Beverage and food manufacturing

The novel steam-cooking and fermentation method for beer production, integrated with pasta production, addresses inefficiencies and waste by utilizing rejected pasta, resulting in a more efficient and environmentally friendly beer-making process.

JP7809142B2Active Publication Date: 2026-01-30ユーゴー フーズ グループ リミテッド
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Patent Information

Application Number
JP2023572075
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-05-19
Filing Date
2022-05-19
Publication Date
2026-01-30
Estimated Expiration
2042-05-19

AI Technical Summary

Technical Problem

Traditional beer production processes are lengthy and inefficient, leading to significant food waste and high energy consumption, while conventional pasta production generates waste that is often discarded without being utilized effectively.

Method used

A novel method for producing beer-like beverages by partially cooking dough made from milled grain in saturated steam, followed by fermentation, which integrates with pasta production to utilize rejected pasta as a raw material, reducing waste and energy consumption.

Benefits of technology

The integrated process reduces food waste and energy use by repurposing pasta production waste for beer production, enhancing flavor and efficiency while maintaining quality control.

✦ Generated by Eureka AI based on patent content.

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Abstract

Beverage and food production. The present invention relates to beverage and food production. The present invention provides a novel process for the production of improved beer-like beverages, unprecedented in the 7,000-year history of human beer production. In addition to providing a satisfying tasting beer, the process is suitable for integration with food production, leading to a reduction in food waste and higher efficiency. An embodiment provides a beer production line with a collection device that collects excess or rejected pasta for use in the novel process.
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Description

[Technical Field]

[0001] The present invention relates to food and beverage production. In particular, the present invention relates to novel methods for producing beer or similar drinks and to improved food and beverage production methods. In addition to providing satisfactory products, the methods and apparatus may reduce food waste and may also reduce energy consumption in the beverage production process, both of which are important environmental issues. [Background technology]

[0002] Beer has been known for about 7,000 years, since roughly the 5th millennium BC, and has been produced by fermenting crops such as barley, malt, hops, or in some cases wheat. Currently, there are about 20,000 beer brands, and annual consumption approaches 200 billion liters per year. The traditional beer production process is described below with reference to Figure 1. Summary of the Invention

[0003] Despite its very long history, the inventors have arrived at a novel method for producing beer-like beverages.

[0004] According to a first aspect, the present invention provides a method of forming a beverage, the method comprising the steps of providing a supply of grain comprising wheat and / or semolina in the form of milled dry flour, forming a dough from the flour, extruding or otherwise shaping the dough under pressure, at least partially cooking the extruded dough in a moist saturated steam environment with steam at a temperature of at least 90 degrees Celsius so that starch in the grain is at least partially gelatinized, mashing the steamed dough to form a wort, and fermenting the mashed gelatinized grain with yeast and water to obtain an alcoholic beverage.

[0005] Without wishing to be bound by any theory, wheat or semolina has a different texture when the grain after dry milling and forming into dough is subjected to steam rather than prolonged exposure to liquid, including heating, which involves soaking the grain in liquid prior to mashing. Furthermore, certain ingredients that tend to leach or decompose are retained, leading to a subtle yet satisfying flavor blend in the finished beverage, along with a shorter processing time. When the grain as dough is subjected to steam rather than first soaked in water and heated, the effects of degradation and undesirable flavors can be reduced. Furthermore, reducing starch can also beneficially reduce the non-alcoholic calorie content of the beer.

[0006] The temperature is preferably less than 100 degrees Celsius. The pressure is preferably ambient atmospheric pressure. However, elevated pressures can be used, in which case the steam temperature may in some cases be slightly above 100 degrees Celsius.

[0007] Preferably, the grain is heated for at least 1 minute and / or at least 5% by weight of the starch is gelatinized. More preferably, the grain should be heated for a period of between 1.5 and 2.5 minutes to maximize starch gelatinization.

[0008] The mashed wort may be boiled and hopped, which involves adding desired flavors and aromas, prior to fermentation.

[0009] The temperature is preferably below 100° C. and above 90° C. More preferably, the temperature is above 92° C. and below 98° C., and the process is carried out at substantially atmospheric pressure. The humidity of the atmosphere during the heating step should preferably be 100% saturation.

[0010] Preferably, the grain is dry-milled into a powder prior to cooking and prior to exposure to water. Milling changes the physical structure, making the grain more susceptible to steam treatment. Milling can also lead to a purer product with fewer undesirable flavors and also fewer potential contaminants.

