Method for refining spirits
The use of microstaves in a rapid spirits maturation processor addresses the inconsistency of existing aging methods by achieving controlled and efficient flavor development in spirits within a short timeframe, reducing ethanol loss and enhancing flavor customization.
Patent Information
- Application Number
- JP2022553592
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-03-05
- Filing Date
- 2021-03-04
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2041-03-04
AI Technical Summary
Existing methods to accelerate the aging of spirits are inconsistent and fail to achieve controlled results, and standard barrel-based aging processes are inefficient and prone to ethanol leakage and evaporation.
The use of microstaves, which are smaller pieces of wood processed to specific dimensions and treated to impart flavor, in a rapid spirits maturation processor that controls temperature, pressure, and gas composition to achieve desired flavors within a short period, typically less than 25 days.
Enables consistent and controlled rapid aging of spirits, reducing the need for lengthy barrel aging and minimizing ethanol loss, while allowing for customizable flavor profiles and efficient use of resources.
Smart Images

Figure 0007797018000001 
Figure 0007797018000002 
Figure 0007797018000003
Abstract
Description
[Technical Field]
[0001] This application claims the benefit of priority to U.S. Provisional Patent Application No. 62 / 985,706, entitled "Methods for Spirits Refining," filed March 5, 2020, the entire contents of which are incorporated herein by reference for all purposes. [Background technology]
[0002] Standard processes for aging spirits or other products typically involve placing the spirit or other product in a barrel, such as an oak barrel, and keeping it in contact with the interior surfaces of the barrel for a period of time. These standard processes may involve treating the barrel itself, such as by charring, in an attempt to impart a desired flavor to the spirit or other product.
[0003] Some attempts have been made to accelerate the aging of spirits so that aging occurs more quickly than the standard process, however, these attempts have not been shown to consistently accelerate the aging process so that controlled results can be achieved. Summary of the Invention [Problem to be solved by the invention]
[0004] The systems, methods, and devices of various embodiments may enable the aging of spirits and other products. Various embodiments may be suitable for use in spirits refining operations.
[0005] Various embodiments may allow for the creation of a dispersion of spirit flavors from an input batch of spirits. In various embodiments, used microstaves may be reused and / or resold for other purposes. Various embodiments may allow for upgrading spirit products for higher value or better marketability. Various embodiments may allow for taste fingerprinting. Various embodiments include small-scale implementations of rapid spirits aging processes. Various embodiments include large-scale implementations of rapid spirits aging processes. Various embodiments may be used for barrel-based or fermentation-based rapid spirits aging processes and products. Various embodiments allow for the rapid aging of non-spirits products that are typically aged in barrels, or the rapid creation of non-spirits products that require fermentation.
[0006] Various embodiments may include methods including creating a spirit flavor dispersion from a single batch of spirit. Various embodiments may include methods including reusing microstaves already used in rapid spirits maturation for non-rapid spirits maturation purposes. Various embodiments may include methods including using rapid spirits maturation to upgrade a spirit to a higher value or more marketable spirit. Various embodiments may include methods for user taste fingerprinting. Various embodiments may include methods including using a rapid spirits maturation processor at a distillery. Various embodiments may include methods including using a rapid spirits maturation processor at a farm. Various embodiments may include methods including using a rapid spirits maturation processor for flavoring, aging, creating, and / or refining any typical barrel-based and / or fermentation-based product.
[0007] Various embodiments may include a mobile rapid spirits maturation processor.
[0008] Various embodiments may include capsules containing a spirit concentrate that, when blended with a liquid, creates the desired end product.
[0009] Various embodiments may include wood concentrates that, when diluted with water or neutral spirits, produce flavored spirits.
[0010] Various embodiments may include a beverage dispensing system in which water or neutral spirits is diluted through a wood concentrate to output flavored spirits.
[0011] Various embodiments may include aging units designed for on-site use, such as in hotels, bars, homes, etc., as described herein.
[0012] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate exemplary aspects of the claimed subject matter and, together with the foregoing summary and the following detailed description, serve to explain the claimed subject matter. [Brief explanation of the drawings]
[0013] [Figure 1A] FIG. 1 is a block diagram illustrating aspects of a rapid spirits aging processor, according to various embodiments. [Figure 1B] FIG. 1 is a block diagram illustrating aspects of a mobile rapid spirits aging processor, according to various embodiments. [Figure 2A] FIG. 1 is a block diagram illustrating an example of a rapid spirits maturation processor for use in a distillery, according to various embodiments. [Figure 2B] FIG. 1 is a block diagram illustrating an example of a rapid spirits maturation processor for on-farm use, according to various embodiments. [Figure 3A] 1 is a block diagram illustrating aspects of a capsule, according to various embodiments. [Figure 3B] 1 is a block diagram illustrating aspects of a capsule, according to various embodiments. [Figure 3C] 1 is a block diagram illustrating aspects of a capsule, according to various embodiments. [Figure 3D]FIG. 1 is a block diagram illustrating aspects of an aging unit designed for on-site use, according to various embodiments. [Figure 3E] FIG. 1 is a block diagram illustrating aspects of an aging unit designed for on-site use, according to various embodiments. [Figure 4] 1 is a block diagram illustrating aspects of a beverage dispensing system, according to various embodiments. [Figure 5A] FIG. 1 is a process flow diagram illustrating a method according to various embodiments. [Figure 5B] FIG. 1 is a process flow diagram illustrating a method according to various embodiments. [Figure 5C] FIG. 1 is a process flow diagram illustrating a method according to various embodiments. [Figure 5D] FIG. 1 is a process flow diagram illustrating a method according to various embodiments. [Figure 5E] FIG. 1 is a process flow diagram illustrating a method according to various embodiments. DETAILED DESCRIPTION OF THE INVENTION
[0014] Various aspects will be described in detail with reference to the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts. References to specific examples and implementations are for illustrative purposes only and are not intended to limit the scope of the claims.
