Claims
- 1. A method of making and dispensing carbonated water, comprising the steps of:
- (a) pressurizing a carbonator with carbon dioxide gas a predetermined storage pressure;
- (b) propelling initially flat water into the carbonator with carbon dioxide gas at predetermined propellant gas pressure, said propellant gas pressure being higher than the storage pressure;
- (c) boosting the propellant gas pressure by applying municipal water pressure upon the water being propelled;
- (d) exhausting used propellant carbon dioxide gas into the so-propelled flat water; and
- (e) mixing the used propellant gas and so-propelled water and forming carbonated water therefrom; and
- (f) storing and dispensing this carbonated water under the storage pressure.
- 2. A method according to claim 1, including the further step of exhausting the used propellant gas directly into the water as the water is being propelled by, and as the water is under, both of the propellant gas and municipal water pressures.
- 3. A method according to claim 1, including the further step of totaling the propellant gas pressure and municipal water pressure to a predetermined gross propellant pressure.
- 4. A method according to claim 3, including the further steps of applying the full entirety of the municipal water pressure upon the water being propelled; and adjusting the pressure of the carbon dioxide propellant gas to a minimal value which in combination with the full municipal water pressure equals the predetermined gross propellant pressure.
- 5. A method according to either of claims 1, 2 or 3, including the further steps of
- (a) cooling the propelled water and exhausting the used carbon dioxide gas into direct contact with the propelled water after it has been cooled,
- (b) restricting the flow of the cooled water and exhausted gas while they are together, and
- (c) propelling the cooled water and the exhausted gas commonly and concurrently through the restriction with both of the propellant gas pressure and municipal water pressure in combination.
- 6. A method according to claim 1, including the further step of subsequently propelling the municipal water which was previously used during boosting, as initially flat water into the carbonator.
- 7. A method of making and dispensing carbonated water, comprising the steps of
- (a) propelling initially flat water into a carbonator, said propelling being done at least partially with carbon dioxide gas at a predetermined pneumatic propellant pressure;
- (b) pressurizing the carbonator with carbon dioxide gas at a predetermined storage pressure, said storage pressure being less than the propellant pressure;
- (c) exhausting used carbon dioxide propellant gas into direct contact with propelled water prior to entry of the water into the carbonator;
- (d) admitting the used carbon dioxide propellant gas and propelled water commonly together and while in direct contact with one another, into the carbonator;
- (e) mixing the propelled water and used propellant gas and forming carbonated water therefrom;
- (f) storing and dispensing the so-carbonated water under the storage pressure.
- 8. A method according to claim 7, including the further steps of
- unobstructively introducing the exhausted propellant gas into direct contact with the propelled water;
- turbulently agitating the water and exhausted gas together while confining them in direct contact with one another;
- restricting the flow of both the water and the exhausted gas after they have been so-agitated, and backing up the pressure of both the propelled water and the exhausted gas so that the water and gas are under this backed up pressure during the step of turbulent agitating.
- 9. A method according to either of claims 7 or 8 in which the flat water is propelled while in an uncooled state, and including the further step of cooling the water prior to its coming in direct contact with the exhausted propellant gas.
- 10. A method according to either of claims 7 or 8, including the further step of automatically venting excess used propellant gas from the carbonator after common admittance of the gas and the propelled water into the carbonator, for maintaining the predetermined storage pressure.
- 11. A method of dispensing water, comprising the steps of:
- (a) propelling initially flat water into a carbonator, said propelling being done at least partially with carbon dioxide gas at a predetermined pneumatic propellant pressure;
- (b) pressurizing the carbonator with carbon dioxide gas at a predetermined storage pressure, said storage pressure being less than the propellant pressure;
- (c) exhausting used carbon dioxide propellant gas into the so-propelled water;
- (d) mixing the propelled water and exhausted carbon dioxide and forming carbonated water therefrom;
- (e) storing and dispensing the carbonated water under the storage pressure;
- (f) selectively diverting at least part of the water being propelled prior to it making direct contact with the exhausted propellant gas;
- (g) routing the diverted water to be dispensed; and
- (h) exhausting the used propellant carbon dioxide into the carbonator during such diverting.
- 12. A method according to claim 11, including the further step of propelling uncooled water, and cooling the propelled water prior to selective diversion.
- 13. A method according to claim 11, including the further step of selectively diverting the entire flow of propelled water, and routing this entire flow to be dispensed.
- 14. A method according to claim 11, including the further step of venting the exhausted propellant gas from the carbonator during the selective diversion.