[0011] Preferably, the grain is prepared as a flour, and sufficient water is added to form a dough from the grain, which is then steamed. Forming the dough allows the milled flour to be exposed to a limited amount of water prior to cooking, which can have the advantage of improving the flavor and composition of the resulting beverage. The mass of liquid per amount of dough to be mixed should not exceed 40% of the mass of the powder in each amount of dough to be mixed. More preferably, the mass of liquid in each amount of dough to be mixed should be between 25% and 35% of the mass of the powder in each amount of dough to be mixed. The liquid is preferably 100% ambient water, but may contain small amounts of other liquids, typically proteinaceous liquids, such as eggs, to enhance the starch gelatinization process.

[0012] Preferably, the dough is extruded, e.g., in the manner of pasta, prior to steam cooking. Extruding the dough can affect the surface area and favorably influence the distribution of gelatinized raw starch after cooking. This may also be achieved through other means of pressure forming, e.g., high-pressure flaking. Preferably, the applied pressure should exceed 40 bar solids pressure. More preferably, the applied pressure should be between 50 and 100 bar solids pressure. However, reference to forming under pressure is not limited to such pressures, and actual pressure need not be measured. The act of forcing dough through an orifice or shaping includes forming under pressure.

[0013] Preferably, the partially steamed gelatinized dough mixture is then mashed, strained, boiled and hopped, and fermented to produce an alcoholic beverage having an alcohol content of at least 2%, preferably for at least 48 hours. The mashing process may also incorporate other malted grains, as in known brewing processes.

[0014] Techniques from known brewing processes, especially for wheat beer, may be used for this novel brewing starting point, including the addition of hops and flavorings and subsequent processing and filtration processes.

[0015] However, because the initial material is relatively refined, with potential contaminants and starch removed, it is found that the beverage may require less post-fermentation processing than conventional beer to result in an acceptably pure and satisfying drink.

[0016] Mashing is preferably performed with gelatinized dough particles less than 30 mm. More preferably, the particle size should be between 3 mm and 20 mm. The mashing process should preferably be performed using a mixture of distilled water and gelatinized dough particles, with a water-to-dough ratio of approximately 4:1. Other demalted grains may be included at this stage. The mixture should be heated to a temperature preferably below 70°C for preferably more than 30 minutes. More preferably, the temperature and timing should be such as to maximize enzyme activity. This varies for different flour types, but should generally be between 63°C and 69°C for 50 to 70 minutes. Ideally, the temperature is held at a specific temperature for a specific interval to further maximize enzyme activity with specific sugars according to a specific process. For ideal enzyme activity, specific grain compositions require specific target temperatures and intervals.

[0017] Straining is the process of removing excess remaining dough to leave a liquid residue containing fermentable sugars known as wort. This preferably yields up to 90% liquid per amount of initial water added. The addition of other grains in the mashing process will alter this yield accordingly. Special care should be taken to ensure minimal loss of fermentable sugars during straining.

[0018] Preferably, boiling of the strained wort mash should be performed to sterilize the liquid prior to fermentation. The boil should preferably be at least 45 minutes and not more than 2 hours. Hops and other flavorings may be added during the boiling process. Preferably, if hops are added early in the boiling process, the boil should be about 60 minutes.

[0019] After the boiling process, the mixture is cooled rapidly, preferably to 25°C within 30 minutes. Yeast may then be added and the mixture fermented. Known brewing processes may be applied, but the mixture is preferably fermented for at least two days, more preferably up to two weeks due to the high level of sugars available for fermentation. Preferably, the yeast is fermented between 10°C and 26°C. More preferably, the yeast is fermented at a temperature range specific to the specific beer style.

[0020] All other further processes are similar such as conditioning, filtering, kegging, bottling, and other packaging of the final product.

[0021] Therefore, in a preferred embodiment, the present invention provides a method for producing a beer-like beverage, the method comprising the steps of providing grains including wheat or semolina in milled form as a powder; mixing the grains with sufficient water to form a dough; extruding or otherwise shaping the dough under pressure; subjecting the extruded or otherwise shaped dough to cooking in saturated steam at a temperature of at least 90 degrees Celsius for at least 1 minute to cause at least partial gelatinization of the starch contained within the grains; cutting the cooked extruded dough; mixing the cut extruded cooked dough with water and mashing to convert the starch from the gelatinized dough into fermentable sugars; producing a brewing mixture from the mixed extruded cut dough; and fermenting the brewing mixture to produce an alcoholic beverage.