[0015] As used herein, the term "aged" may refer to a spirit that has been transformed from raw (or unrefined) spirit toward a state with one or more selected profile characteristics, such as aroma, color, or flavor. Such transformation may be referred to as "aging" or "maturing." Generally, such maturation of spirits has been achieved through a typical barrel-based aging process. Matured spirits may also be referred to as "aged spirits." As discussed herein, aged spirits (or maturing or maturing) may be achieved over different time frames, and the term aged (or maturing or maturing) when used in connection with various embodiments is not intended to denote any particular time period, nor is it intended to limit the scope of the various embodiments or claims to any particular time period.
[0016] As used herein, the term "microstaves" may refer to smaller pieces of wood that have been processed (e.g., cut, chopped, carved, etc.) from larger pieces of wood such that the resulting smaller pieces of wood (i.e., microstaves) have cubic dimensions of approximately 20 mm x 20 mm x 100 cm or less and greater than approximately 0.05 mm x 0.05 mm x 0.05 mm. Stated differently, a microstave may be a processed (e.g., cut, chopped, carved, etc.) wood structure that fits entirely within a rectangular volume of 20 mm x 20 mm x 100 cm, but does not fit entirely within a rectangular volume of 0.09 mm x 0.09 mm x 0.09 mm. A microstave may be processed (e.g., cut, chopped, carved, etc.) from a larger piece of wood such that the volume and surface area of the wood piece that is the microstave are controlled to achieve a selected volume and surface area, thereby allowing for controlled and uniform extraction of the wood components by the spirit. Although the term "micro" is used herein as part of a "micro stave," the term "micro" is not used in its metric prefix sense as part of a "micro stave," but rather is a descriptor indicating that the "micro staves" described herein are smaller than the staves used in typical wine or spirits barrels, which tend to be about 10 mm x 60 mm x 1000 mm or larger.
[0017] As used herein, the term "toasted" refers to a state of a wood product, such as a microstave, in which the wood product is exposed to heat, thereby pyrolyzing the cellulose, hemicellulose, and lignin in the wood that forms the wood product, without the accumulation of visible char on the exterior surface of the wood. A toasted wood product may have been heated to cause some decomposition of the wood surface, without a combustion reaction occurring on the wood surface that would result in a visible carbon residue (e.g., a char layer). Toasting, as described herein, may be performed so that the entire volume of the wood is uniformly altered and decomposed. Toasting may be performed in an oven, and may take a period of several minutes to several hours to achieve the toasted state of the wood product.
[0018] As used herein, the term "charred" refers to a state of a wood product, such as a microstave, in which the cellulose, hemicellulose, and lignin in the wood are pyrolyzed at least at some point, resulting in the accumulation of visible char on the outer surface of the wood. A charred wood product may have been heated such that any combustion reaction occurring on the wood surface results in visible carbon residue (e.g., a char layer). Such resulting visible carbon residue (e.g., a char layer) may be thin, down to a thickness of only a few microns (e.g., 2 microns) on the surface of the charred wood product. At least the surface of a wood product need not exhibit visible carbon residue (e.g., charring) to be considered a charred wood product; thus, as long as a portion of the surface of the wood product exhibits visible carbon residue (e.g., charring), the wood product is a charred wood product. In contrast, a toasted wood product may not exhibit visible carbon residue (e.g., charring). Charring as described herein can be carried out to gradient the alteration and decomposition of the wood by the very high temperatures at the surface being charred. Charring may be done with a heat source such as a gas flame / torch, IR heater, etc., and can take from a few seconds to a few minutes to achieve the charred state of the wood product.
[0019] Various embodiments relate to a process for aging spirits or other products in which the spirits or other products are placed in a container, such as an oak barrel, and kept in contact with the interior surfaces of the container, such as an oak barrel, for a period of time. In a typical process, the barrel may be treated with a process such as charring to impart a desired flavor to the product.
[0020] Several methods attempt to accelerate the aging of spirits through various means. Some methods use heating in the presence of light, others introduce ultrasonic energy. Heat, steam injection, and pressure may also be used. None of these methods have been shown to consistently accelerate the aging process so that controlled results can be achieved.
[0021] In various embodiments, a single feedstock may be used to create a distribution of spirit products with different flavors. The single feedstock may be processed through a rapid spirits aging process to achieve the different flavors. As used herein, a rapid spirits aging process may be a process in which spirits are aged to achieve a desired flavor and / or taste within a period of less than 25 days, such as 3-25 days or less, 3-5 days or less, less than 10 hours, or a period of a few hours, such as 1 hour.
[0022] Rapid spirits maturation according to various embodiments may be carried out in a rapid spirits maturation processor, which may be a device, system, or structure that includes a vessel (or container), such as a steel vessel, in which spirits, such as raw spirits or discarded spirits, are rapidly aged to create an aged spirit.
