Infusion/mixer pump system—pump with integrated gas liquid mixing valve in an enclosure
12544722 · 2026-02-10
Assignee
Inventors
- Akshaykumar Patel (Santa Ana, CA, US)
- Derrick Tran (Yorba Linda, CA, US)
- Humberto V. Meza (Trabuco Canyon, CA, US)
Cpc classification
B01F23/2363
PERFORMING OPERATIONS; TRANSPORTING
B01F23/2362
PERFORMING OPERATIONS; TRANSPORTING
B01F2101/14
PERFORMING OPERATIONS; TRANSPORTING
B01F23/236
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01F23/236
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An integrated infuser/mixer pump system features a liquid inlet configured to receive a liquid drawn from a liquid source, a gas inlet configured to receive an inlet gas from a gas source, a pump and motor combination configured to received the liquid and provide pumped liquid, a gas/liquid mixture chamber configured to receive the pumped liquid and the inlet gas, and mix the liquid and the inlet gas into a gas-infused mixture, and a gas-infused mixture outlet configured to provide the gas-infused mixture; the gas inlet having a gas liquid mixing valve with a mixing orifice that has a mixing orifice size dimensioned to provide the inlet gas to the gas/liquid mixture chamber with an inlet gas volumetric flow rate in order to mix the pumped liquid and the inlet gas with a predetermined mixture ratio that depends on the mixing orifice size.
Claims
1. A pump system comprising: an integrated infuser/mixer pump system having a pump manifold with a liquid inlet port configured to receive a liquid drawn from a liquid source; a gas inlet port having an inner cylindrical surface, and being configured to receive an inlet gas from a gas source; a pump motor and pump head combination having a pump head and a pump motor and being configured to receive the liquid and provide pumped liquid; a gas/liquid mixture chamber formed inside the gas inlet port and configured to receive the pumped liquid and the inlet gas, mix the liquid and the inlet gas and provide a gas-infused mixture; and a gas-infused mixture chamber outlet port configured in relation to the gas/liquid mixture chamber to provide the gas-infused mixture; and a gas inlet fitting formed as a separate component from the pump manifold and installed directly into the inner cylindrical surface of the gas inlet port of the pump manifold, the gas inlet fitting having a gas liquid mixing valve configured inside the gas inlet fitting and being replaceable, the gas liquid mixing valve having a mixing orifice with a mixing orifice size dimensioned to provide the inlet gas to the gas/liquid mixture chamber with an inlet gas volumetric flow rate in order to mix the pumped liquid and the inlet gas with a predetermined mixture ratio that depends on the mixing orifice size.
2. The pump system according to claim 1, wherein the gas liquid mixing valve is configured to screw into and out of the inner cylindrical surface of the gas inlet fitting using a threaded combination.
3. The pump system according to claim 1, wherein the gas inlet fitting comprises a check valve arranged between the gas/liquid mixture chamber and the gas liquid mixing valve and configured to prevent backflow of the pumped liquid or the gas-infused mixture.
4. The pump system according to claim 1, wherein the gas-infused mixture is a beverage; the gas includes nitrogen (N2), or carbon dioxide (CO2) or an N2 and CO2 mixture; and the beverage includes an N2 infused beverage, or a CO2 infused beverage, or a blended N2 and CO2 infused beverage.
5. The pump system according to claim 1, wherein the gas-infused mixture is a beverage; the pumped liquid includes coffee, tea, milk, beer, soda, juice, water, beer, wine, or spirit; and the beverage includes a gas-infused coffee, tea, milk, beer, soda, juice, water, beer, wine or spirit beverage.
6. The pump system according to claim 1, wherein the pump motor and pump head combination is configured to draw the liquid and provide the pumped liquid at a higher pressure.
7. The pump system according to claim 1, wherein the integrated infuser/mixer pump system comprises a pressure switch configured to sense the pressure of the pumped liquid and turn off the pump if the pumped liquid exceeds a sensed pressure threshold.
8. The pump system according to claim 1, wherein the liquid inlet port is configured to attach a quick disconnection to receive the liquid; the gas inlet fitting is configured to attach a corresponding quick disconnection to receive the inlet gas; and the gas-infused mixture chamber outlet port is configured to attach an associated quick disconnection to provide the gas-infused mixture.