[0022] Fermentation is preferably carried out for at least 2 days at a temperature between 10 and 26 degrees Celsius to produce an alcoholic beverage with an alcohol content of at least 2%, preferably at least 3%.

[0023] Producing the brewing mixture typically involves straining the wort to extract the remaining grains and leave the required wort, boiling the wort to kill any potential pathogens while adding hops and other flavorings to add aroma as desired, and mixing the hopped boiled wort with yeast to produce the brewing mixture.

[0024] In a second aspect, the present invention provides an alcoholic beverage comprising alcohol obtained from fermenting milled steam-cooked grain and a residual steam-cooked grain derivative.

[0025] Such beverages can be distinguished from conventional beer by analysis of the beverage's sugar and residual components.

[0026] In a preferred embodiment, the grain is processed substantially as it would be formed into pasta in an earlier step and subsequently used to form the brewing mixture.

[0027] This advantageously allows the beverage formulation manufacturing process to be integrated with the food manufacturing process, along with savings in waste and energy.

[0028] According to a third aspect, the present invention provides a method of producing food products and beverages comprising the steps of providing a supply of milled flour, forming a dough from the milled flour by the addition of water, extruding or otherwise shaping the dough under pressure, subjecting the dough to at least partial cooking in saturated steam at a temperature of at least 90 degrees Celsius, forming a pasta-like product from a first portion of the cooked extruded dough, and feeding a second portion of the cooked extruded dough to a fermentation process to produce an alcoholic beverage.

[0029] In conventional pasta-making processes, there is typically some waste. Some pasta may fail to form, or some waste may occur in the filling or subsequent processing. In lower quality pasta-making plants, suboptimal pasta is simply mixed with others. However, in very high quality operations, such as the applicant's, which strive to provide only the finest quality pasta that is both aesthetically and gastronomically superior, there may be a significant degree of waste, which varies depending on the type of pasta being produced.

[0030] Preferably, at least a portion of the second portion is provided by collecting excess or rejected pasta from further processing steps that form the pasta into a finished product.

[0031] However, the beverage production process, in which grains are chopped and then mixed with water to dissolve and ferment, is not affected by the initial shape of the product and can therefore use rejected pasta at various points in the production line, from initial shaping to cutting and packaging. Thus, by combining the two processes, food waste is reduced, which is both economically beneficial and good for the planet.

[0032] In a related fourth aspect, the present invention provides a production line for producing a pasta-like product, the production line comprising an extruder for extruding pasta dough into a pasta-like food product or a sheeter / laminator for producing thin sheets of pasta dough under pressure for use in the pasta-like food product, a saturated steam cooking station for at least partially cooking the pasta-like food product, at least one further processing station including a cutting, filling or packaging station for further processing the cooked pasta-like food product, and a collector for collecting excess or rejected pasta from the at least one further processing station for feeding into a wort production and fermentation process.

[0033] In both the method and the apparatus, controls may be provided to monitor the level of excess or reject pasta from the pasta making process and / or to estimate the expected level of excess or reject, and in particular to control the amount of grain sent to provide the second portion.

[0034] Embodiments of the present invention will now be particularly described with reference to the accompanying drawings. [Brief explanation of the drawings]

[0035] [Figure 1] FIG. 1 shows a schematic overview of a conventional beer production process. [Figure 2] Figure 2 shows a schematic diagram of a pasta production line. [Figure 3]Figure 3 shows a schematic flow chart of the fresh pasta formation process. [Figure 4] FIG. 4 shows a schematic flow chart of the beverage formation process according to the first embodiment. [Figure 5] FIG. 5 shows a schematic diagram of a combined pasta and beverage production line according to a second embodiment. [Figure 6] FIG. 6 shows a technical layout drawing of a combined pasta and beverage production line according to a second embodiment, with reference to the schematic flow in FIG. DETAILED DESCRIPTION OF THE INVENTION

[0036] Referring to Figure 1, a conventional beer production process is depicted. The basic steps involved are:

[0037] 1. Malting: Here, the conversion of carbohydrates to dextrins and maltose occurs. The grain used as raw material is usually barley. Grain barley can be stored for a long time after harvest, and it is the malted barley that traditionally gives beer its characteristic color and flavor. Malting is accomplished by steeping barley or other grains in water to allow time for the starch to break down. The malt may then be kiln- or heated in a furnace to dry the malt and destroy the sugars, or the malt may be roasted. The degree of heating can determine the type of beer, from light to dark.