[0023] 1A shows a rapid spirits maturation processor 100 according to various embodiments. The rapid spirits maturation processor 100 may include a vessel 102 (or container), such as steelware, in which spirits 106, such as raw spirits or discarded spirits, are rapidly aged to create an aged spirit. The vessel 102 of the rapid spirits maturation processor 100 may be sealed with a lid 103. The vessel 102 may include a volume of the vessel 106 and a headspace 104 containing a gas or gaseous mixture (e.g., air, pure oxygen, a mixture of air and added oxygen, nitrogen, etc.). The rapid spirits maturation processor 100 may include various systems, such as a heating system 112 (e.g., including one or more heating elements and temperature sensors, etc.) configured to control the temperature of the vessel 102 and / or the spirits 106; an air delivery / removal system 114 (e.g., including one or more valves and a gas (e.g., air, oxygen, etc.)) configured to add and / or remove gas between the vessels 102, thereby controlling the gaseous mixture in the headspace 104 and / or the pressure within the vessel 102; a mixing system 116 (e.g., a motorized stirrer) configured to agitate the spirits 106 within the vessel 102; a filtration system 110 (e.g., including an activated carbon filter or other type of filter) configured to collect vapors from the vessel 102, such as when the vessel 102 is in use and / or when it is opened, or other types of systems. The various systems of the rapid spirits maturation processor 100 (e.g., heating system 112, air delivery / removal system 114, mixing system 116, filtration system 110, etc.) may be connected (e.g., wired and / or wirelessly) to a controller 117 (e.g., a computer or dedicated control logic device or circuitry) configured to monitor the conditions of the rapid spirits maturation processor 100 and / or control the operation of the various systems of the rapid spirits maturation processor 100 (e.g., heating system 112, air delivery / removal system 114, mixing system 116, filtration system 110, etc.).The controller 117 may communicate, either directly or indirectly, with other systems / components within the rapid spirits maturation processor 100 and / or with one or more remote control terminals 118 .
[0024] In some embodiments, one or more remote control terminals 118 may be connected to the controller 117 (e.g., by wired and / or wireless connection). The one or more remote control terminals 118 may be computing devices through which an operator may interact with the rapid spirits aging processor 100. Alternatively, or additionally, the controller 117 may include its own user interface (e.g., a display and / or keypad, etc.), and an operator may interact directly with the controller 117 via the user interface.
[0025] In some implementations, micro-staves 108 may be added to the vessel 102 of the rapid spirits maturation processor 100 along with the spirits 106 to achieve rapid maturation, and variables such as the temperature, pressure, air concentration, oxygen level, etc. of the vessel 102 may be controlled to achieve a desired output of matured spirits 106. For example, the controller 117 may control various systems of the rapid spirits maturation processor 100 (e.g., the heating system 112, the air delivery / removal system 114, the mixing system 116, the filtration system 110, etc.) to achieve a selected temperature, pressure, air concentration, oxygen level, etc. in the vessel 102 that corresponds to a desired output of matured spirits 106 indicated by an operator via a remote control terminal 118 and / or a user interface of the controller 117.
[0026] In various embodiments, the micro staves 108 may not be toasted. Untoasted micro staves may be formed from wood that has been dried (e.g., dried for a specific period of time, such as 6-48 months). Untoasted micro staves may not be toasted or charred. In various embodiments, the micro staves 108 may be toasted. Toasted micro staves may be formed from wood that has been toasted prior to forming the micro staves. The wood may or may not be dried. In various embodiments, the micro staves 108 may be charred. Charred micro staves may be formed by charring toasted micro staves and / or by charring untoasted micro staves. In some implementations, micro staves 108 may be added to the vessel 102 of the rapid spirits maturation processor 100 along with the spirits 106 to achieve rapid maturation, and variables such as vessel temperature, pressure, air concentration, oxygen level, etc. may be toasted micro staves, untoasted micro staves, and / or charred micro staves.
[0027] FIG. 1B illustrates a mobile rapid spirits aging processor 130 according to various embodiments. Referring to FIGS. 1A-1B, the mobile rapid spirits aging processor 130 may be similar to the mobile rapid spirits aging processor 100, except that the mobile rapid spirits aging processor 130 may be configured to be moved from one location to another. For example, the mobile rapid spirits aging processor 130 may be disposed on a platform 140 including wheels 142 that allow the mobile rapid spirits aging processor 130 to be moved within a facility and / or from one facility to another. In various embodiments, the mobile rapid spirits aging processor 130 may be quickly installed at a location such as a distillery. The mobile rapid spirits aging processor 130 may include one or more quick plumbing connections 145, 146, such as food-grade quick connect fittings. For example, one quick plumbing connection 146 may be configured to couple the vessel 102 of the mobile rapid spirits maturation processor 130 to a line for providing / receiving spirits. As another example, one quick plumbing connection 145 may be configured to couple the vessel 102 of the mobile rapid spirits maturation processor 130 to a gas line (e.g., an air line, an oxygen line, etc.). The mobile rapid spirits maturation processor 130 may include a fault detection system such as a leak detection system 141 (e.g., a float sensor, a liquid sensor, a gas sensor, etc.) or other type of fault detection system to ensure that no leaks that could cause product loss or flammable gas hazards are present before or during operation of the mobile rapid spirits maturation processor 130. The fault detection system may be connected to the controller 117 and may output a warning signal to the controller 117 in the event of a fault detection. The controller 117 and / or the remote control terminal 118 may output a warning indication to an operator in response to receiving the warning signal.
[0028] In various embodiments, a rapid spirits maturation processor (e.g., 100, 130, etc.) may be used to mature a batch of starting spirits 106 (e.g., input batch) from a first state to a desired end state (e.g., final batch).
[0029] Various embodiments may eliminate the so-called "angel's share" (i.e., evaporation during aging) from barrel aging, creating the advantage of eliminating the risk of black mold formation within the facility and on adjacent land. The rapid spirits aging process of embodiments may occur in a sealed vessel (e.g., vessel 102), which, combined with the short time periods associated with rapid spirits processing, such as 3-4 days, 3-20 days, or less than 25 days, may create advantages compared to the use of wooden barrels, which are subject to ethanol leakage and evaporation over the years of the aging process.
