected from the group consisting of: difluoromethane (HFC-32), pentafluoroethane (HFC-125), 1,1,2,2-tetrafluoroethane (HFC-134), 1,1,1,2-tetrafluoroethane (HFC-134a), 1,1,1-trifluoroethane (HFC-143a), 1,1-difluoroethane (HFC-152a), and fluoroethane (HFC-161) and mixtures thereof.
Foo, Thomas; Harmer, Mark Andrew; Hutchenson, Keith W.; Junk, Christopher P.; Minter, Aaron, N-substituted pyrrolidonium ionic liquids with expanded linker.
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