[0038] 2. Milling: The malt is milled or ground and then mixed again with water to complete the conversion of the starch in the grain to sugars to the consistency of the malt. It is noted that the grain is milled after the water treatment and then treated again with water.

[0039] 3. Mashing: This process converts the starch released during the malting stage into fermentable sugars. Here, the liquid is heated to temperatures typically ranging from 58 to 78 degrees Celsius to break down the starch into simpler sugars. Heating often involves pauses at specific temperatures where specific enzymes are active or processes occur, typically 45, 62, and 73 degrees Celsius, or 113, 144, and 163 degrees Fahrenheit.

[0040] 4. Wort filtration: Here the liquid containing the sugars extracted during mashing is separated from the grains. The liquid is then commonly called wort.

[0041] 5. Boiling and Hopping: Boiling the wort ensures the sterility of the wort, thus preventing many infections. Hops are added during this boiling stage. Hops are used to add flavor and aroma to balance the sweetness of the malt. The mixture is often boiled for between 30 minutes and 2 hours, typically 1 hour. This boiling process dissolves some of the hop resins and allows some of the alpha acids to isomerize and become soluble.

[0042] 6. Fermentation: Yeast is now added and the beer is fermented. The yeast breaks down the sugars extracted from the malt to form alcohol and CO2.

[0043] 7. Conditioning: Fermented beer contains suspended particles, is poorly carbonated, lacks taste and aroma, and is less stable. Conditioning reduces the levels of these undesirable compounds to produce a more finished product.

[0044] 8. Filtration: Filtration helps remove excess yeast and any solids, such as hops or grain particles, remaining in the beer. Filtration is the process that produces a clear, crisp, stable beer.

[0045] 9. Packaging: Packaging is putting the beer into bottles, cans, or some other high volume container. One of the most important things in packaging is to exclude oxygen from the beer.

[0046] The basic pasta forming process will now be described with reference to Figures 2 and 3. The basic steps involved are as follows:

[0047] 1. Milling: First, the grain must be milled into a suitable powder.

[0048] 2. Measuring: The ingredients, typically water and powder, must be measured. An approximate preferred recipe is 28ml of water per 100ml of powder.

[0049] 3. Mixing: The ingredients must be mixed to form a dough.

[0050] 4. Kneading: The dough must be kneaded to ensure that the gluten proteins are fully functional to provide elasticity to the final product.

[0051] 5. Shaping: The dough must then be shaped under pressure. During the shaping process, the material is mixed, conditioned, and converted into a partial fluid, which causes structural and chemical changes that trigger the release of functional compounds. This is caused by the effects of temperature, moisture content, pressure, and the geometry of the shaping device. a. Extrusion: Higher pressures can be applied. b. Sheeting / Lamination - Standard in filled pasta production, making the dough more flexible with lower shape memory.

[0052] 6. Cutting or forming: This is a variable process depending on the pasta shape or product required.

[0053] 7. Steam Treatment: Partial cooking of the dough in saturated steam at a temperature of at least 92 degrees Celsius for at least 1 minute to cause at least partial gelatinization of the starch contained within the grain, ensuring better product strength and also eliminating pathogens and any microbial contaminants to provide a significantly extended shelf life of the product.

[0054] 8. Drying: Drying the formed steamed dough removes surface moisture and prevents excess water content from ultimately remaining in the packaging.

[0055] 9. Chilling: Chilling the dried product to below 8 degrees Celsius allows it to be packaged and refrigerated without causing condensation in the packaging.

[0056] 10. Packaging: Product metering and packaging can take many forms, including the use of modified atmosphere packaging to extend shelf life. Essentially, the removal of oxygen and its replacement with CO2 is essential for the sensory shelf life of the product.

[0057] A typical pasta production process is described with reference to Figure 3. It is noted that, in contrast to conventional pasta production, a relatively small amount of water is mixed with the powder to form the dough. In the example given, 28 ml of water is mixed with 100 g of powder. To give a dough-like consistency, preferably less than half the mass of the powder is mixed with the powder, more preferably less than one-third the mass of the powder.

[0058] This is in contrast to beer production, where grain is exposed to significantly more water in processing than its own mass before heating.

[0059] Referring to FIG. 4, an exemplary process for forming a beverage according to the novel process of an embodiment will now be described.