9. The pump system according to claim 1, wherein the integrated infuser/mixer pump system is arranged, enclosed and contained in a box or pump enclosure.
Description
BRIEF DESCRIPTION OF THE DRAWING
(1) The drawing, which is not necessarily drawn to scale, includes the following Figures:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9) Similar parts or components in Figures are labeled with similar reference numerals and labels for consistency. Every lead line and associated reference label for every element is not included in every Figure of the drawing to reduce clutter in the drawing as a whole.
DETAILED DESCRIPTION OF THE INVENTION
(10)
(11) By way of example,
(12) By way of further example,
(13)
(14) In
(15)
FIGS. 6 and 7
(16)
(17) For example,
(18) For example,
The Basic Operation
(19) In operation, the pump head 32 generates suction to draw in liquid from a container like elements 60b, 70a through the liquid inlet port like elements 12, 36. The pump head 32 drives the liquid to a higher pressure and pushes it out to a discharge side of the pump. In the discharge area, the liquid passes through a pressure switch like elements 60e, 70c, depending on the pressure switch setting it can turn the pump on/off. In the discharge area, the liquid gets mixed with the gas coming through the fixed mixing orifice 54 of the integrated gas liquid mixing valve 52. The mixture ratio is controlled by the size of the fixed mixing orifice 54, e.g. installed in the gas inlet fitting 50. For example, if a different mixture ratio is required, then the integrated gas liquid mixing valve 52 having the fixed mixing orifice 52 can be removed and replaced with a different integrated gas liquid mixing valve 52 having a different fixed mixing orifice 54 having a different sized orifice to achieve the desired mixture ratio. The gas-infused mixture exits the pump system 30 through the gas-infused mixture outlet or port 40 (and the gas-infused mixture outlet or port 14 of the box or pump enclosure 10, if used) on to the dispense point like elements 60g, 70e.
(20) The liquid stored in the container can be pressurized, packed in BIB, or can be stored in an open container. Depending on the type of container, one can use an appropriate vacuum or float switch input sensing device for liquid detection as shown in
List All Possible Applications
(21) The infusion pump can be used for gas (N2, CO2, N2+CO2) infused beverages such as coffee, tea, milk, soda, juice, water, beer, wine, spirit, etc. This pump can also be used to mix different gases and liquids to a desired ratio for industrial process applications.
Liquid and Gas Pressure Sensors and Other Devices
(22) Liquid and gas pressure sensors are known in the art, and the scope of the invention is not intended to be limited to any particular type or kind thereof either now known or later developed in the future.
(23) Motor driven pumps, infusion tank/vessels, etc. are also known in the art, and the scope of the invention is not intended to be limited to any particular type or kind thereof either now known or later developed in the future.
(24) Vacuum and float switches are known in the art, and the scope of the invention is not intended to be limited to any particular type or kind thereof either now known or later developed in the future.
The Basic Pump Manifold Configuration
(25) See US 2016/0017882 A1, which corresponds to patent application Ser. No. 14/740,577, filed 16 Jun. 2015 (911-005.075-2 (F-FLJ-X0011US01), which claims benefit to provisional application No. 62/012,526, filed 16 Jun. 2014, which discloses an example of a basic pump manifold configuration having a pump motor and pump head combination, and which are all incorporated by reference in their entirety. In summary, the basic pump manifold combination is configured with a pump head having a diaphragm pump driven by the pump motor to move liquid from a liquid inlet, through inlet channels, through the pump head, through outlet channels, and out a liquid outlet.
The Scope of the Invention
(26) The embodiments shown and described in detail herein are provided by way of example only; and the scope of the invention is not intended to be limited to the particular configurations, dimensionalities, and/or design details of these parts or elements included herein. In other words, one skilled in the art would appreciate that design changes to these embodiments may be made and such that the resulting embodiments would be different than the embodiments disclosed herein, but would still be within the overall spirit of the present invention.
(27) It should be understood that, unless stated otherwise herein, any of the features, characteristics, alternatives or modifications described regarding a particular embodiment herein may also be applied, used, or incorporated with any other embodiment described herein.
(28) Although the invention has been described and illustrated with respect to exemplary embodiments thereof, the foregoing and various other additions and omissions may be made therein and thereto without departing from the spirit and scope of the present invention.