[0030] Various embodiments may include coupling various rapid spirits maturation processes and rapid spirits maturation processors (i.e., devices configured to implement rapid spirits maturation processes) to a distillery. FIG. 2A shows an example of a rapid spirits maturation processor 202 in use in a distillery 200, according to various embodiments. With reference to FIGS. 1A-2A, the rapid spirits maturation processor 202 may be any type of rapid spirits maturation processor, such as rapid spirits maturation processors 100, 130. Various embodiments may include coupling the rapid spirits maturation processor directly to the distillery 200, where a mass of product 205 (e.g., a mass of distilled raw spirits from a distillation system 203) enters one or more staged rapid spirits maturation processors 202, such as via a piping system 204. The number of rapid spirits maturation processors 202 may be such that the inputs and outputs of the rapid spirits maturation processors 202 are pseudo-continuous. For example, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, or 10 or more rapid spirits maturation processors 202 may be used in the distillery 200. A plumbing connection 206, such as connection 145 or other type of connection, may output the matured spirits from the rapid spirits maturation processor 202. Various embodiments may provide a tasting room in the distillery 200 to allow consumers to sample flavors, such as ages, of the current feedstock.
[0031] Various embodiments may include vertical integration of various rapid spirits-aging processes and rapid spirits-aging processors into a corn farm so that drying of the corn is no longer necessary, thus avoiding water waste. FIG. 2B is a block diagram illustrating an example of a rapid spirits-aging processor 202 in use on a farm 250 according to various embodiments. Referring to FIGS. 1A-2B, the rapid spirits-aging processor 202 may be any type of rapid spirits-aging processor, such as the rapid spirits-aging processors 100, 130. Various embodiments may include vertical farming of grain, on-site distillation, rapid spirits-aging process for aging and market distribution by the same vertically integrated farm 250, and then recycling the generated carbon dioxide back into the vertically integrated farm 250 to cover the consumption of electricity at the vertically integrated farm 250 for post-consumer microstave wood. An alternative embodiment includes using a standard farm 250 instead of a vertical farm and using regenerative agriculture methods to build biome strength in the soil (e.g., the soil of the field 254). As an example of the integration of a farm 250 with the rapid spirits maturation processor 202, Figure 2B shows that in one step 257, grain from a field 254 on the farm 250 may be provided to the distillation system 203. In step 258, a feedstock spirit obtained by distilling the grain may be provided to the rapid spirits maturation processor 202. In step 260, the matured spirit may be output from the rapid spirits maturation processor 202. In step 261, used microstaves (e.g., microstaves 108 after production of matured spirit) may be combusted to provide heat to the distillation system 203 and / or recycled back to the field 254.
[0032] Various embodiments include small-scale implementations of the rapid spirits aging process. For example, the rapid spirits aging processor 100, 130, etc. may be sized for on-site use, such as in a hotel, bar, home, etc. Various embodiments may include small capsules containing a concentrate of spirits, and blending these with water and / or alcohol to create the desired end product at the point of use.
[0033] 3A-3C show exemplary capsules (or containers) 300, 310, 315 according to various embodiments. Referring to FIGS. 1A-3C, capsule 300 of FIG. 3A may include an outer packaging 301, such as plastic, paper, or other type of packaging, that encapsulates wood concentrate 302. Capsule 310 of FIG. 3B may include an outer packaging 301 that encapsulates a combination of wood concentrate 302 and a liquid 312, such as spirits and / or water. Capsule 315 of FIG. 3C may include an outer packaging 301 that encapsulates a liquid 312, such as spirits and / or water.
[0034] In various embodiments, wood concentrate 302 may be wood, such as a microstave, that is not toasted (e.g., an untoasted microstave). In various embodiments, wood concentrate 302 may be wood, such as a microstave, that is toasted (e.g., a toasted microstave). Wood concentrate 302 may be dried or undried. In various embodiments, wood concentrate 302 may be wood, such as a microstave, that may be charred (e.g., a charred microstave). In some embodiments, wood concentrate 302 may be formed from one or more types of wood, such as one or more types of microstaves, which may be a combination of toasted wood, untoasted wood, and / or charred wood (e.g., a combination of toasted microstaves, untoasted microstaves, and / or charred microstaves).
[0035] Various embodiments may provide aging units designed for on-site use, such as in hotels, bars, homes, etc. Figures 3D and 3E are block diagrams illustrating aspects of aging units 350 and 370 designed for on-site use, according to various embodiments. Referring to Figures 1A-3E, for example, the aging units 350 and 370 may be rapid spirits aging processors similar to the rapid spirits aging processors 100 and 130 described above, configured to operate using capsules (or containers), such as the capsules 300, 310, and 315 described above. The aging units 350 and 370 may be countertop machines / appliances in some embodiments. The aging units 350 and 370 may include a housing 360 that encloses the vessel 102 and other components of the rapid spirits aging processors 100 and 130.
[0036] Wood and spirits may be sold and / or purchased in pre-filled capsules or containers (e.g., capsules 300, 310, and / or 315). FIG. 3D shows an embodiment in which the aging unit 350 is configured so that an operator (e.g., a customer / user) inserts a pre-filled capsule 351 (e.g., capsules 300, 310, and / or 315) directly into the aging unit 350, such as a capsule container 352, which opens the capsule and dispenses the wood concentrate and / or liquid (e.g., spirits and / or water) into the vessel 102. FIG. 3E shows an embodiment in which the aging unit 370 is configured so that an operator (e.g., a customer / user) opens a pre-filled capsule 371 (e.g., capsules 300, 310, and / or 315) and pours the wood concentrate and / or liquid (e.g., spirits and / or water) from the capsule 371 through a delivery tube 372 in the housing 360 into the vessel 102.