[0060] 1. Milling: First, the grain, preferably wheat or semolina flour, must be milled and ideally de-branned to ensure consistent grain size, color, and hardness. This is a raw milling process, unlike in known brewing processes, where the grain is first malted, if necessary, before milling.

[0061] 2. Mixing: The milled grain should then be mixed with liquid, preferably but not necessarily 100% water, until the dough is uniform.

[0062] 3. Kneading: Preferably, the dough should be kneaded prior to shaping to ensure that the gluten proteins function sufficiently to provide elasticity and strength, which may also make the dough more susceptible to starch gelatinization under the steaming process.

[0063] 4. Shaping: The dough must then be shaped, preferably extruded, under pressure. During the shaping process, the material is mixed, conditioned, and converted into a partial fluid, which causes structural and chemical changes that lead to the release of functional compounds. This may include pregelatinization of starch to further enhance the additional steam process. This occurs due to the effects of temperature, moisture content, pressure, and the geometry of the shaping device.

[0064] 5. Steaming: Partial cooking in saturated steam at a temperature of at least 92 degrees Celsius for at least one minute causes at least partial gelatinization of the starch contained within the grain and also removes pathogens and any microbial contaminants. The at least partial gelatinization of the starch contained within the grain allows the output product to be used in fermentation into alcohol. This process fundamentally replaces the malting process used in the known brewing process as the standard way to convert starch in grain from carbohydrates into dextrins and maltose that can be subsequently used with yeast for fermentation and production of alcoholic beverages. As an entirely new process in brewing, it changes the potential ways to extract sugars for fermentation from grain. As such, it should increase the potential yield of the crop for alcohol production as a whole.

[0065] 6. Cutting: The steamed, shaped dough is then cut into suitable particle sizes, preferably between 5mm and 20mm, which allows for ideal surface area to volume conditions for the mashing process.

[0066] 7. Mashing, straining, boiling, fermenting, conditioning, filtering, and packaging: These processes may substantially follow existing known brewing processes, treating the cut, steamed, shaped dough as if it were malted grain.

[0067] A notable difference to standard brewing processes is that the combination of milling the grain, mixing with water, applying pressure, and partial steam cooking acts as a substitute for the malting and milling process that precedes mashing in known brewing processes. Surprisingly, although the texture of the steamed formed dough is very different from malted grain, the steamed formed dough ferments well when treated similarly to malted grain, with the surprising added benefit that subtle changes caused by partial gelatinization of the starch in the steam treatment can impart a more satisfying flavor.

[0068] Referring to Figure 5, an embodiment of a modified manufacturing line will now be described.

[0069] Since the initial processes in pasta production and the new proposed brewing process happen to be identical, the combination of collecting unused pasta and weighing rejected pasta for raw materials in the brewing process simultaneously reduces waste and creates a new and novel way to produce alcohol.

[0070] While the process of producing pasta products always generates some waste, being able to use this waste for further processing to produce a saleable product should allow for a higher level of quality control over pasta production, with the certainty that raw material usage is preserved for a different final product. This further facilitates control and monitoring of waste data to forecast alcoholic beverage output versus pasta production to enable targeted stock replenishment, rather than focusing on reducing costs through pure waste reduction, which can potentially impact quality. Where combined production lines are provided, a bypass route may be provided so that the beverage production process is fed continuously, with fluctuations in the amount of waste collected being accommodated by complementary fluctuations in the bypass feed.

[0071] Nearly all "unusable waste" from pasta production comes after the steaming process and is therefore perfectly usable in the proposed novel brewing process. Existing waste collection points, such as belt transport points and cutting stations, can be used to collect waste for fermentation purposes. "Unusable waste" from before the steaming process can also be collected and steamed separately during production downtime. Other materials, such as egg-contaminated waste, when separated from the "clean" waste, can be used to produce unique products, such as egg-containing beer. This allows for comprehensive waste collection and monitoring and management of the pasta production facility to produce a wide range of unique brewed alcoholic beverages, while improving quality control in pasta production and simultaneously reducing food waste, thus reducing environmental impact not only due to reduced waste but also due to the fact that malted grain does not need to be processed to create an alcoholic beverage output.

[0072] The controller may adjust the amount of steamed formed pasta sent to a bypass of the pasta making process. The controller may use logic with a machine learning engine to predict waste based on process parameters and recipes and adjust bypass production accordingly.