- 15. Apparatus for making and dispensing carbonated water, comprising
- (a) a pneumatically powerable water pump having a water inlet connectible to a source of flat water, a water outlet, a gas inlet, a gas outlet, and means for pneumatically propelling water while physically separating the water from the gas;
- (b) a carbonator having an inlet, and an outlet connected to a dispensing nozzle;
- (c) a propelled water conduit connecting the pump water outlet to the carbonator inlet;
- (d) a gas conduit connectible to a source of pressurized carbon dioxide gas, and having
- (1) a first outlet connected to the pump gas inlet,
- (2) propellant regulator means for regulating a predetermined pneumatic propellant pressure at said pump gas inlet,
- (3) a second outlet connected to the carbonator, and
- (4) storage regulator means for regulating a predetermined pneumatic storage pressure within the carbonator;
- (e) means in said propelled water conduit for cooling flow of water therethrough; and
- (f) a propellant gas exhaust conduit connecting the pump gas outlet to the propelled water conduit upstream of the carbonator and downstream of the cooling means, said exhaust conduit having means for precluding reverse flow of exhausted gas back into the pump. ice.
- 16. Apparatus according to claim 15, in which the propelled water conduit is fluidly connected to a restrictor orifice in the carbonator, and in which the propellant gas exhaust conduit is connected upstream of the restrictor orifice.
- 17. Apparatus according to claim 16, in which said restrictor comprises a spray nozzle in common fluid communication with both of the exhaust gas conduit and the propelled water conduit, for common concurrent admittance of exhaust gas and water to the carbonator.
- 18. Apparatus according to either of claims 15 or 16 in which the propelled water conduit includes a normally closed valve in between the cooling means and the propellant gas conduit connection.
- 19. Apparatus according to claim 18, including a flat water dispensing conduit having therein a normally closed valve and an inlet end fluidly connected to the propelled water conduit between the normally closed valve and the cooling means.
- 20. A method of making and dispensing carbonated water, comprising the steps of
- (a) propelling initially flat water into a carbonator, said propelling being done at least partially with carbon dioxide gas at a predetermined pneumatic propellant pressure;
- (b) pressurizing the carbonator and the water therewithin with carbon dioxide gas at a predetermined equilibrium storage pressure, said storage pressure being less than the propellant pressure and being at an equilibrium pressure for a desired quantity of carbonation within the water;
- (c) cooling the propelled water prior to admitting it into the carbonator;
- (d) exhausting used carbon dioxide propellant gas into direct contact with the cooled water prior to admitting either of the water or the exhausted gas into the carbonator;
- (e) mixing the cooled water and exhausted carbon dioxide propellant gas together under a pressure which is in between the propellant and storage pressures and which is substantially greater than the equilibrium storage pressure;
- (f) commonly admitting the exhausted propellant gas and cooled water into the carbonator by commonly spraying them into and through the storage carbon dioxide gas and attaining the desired quantity of carbonation; and
- (g) storing and dispensing the carbonated water under the equilibrium storage pressure.
- 21. A method according to claim 20, including the further steps of exhausting all used propellant carbon dioxide gas into the cooled water, and mixing all of exhausted gas with all of the cooled water, commonly admitting all of the exhausted gas and cooled water into the carbonator, and venting any excess used propellant gas from the carbonator so that the equilibrium storage pressure is maintained.
- 22. Apparatus for making and dispensing carbonated water, comprising
- (a) a pneumatically powerable water pump having a water inlet connectible to a source of flat water, a water outlet, a gas inlet, a gas outlet, and means for pneumatically propelling water while physically separating the water from the gas;
- (b) a carbonator having an inlet, an outlet connected to a dispensing nozzle, and level control means for controlling the level of water within the carbonator at a level less than the height of the carbonator with there being a gas space above the water;
- (c) a propelled water conduit connecting the pump water outlet to the carbonator inlet, said conduit having a normally closed valve which is operatively and controllably connected to said level control;
- (d) a gas conduit connectible to a source of pressurized carbon dioxide gas, and having
- (1) a first outlet connected to the pump gas inlet,
- (2) propellant regulator means for regulating a predetermined pneumatic propellant pressure at said pump gas inlet,
- (3) a second outlet connected to the carbonator, and
- (4) storage regulator means for regulating a predetermined pneumatic storage pressure within the carbonator and on the water therein;
- (e) means in said propelled water conduit for cooling flow of water therethrough;
- (f) a propellant gas exhaust conduit fluidly connecting the pump gas outlet to the carbonator, said exhaust conduit having means for precluding reverse flow of exhausted gas back into the pump; and
- (g) means in fluid communication with the carbonator for venting any and all excess exhausted propellant gas therefrom.
- 23. Apparatus according to claim 22, in which the propellant gas exhaust conduit is fluidly connected to the propelled water conduit immediately downstream of the water conduit valve.
- 24. Apparatus according to either of claims 22 or 23, in which said cooling means is upstream of said water conduit valve, and including a flat water line fluidly connecting the pump water outlet via the cooling means to a normally closed flat water dispensing valve.