[0037] In various embodiments, the maturation units 350, 370 may receive inputs (e.g., type of spirit and wood (e.g., staves, chips, powder, etc.), temperature, time, selected recipe, etc.) similar to those described herein in connection with a rapid spirits maturation processor for a still. In various embodiments, the maturation units 350, 370 may output the aged spirit via a distribution system 354 (e.g., a distribution port, a dispensing pipe, etc.), etc. In various embodiments, the maturation units 350, 370 may produce a spirits volume of 0.5 to 50 liters. In various embodiments, all the customer / user needs to do is insert the spirit and wood (e.g., from a pre-filled capsule and / or by inserting the capsule itself), select a program, and run the maturation units 350, 370 for a few hours up to several days to produce spirits. The maturation units 350, 370 may be consumer / end-user units that provide the process controls (e.g., temperature, time, pH, conductivity, agitation, etc.) discussed above in connection with the rapid spirits maturation processors 100, 130.
[0038] Various embodiments may include producing a wood concentrate using a high wood to spirits volume ratio (e.g., 10:100) that can be diluted with water and / or neutral spirits to provide a ready-to-serve aged or flavored spirit (rum, whiskey, etc.) (like a soda gun in a bar in a similar manner to Cola® concentrate). This has advantages in the large cocktail beverage market. Various embodiments may include a beverage dispensing system in which water or neutral spirits is diluted through the wood concentrate to output the flavored spirit.
[0039] FIG. 4 is a block diagram illustrating aspects of a beverage dispensing system 400, according to various embodiments. Referring to FIGS. 1A-4, the beverage dispensing system 400 may be a type of rapid spirits aging processor similar to the rapid spirits aging processors 100, 130, 202, aging units 350, 370, etc., described above. The system 400 may include a housing 401 enclosing a neutral spirits chamber 402 and a water chamber 404. The neutral spirits chamber 402 is filled with neutral spirits 410 and is fluidly connected to a dispensing unit 406. The water chamber 404 is filled with water 412 and is fluidly connected to the dispensing unit 406. The dispensing unit 406 may include a controllable mixing valve 419 configured to receive the neutral spirits 410 and / or the water 412 from the neutral spirits chamber 402 and / or the water chamber 404. Controllable mixing valve 419 may be configured to output selected amounts of neutral spirits 410 and / or water 412 to one or more wood concentrate chambers 420, 421, and / or 422. Wood concentrate chambers 420, 421, and / or 422 may be filled with different types of wood concentrates configured to produce aged or flavored spirits as neutral spirits 410 and / or water 412 pass through wood concentrate chambers 420, 421, and / or 422. For example, wood concentrate chambers 420, 421, and / or 422 may be filled with a wood concentrate similar to wood concentrate 302. The controller 451 may control the controllable mixing valve 419 according to inputs from a user to select the amount and / or mixture of neutral spirits 410 and / or water 412 delivered to one or more of the wood concentrate chambers 420, 421, and / or 422 to provide a ready-to-serve, aged, or flavored spirit (rum, whiskey, etc.) that can be dispensed into a container 450 (e.g., a cup, a glass, etc.).
[0040] 5A-5E illustrate embodiment methods 500, 510, 520, 530, and 540 related to spirits processing that may be implemented according to various embodiments. In various embodiments, the operations of methods 500, 510, 520, 530, and / or 540 may be implemented individually and / or in conjunction with one another. For example, any one or more operations of methods 500, 510, 520, 530, and / or 540 may be implemented in conjunction with any one or more of the other operations of methods 500, 510, 520, 530, and / or 540. In various embodiments, one or more of the operations of methods 500, 510, 520, 530, and / or 540 may be implemented, at least in part, using one or more of the rapid spirits aging processors 100, 130, 202, aging units 350, 370, and / or beverage dispensing system 400 described above.
[0041] Various embodiments may involve creating a spirits-flavored dispersion from a charge of spirits that typically produces only a single flavor using typical methods. Figure 5A illustrates such a method 500, which includes creating a spirits-flavored dispersion from a single charge of spirits in step 502, using, for example, one or more of the rapid spirits maturation processors 100, 130, 202, maturation units 350, 370, and / or beverage dispensing system 400 described above. Various embodiments allow for creating a spirits-flavored dispersion from a charge that typically produces only a single flavor.
[0042] Various embodiments may include tailoring a particular feedstock according to regional preferences or season of the year, and according to different regional preferences or seasonal preferences for different regions or times of the year, thereby resulting in a single feedstock being able to sell to multiple markets.
[0043] Various embodiments may provide environmental benefits.
[0044] In various embodiments, used micro-staves may be reused and / or resold for other purposes. Figure 5B illustrates such a method 510, which includes, in step 512, reusing micro-staves already used in rapid spirits maturation (e.g., micro-staves 108 used in rapid spirits maturation processors 100, 130, etc.) for non-rapid spirits maturation purposes. For example, used micro-staves may be reused as campfire fire starters, creating recycled products from treated micro-staves. Additionally, the spirits in the micro-staves allow for better fire starting and campfire flavoring.
[0045] In various embodiments, used micro-staves may be used to create custom toasted and / or charred wood chips that can be infused with liquids such as bourbon to create desired barbecue cooking results, including optimized flavoring.
[0046] In various embodiments, processing of post-consumer microstaves can occur for valuable end uses, such as use in power generation (after catalytic combustion), use in BBQ food preparation, use as a flavor additive (e.g., whiskey-infused wooden staves for use in hot sauce), etc.