[0073] A particular advantage of the combined manufacturing method and production line is that "waste" is no longer waste, and more stringent quality control can be applied, since an increase in rejected material simply provides a higher level of feed to the beverage production process. In a further aspect, the invention provides a manufacturing line for forming pasta from steam-cooked dough through a series of processing stations, the manufacturing line having a quality control process configured to reject partially-formed pasta at one or more processing stations according to one or more quality standards, the rejected partially-formed pasta being provided as feed to the beverage production process, the quality standards being set to target a non-zero positive percentage of rejected partially-formed pasta.

[0074] In general, the process is usually adjusted to target zero waste, and the target percentage of rejected partially formed pasta may be at least 1% of the total production.

[0075] The production line may involve a pasta filling station that forms filled pasta, and the production line may include a controller configured to apply stricter quality control standards upstream of the pasta filling station to target a non-zero positive percentage of rejected partially formed pasta, and to target a lower or zero percentage of rejected partially formed pasta downstream of the filling station. In this way, if it is found that stricter quality control upstream leads to lower rejections downstream, a lower percentage of pasta will be rejected after filling, which may complicate processing of the pasta for formation into beverages. Depending on the filling, small amounts of filling may be tolerated, or may even be added (or components thereof added) to impart flavor to the beverage.

[0076] In a further aspect, the present invention provides a method of forming a packaged meal having a pasta component and an alcoholic beverage component, the method comprising the steps of: producing pasta from a steamed cooked grain supply; producing a beverage by fermenting a brew mixture formed from the steamed cooked grain supply; separately packaging the pasta and beverage into respective sealed pasta and beverage containers; and then packaging the sealed pasta and beverage containers into a combined meal package.

[0077] Recipes for both the pasta and the beer are well known. The final product can be produced according to traditional or novel recipes, as is well known, and the present invention is not limited to any particular recipe or flavoring. While existing beer recipes and formulations may be used by simply substituting the amount of malted grain directly for the formed, cooked pasta, taking into account the mass of water in each, it is anticipated that those skilled in the art will adjust the recipe for taste and to take advantage of the subtle flavors resulting from the novel process. Furthermore, while a traditional brewing process is described to aid understanding, the novel process may be applied to modified or novel beer-making processes that replace the initial grain malting process. In a further aspect, the present invention provides a brewing mixture or brewing mixture precursor comprising steam-treated milled flour formed and shaped under pressure and mixed with water.

[0078] As will be appreciated from the above, the beverage production process, production line, beverage and precursors, and final packaged product are all interrelated, and while each may be provided independently, equally preferred features and refinements of each may be applied to the others. Thus, optional and preferred features of each element or aspect may be applied to each aspect, and different aspects may be combined.

Claims

1. 1. A method of forming a beverage, comprising: providing a supply of grain that has been milled as flour without being malted; mixing a quantity of said grain with a sufficient quantity of water to form a dough; processing the dough into shaped pieces formed under pressure; at least partially cooking the dough processed into the shaped pieces in a moist steam environment with steam at a temperature of at least 90 degrees Celsius and less than 100 degrees Celsius so that the starch in the grain is at least partially gelatinized to form a gelatinized dough mixture; forming a brewing mixture from said mixture of gelatinized dough; fermenting the brewed mixture to obtain an alcoholic beverage; and The amount of water is less than half the amount of the grain. A method characterized by:

2. The step of processing the dough into shaped pieces comprises: extruding the dough into pasta-like shapes or sheeting and flaking; Including, The method of claim 1.

3. At least partially cooking the dough comprises: cooking the dough at a temperature between 92 and 98 degrees Celsius and at substantially atmospheric pressure for a period of between 1 and 2 minutes so that greater than 2% by weight of the starch in the grain is gelatinized; Including, The method of claim 1.

4. obtaining at least a portion of said mixture of gelatinized dough as excess or reject from a pasta production line; consisting of The method of claim 1.

5. Prior to the fermenting step, chopping or shredding the cooked dough; adding between 1% and 30% by weight of the grain to water; adding yeast; consisting of The method of claim 1.

6. The step of forming the brewing mixture comprises: mashing, straining and boiling the mixture of gelatinized dough; mixing with yeast and water; consisting of The method of claim 1.

7. The alcoholic beverage is fermented for at least two days to produce an alcohol content of at least 2% by volume. The method of claim 1.

8. forming a pasta-like product from at least a portion of said mixture of gelatinized dough; consisting of The method of claim 1.

9. obtaining at least a portion of said mixture of gelatinized dough as excess or rejected pasta produced in the step of forming said pasta-like product; consisting of 9. The method of claim 8.

Citation Information

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