- 25. Apparatus for making and dispensing carbonated water, comprising
- (a) a pneumatically powerable water pump having a water inlet connectible to a source of flat water, a water outlet, a gas inlet, a gas outlet, and means for pneumatically propelling water while physically separating the water from the gas;
- (b) a carbonator having an inlet, and an outlet connected to a dispensing nozzle;
- (c) a propelled water conduit connecting the pump water outlet to the carbonator inlet and having valve means for allowing flow of water into the carbonator and for precluding reverse flow from the carbonator to the water pump;
- (d) a gas conduit connectible to a source of pressurized carbon dioxide gas, and having
- (1) a first outlet connected to the pump gas inlet,
- (2) propellant regulator means for regulating a predetermined pneumatic propellant pressure at said pump gas inlet,
- (3) a second outlet in fluid communication with the carbonator, and
- (4) storage regulator means for regulating a predetermined pneumatic storage pressure within the carbonator;
- (e) a propellant gas exhaust conduit fluidly connecting the pump gas outlet to the carbonator, said exhaust conduit having means for precluding reverse flow of exhausted gas back into the pump;
- (f) a flat water conduit connecting the propelled water conduit from upstream of the valve means, to means for dispensing flat water;
- (g) means in fluid communication with the carbonator for venting used propellant carbon dioxide gas during dispensing of flat water.
- 26. Apparatus according to claim 25, including cooling means fluidly common to both of the propellant water conduit valve means and the flat water conduit.
- 27. A method of making and dispensing carbonated water, comprising the steps of
- (a) propelling initially flat water into an atmosphere of carbon dioxide gas which is substantially devoid of the other gaseous constituents of atmospheric air, said propelling being done with and under the pressure of a quantity of propellant carbon dioxide gas which is in excess of a required quantity for a desired level of carbonation in the water and which is at a predetermined propellant pressure;
- (b) exhausting the carbon dioxide gas after it has been used as the propellant, into direct and intimate contact with the propelled water;
- (c) mixing the propelled water and exhausted propellant gas together while in intimate contact with each other, and forming carbonated water therefrom with the required quantity of carbon dioxide gas being taken into solution by the water;
- (d) degassing the propelled water at least partially of its entrained gaseous constituents other than carbon dioxide during the step of mixing;
- (e) venting the excess carbon dioxide gas and the degassed gaseous constituents to ambient; and
- (f) storing and dispensing the carbonated water under and in exposure to said atmosphere and at a storage pressure which is substantially less than the propellant pressure and which is at an equilibrium pressure for the desired level of carbonation.
- 28. A method according to claim 27, including the further steps of
- (a) firstly mixing and degassing at a pressure above the storage pressure and below the propellent pressure, and then
- (b) discretely mixing and degassing at the storage pressure.
- 29. A method according to claim 27, including the further steps of
- (a) diverting propelled water to be dispensed as flat water;
- (b) exhausting the carbon dioxide gas after it has been used as propellent for the dispensed flat water, into direct contact with the stored carbonated water; and
- (c) purging the storage atmosphere with this used propellent carbon dioxide gas while simultaneously dispensing the flat water.
- 30. Apparatus for making and dispensing carbonated water, comprising
- (a) a pneumatically powerable variable speed and output water pump having a water inlet connectable to a source of flat water, a water outlet, a gas inlet, a gas outlet, and means for pneumatically propelling water while physically separating the water from the gas;
- (b) a carbonator having an inlet, and an outlet connected to a dispensing nozzle;
- (c) a propelled water conduit connecting the pump water outlet to the carbonator inlet, said conduit having valve means for allowing flow of water into the carbonator and for precluding reverse flow from the carbonator to the water pump;
- (d) a gas conduit connectable to a source of pressurized carbon dioxide gas, and having
- (1) a first outlet connected to the pump gas inlet,
- (2) propellant regulator means for regulating a predetermined pneumatic propellant pressure at said pump gas inlet,
- (3) a second outlet in fluid connection with the carbonator, and
- (4) storage regulator means for regulating a predetermined pneumatic storage pressure within the carbonator;
- (e) a propellant gas exhaust conduit fluidly connecting the pump gas outlet to the carbonator, said exhaust conduit having means for precluding reverse flow of exhausted gas back into the pump;
- (f) a flat water conduit connected to means for dispensing flat water and to the propelled water conduit upstream of the valve means; and
- (g) a pair of volumetric flow controls operative for controlling the volumetric output and speed of the pump, with the first such control being in the flat water conduit and the second control being in the propelled water conduit downstream of the connection of the flat water conduit thereto.
- 31. Apparatus according to claim 30 including a dispenser restrictor line between the carbonator and the dispensing nozzle, and in which the first control has a volumetric flow rate at least equal to the restrictor line flow rate, and in which the second control has a flow rate substantially less than the restrictor line flow rate.
- 32. Apparatus according to either of claims 30 or 31 having a normally closed carbonated water valve between the carbonator outlet and the dispensing nozzle, and including means for automatically venting gases from the carbonator while either of the carbonated water valve or the means for dispensing flat water is opened.
- 33. Apparatus according to claim 32, in which the propellant gas exhaust conduit is connected to the propelled water conduit upstream of a turbulator within the water conduit, for purging the gases in the turbulator and carbonator during dispensing.
RELATED APPLICATIONS
This application is a co-pending continuation application of our U.S. Ser. No. 116,374 filed Jan. 29, 1980, now abandoned.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
20478 OF |
Jan 1894 |
GBX |
Continuations (1)
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Number |
Date |
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Parent |
116374 |
Jan 1980 |
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