[0047] Various embodiments may allow for upgrading spirit products for higher value or better marketability. FIG. 5C illustrates such a method 520, which includes using rapid spirits aging to upgrade spirits to higher value or more marketable spirits in step 522, for example, using one or more of the rapid spirits aging processors 100, 130, 202, aging units 350, 370, and / or beverage dispensing system 400 described above. Various embodiments may include a method 520 for improving or revitalizing other types of alcoholic beverages using various rapid spirits aging processes. Various embodiments may allow for revitalizing bad wine and converting such bad wine into fortified wine, such as sherry, port, Madeira, or similar products. Various embodiments may include removing a low-quality or bad-tasting spirit charge, stripping it of all flavor-related content via distillation, and then recreating the good flavor using various rapid spirits aging processes. Various embodiments may include removing discarded or expired beer, adding spent grains as needed to increase the amount of contaminants (including fusel oils, aldehydes, furfural, esters, solids, tannins, and many unidentified compounds), and upgrading the product to a good-tasting whiskey using distillation and various rapid spirit aging processes. Various embodiments may include converting neutral spirits, such as vodka, into an aged spirit by a) charcoal filtration, b) repeated distillation, c) replacing missing graininess by adding appropriate esters, and d) implementing a rapid spirit aging process to achieve maturation. Various embodiments may enable the production of a blended whiskey by using a minimum of 20% straight whiskey and blending it with spirits processed using various rapid spirit aging processes to improve the color and flavor of the blended whiskey. Various embodiments may enable the improvement of the flavor of the spirit by controlling the acidity content and species before and during distillation.
[0048] Various embodiments may include creating custom spirits for use in cooking based on the intended flavor of the food being cooked. In a typical process, a chef might only use spirits from a standard production, but by using various aging processes to create flavors and flavors, a chef can have a flavor tailored to the cooking requirements. Example foods may include spirits tailored to a specific eggnog, cake-specific spirits, etc. Various embodiments may include taking feedback from gourmet chefs to achieve a desired, e.g., optimal, flavor profile for a given chef, a given restaurant, or a given food factory. Various embodiments may include a method that includes creating micro-agglomerates to evaluate market tastes and quickly determine the optimal flavor for a given market.
[0049] Various embodiments may enable taste fingerprinting. Figure 5D illustrates such a method 530, which includes taking a taste fingerprint of a user at step 532 and using the user's taste fingerprint at step 534.
[0050] Various embodiments may include providing a taste-testing kit containing samples that delimit taste-space axes (such as marking distinct sets of N parameters of spirit or beverage taste, such as color, palette, fruitiness, aroma, sweetness, etc.). A user of the kit then rates the taste of these samples and provides feedback. This data may then be used to derive the following outcomes: a) a fingerprint of the user's taste profile is determined; b) a set of spirit recommendations that fit this profile may be provided; c) recipes for rapid spirits aging processes that best fit the taste profile may be provided; d) a network of restaurants may be informed of the user's taste profile so that they can provide the user with beverages that match the user's preferences; and e) the user may be offered "challenge" flavors (flavors that are slightly different from the user's preferences but close enough that the user may develop a preference for them). Taste-testing kits may be used to conduct business in a similar fashion to 23-And-Me's genetic fingerprinting. In various embodiments, the rapid spirits maturation process is used to produce multiple product outputs from a single input supply of spirits, thus making the taste testing kits described above (e.g., the 23-And-Me business model) very cost-effective without the need to source supplies of multiple flavors of spirits.
[0051] Various embodiments may include creating a Pantone color model in which the N-dimensional axes of a spirit or beverage's taste are mapped to a color wheel or multiple wheels, such that color can be used to symbolize taste preferences and definitively define taste profiles in an easy manner for communication. Mapping taste space to color creates an easy-to-understand arrangement that is advantageous for marketing the concept of taste and flavor customization. In various embodiments, a rapid spirits aging process may be used to produce multiple product outputs from a single input supply of spirits, thus making Pantone color implementation very cost-effective without the need to procure supplies of multiple flavored spirits.
[0052] Various embodiments may provide a business model whereby a taste profile is determined through an online interface, kits can be tested, a profile can be determined, and more product can be ordered for that taste profile. Various embodiments may include using a rapid spirits maturation process to produce multiple product outputs from a single input supply of spirits, thus making the above inventive kits very cost effective without the need to source supplies of multiple flavors of spirits.
[0053] Various embodiments may perform a design of experiment activity using a set of manufactured miniature samples highlighting taste axes to determine a taster's repeatability for given taste response parameters, and then score a given taster's signal-to-noise ratio and repeatability for these taste parameters. Various embodiments include a method for using this dataset to then create tastes and flavors that those tasters value. In various embodiments, the method may include providing this dataset as feedback to the taster so that the taster can understand their strengths, and creating a program that provides taste samples that allow the taster to practice and train on axes of taste space that indicate their signal-to-noise ratio or repeatability is limited. Various embodiments include a database service that may be offered to tasters or those procuring the services of tasters so that a taster's ability can be certified for specific tests by paying a membership fee for the service. Various embodiments involve using a rapid spirits maturation process to produce multiple product outputs from a single input supply of spirits, thus making taster evaluation of the above invention very cost effective without the need to procure supplies of multiple flavors of spirits.
[0054] Various embodiments include providing online flavor selection, receiving samples, inputting feedback after tasting the samples, and updating preferred flavor profiles. Various embodiments include using a rapid spirits maturation process to produce multiple product outputs from a single input supply of spirits, thus making the above inventive online flavor selection and refinement of taste preferences very cost effective without the need to procure supplies of multiple flavored spirits.
[0055] Various embodiments may include a wide range of implementations of the rapid spirits maturation process.
[0056] Various embodiments may include structures and methods for recovering vapors from a rapid spirits maturation process, including when the vessel of the rapid spirits maturation processor is opened, for example, through a filter, such as an activated carbon filter, and consuming the filter after use as fuel for generating electricity.
[0057] Various embodiments may be used for barrel-based or fermentation-based rapid spirits aging processes and products. Figure 5E illustrates such a method 540, which includes, in step 542, using a rapid spirits aging processor (e.g., rapid spirits aging processor 100, 130, 202, aging unit 350, 370, and / or beverage dispensing system 400, etc.) for flavoring, aging, creating, and / or refining any typical barrel-based and / or fermentation-based product.
[0058] Various embodiments may involve using a rapid spirits aging process to create a barrel-aged flavor in other products, where mass production is often done in steelware, but the best-tasting products are created in wooden barrels. For example, the flavor of soy sauce may be improved by adding flavor through the addition of charred, untoasted, and / or toasted staves. In this case, the staves may be bamboo-related rather than oak-related. For example, the flavor of balsamic vinegar may be improved by adding flavor through the addition of untoasted, charred, and / or toasted staves. In this case, a cocktail of wooden staves may be used to create a rapid aging process equivalent to the cascade of barrels commonly used in the classical balsamic vinegar process.
[0059] Various embodiments enable the rapid aging of non-spirit products that are typically aged in barrels, or the rapid creation of non-spirit products that require fermentation. For example, rather than the fermentation and aging process typically used for soy sauce, the rapid aging process of soy sauce can be carried out using bamboo micro-staves in a rapid-aging processor, which is a device, system, or structure including vessels (or containers) such as steelware, where the soy sauce is rapidly fermented, aged, and flavored using the micro-staves and controlled temperature, pressure, air, etc. For example, balsamic vinegar can be improved in flavor using a rapid-aging processor, which is a device, system, or structure including vessels (or containers) such as steelware, where the balsamic vinegar is rapidly aged and flavored using the micro-staves and controlled temperature, pressure, air, etc.
[0060] Similarly, various embodiments include soy sauce, vinegar, olive oil, flavored water, BBQ sauce, hot sauce, syrup, tequila, sake, soju, baijiu, etc. The addition of charred microstaves, untoasted microstaves, and / or toasted microstaves is included in the processing of an array of barrel-aged products. For example, such typical barrel-aged products (whether spirits or non-spirits products) can be flavor-improved, aged, created, and / or otherwise refined by using a rapid-aging processor, which is a device, system, or structure that includes a vessel (or vessel) such as steelware; typical barrel-aged products (e.g., soy sauce, vinegar, olive oil, flavored water, BBQ sauce, hot sauce, syrup, tequila, sake, soju, baijiu, etc.) can be flavor-improved, aged, created, and / or otherwise refined by using microstaves and controlled temperature, pressure, air, and / or other process variables.
[0061] Various embodiments include imparting flavor to alcoholic beverages or foods that are typically barrel-aged using a rapid aging process in which the microstaves of the process can be pre-treated with flavoring items such as ethyl acetate or other fruit or vanilla flavoring compounds. This process can be used to create a variety of flavored products, such as flavored wines, flavored beers, flavored spirits, flavored vinegars, flavored olive oils, and the like.
[0062] Various embodiments may include using a rapid spirits maturation process to produce a low alcohol whiskey product equivalent.
[0063] Various embodiments, such as Examples A-N, are provided to illustrate aspects of various embodiments. Example A: A method comprising creating a dispersion of spirit flavors from a single dose of spirit. Example B: A method comprising reusing microstaves already used in rapid spirits maturation for non-rapid spirits maturation purposes. Example C: A method comprising using rapid spirits maturation to upgrade a spirit to a higher value or more marketable spirit. Example D: A method for user taste fingerprinting. Example E: A method according to Example D comprising using user taste fingerprinting. Example E: A method comprising using a rapid spirits maturation processor at a distillery. Example F: A method comprising using a rapid spirits maturation processor at a farm. Example G: A method comprising using a rapid spirits maturation processor for flavoring, aging, creating, and / or refining any typical barrel-based and / or fermentation-based product. Example H: The method of Example G, wherein the product is a barrel-based and / or fermentation-based product, and may be a spirit or a non-spirit product. Example I: A mobile rapid spirits maturation processor. Example J: A capsule containing a spirit concentrate that when blended with a liquid creates a desired end product. Example K: The capsule of Example J, wherein the liquid is water or alcohol. Example L: A wood concentrate that when diluted with water or neutral spirits produces a flavored spirit. Example M: A beverage dispensing system in which water or neutral spirits is diluted through a wood concentrate to output a flavored spirit. Example N: An maturation unit designed for use on-site, e.g., in hotels, bars, homes.
[0064] The various embodiments shown and described are provided merely as examples to illustrate various features of the claims. However, features shown and described with respect to any given embodiment are not necessarily limited to the associated embodiment and may be used or combined with other embodiments shown and described. Furthermore, the claims are not intended to be limited by any example embodiment.
[0065] In one embodiment, the functionality of one or more controllers of a rapid spirits aging processor (e.g., rapid spirits aging processors 100, 130, 202, aging units 350, 370, and / or beverage dispensing system 400) may be implemented in software, hardware, firmware, or any combination of the foregoing. In one embodiment, the hardware may include circuitry designed to implement the specific functionality of one or more controllers of the rapid spirits aging processor. In one embodiment, the hardware may include a programmable processing device configured with instructions to implement the functionality of one or more controllers of the rapid spirits aging processor.
[0066] The foregoing method descriptions and process flow diagrams are provided by way of example only and are not intended to require or imply that the steps of the various embodiments must be performed in the order presented. As will be appreciated by those skilled in the art, the order of steps in the foregoing embodiments may be performed in any order. Furthermore, words such as "then," "then," and "next" are not intended to limit the order of steps; these words are merely used to guide the reader through the method descriptions.
[0067] One or more block diagrams / flow diagrams have been used to describe exemplary embodiments. The use of block diagrams / flow diagrams is not intended to be limiting with respect to the order of operations performed. The foregoing description of exemplary embodiments has been presented for purposes of illustration and description. It is not intended to be exhaustive or limited to the precise form disclosed, and modifications and variations are possible in light of the above teachings or may be acquired from practice of the disclosed embodiments. It is intended that the scope of the invention be defined by the appended claims and their equivalents.
[0068] The control element may be implemented using a computing device (such as a computer) that includes a processor, memory, and other components that are programmed with instructions to perform specific functions, or may be implemented with a processor designed to perform specific functions. The processor may be any programmable microprocessor, microcomputer, or multiprocessor chip or chips that can be configured by software instructions (applications) to perform various functions, including those of the various embodiments described herein. In some computing devices, multiple processors may be provided. Typically, software applications may be stored in internal memory before being accessed and loaded into the processor. In some computing devices, the processor may include sufficient internal memory to store application software instructions.
[0069] The various illustrative logic blocks, modules, circuits, and algorithm steps described in connection with the embodiments disclosed herein may be implemented as electronic hardware, computer software, or a combination of both. To clearly illustrate this interchangeability between hardware and software, the various illustrative components, blocks, modules, circuits, and steps have been described above generally in terms of their functionality. Whether such functionality is implemented as hardware or software depends on the particular application and design constraints imposed on the overall system. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present invention.
[0070] The hardware used to implement the various example logic, logic blocks, modules, and circuits described in connection with the aspects disclosed herein may be implemented or embodied as a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic, discrete hardware components, or any combination thereof designed to perform the functions described herein. A general-purpose processor may be a microprocessor, but alternatively, the processor may be any conventional processor, controller, microcontroller, or state machine. A processor may also be implemented as a combination of computing devices, e.g., a combination of a DSP and a microprocessor, multiple microprocessors, one or more microprocessors in combination with a DSP core, or any other such configuration. Alternatively, some blocks or methods may be implemented by circuitry specialized for a given function.
[0071] The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the described embodiments. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the scope of the disclosure. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the following claims and the principles and novel features disclosed herein.
Claims
1. 1. A method of producing a spirit flavor dispersion from a single dose of spirit, comprising: treating said single charge mass spirit with rapid spirit maturation; The rapid spirits maturation comprises: placing said single charged mass of spirits in a vessel; adding a plurality of microstaves to said single charge of spirits; heating said vessel containing said single charge of spirits and said plurality of microstaves; and recovering vapor from the vessel when the vessel is in use or when the vessel is opened.
2. the single mass spirit maturation process comprising producing a mature whiskey having a selected aroma profile, a selected color profile, and / or a selected flavor profile; The method of claim 1.
3. the maturation process of the single-shot mass spirit comprises maturing the single-shot mass spirit to achieve at least one of the desired flavor and / or taste of the matured whiskey in less than 25 days; The method of claim 2.
4. adding the plurality of micro staves includes selecting the plurality of micro staves having a volume and surface area that allows for controlled and uniform extraction of woody components from the plurality of micro staves by the single charge of spirit; The method of claim 1.
5. The plurality of micro-staves comprises pieces of wood having rectangular volumes ranging from 0.05 mm x 0.05 mm x 0.05 mm to 20 mm x 20 mm x 100 cm. The method of claim 1.
6. the plurality of microstaves includes toasted microstaves; The method of claim 1.
7. the plurality of microstaves includes untoasted microstaves; The method of claim 1.
8. the plurality of micro staves include charred micro staves; The method of claim 1.
9. The rapid spirits maturation process further comprises controlling a gaseous mixture in a headspace above the single dose of spirits in the vessel. The method of claim 1.
10. The controlling of the gaseous mixture in the headspace includes at least adding or removing gas from the vessel.
10. The method of claim 9.
11. The control of the gaseous mixture in the headspace includes controlling the pressure within the vessel.
10. The method of claim 9.
12. agitating the single dose of spirits within the vessel; The method of claim 1.
13. recovering the vapor from the vessel includes recovering the vapor with a filtration system including an activated carbon filter; The method of claim 1.
14. A method of producing a spirits flavor dispersion from a single dose of spirits, comprising: treating said single charge mass spirit with rapid spirit maturation; The rapid spirits maturation comprises: placing said single charged mass of spirits in a vessel; adding a plurality of microstaves to said single charge of spirits; heating said vessel containing said single batch of spirits and said plurality of staves; The process of maturation of said single charge mass spirits comprises: The vessel; a heating system for heating the vessel and / or the single dose of spirits; a gas delivery / removal system for delivering and / or removing gas to the vessel; a mixing system for agitating the single dose of spirits within the vessel; a filtration system for recovering vapors from said vessel; a controller that controls the operation of the heating system, the gas delivery / removal system, the mixing system, and / or the filtration system to produce a desired matured spirit. This is done using a rapid spirits maturation processor.
Citation Information
Patent Citations
Cream-based liqueur and process
EP0067592A2
Beverage precursor and method for producing a beverage
JP2017528144A
Alcoholic beverage and its production method
JP2018530340A
Storage unit of alcoholic beverage and storage method of alcoholic beverage
JP2020014386A
Capsule-based alcoholic beverage forming apparatus and components thereof
US10336597B2