Beer-flavored beverage and method for producing beer-flavored beverage

A beer-taste beverage with reduced hops achieves the desired taste and firmness by controlling nitrogen, polyphenol, and 2,3-diethyl-5-methylpyrazine levels, addressing consumer preferences for reduced hop bitterness and maintaining beer-like qualities.

JP7748968B2Active Publication Date: 2025-10-03SUNTORY HLDG LTD
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Patent Information

Application Number
JP2022566897
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-12-01
Filing Date
2021-11-29
Publication Date
2025-10-03
Estimated Expiration
2041-11-29

AI Technical Summary

Technical Problem

There is a demand for beer-flavored beverages that use reduced amounts of hops and maintain the taste and firmness typical of beer-flavored beverages, as consumers increasingly dislike the bitterness and astringency derived from hops, leading to stagnating consumption of traditional beer-flavored beverages.

Method used

A beer-taste beverage with reduced hops, characterized by a bitterness value of 18 BUs or less, a total nitrogen content of 5 to 140 mg/100 mL, a total polyphenol content of 3 to 200 ppm by mass, and a 2,3-diethyl-5-methylpyrazine content of 0.02 ppb or more, which can be achieved through controlled use of ingredients and fermentation processes.

Benefits of technology

The solution provides a beer-taste beverage that retains the taste and firmness characteristic of beer-flavored beverages, even with reduced hops, by adjusting nitrogen, polyphenol, and 2,3-diethyl-5-methylpyrazine contents, thereby appealing to consumers who dislike hop bitterness.

✦ Generated by Eureka AI based on patent content.

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Abstract

This beer-taste beverage has a bitter taste value of at most 18 BUs, a total nitrogen amount of 5-140 mg / 100 mL, a total polyphenol amount of 3-200 ppm by mass, and a content of 2,3-diethyl-5-methylpyrazine of at least 0.02 ppb by mass.
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Description

[Technical Field]

[0001] The present invention relates to a beer-taste beverage and a method for producing a beer-taste beverage. [Background technology]

[0002] Beer-flavored beverages such as regular beer and happoshu (low-malt beer) use malt and hops as their main ingredients. By using malt as an ingredient, beverages rich in the umami and flavor derived from malt can be produced. By using hops as an ingredient, beverages with a rich flavor can be produced due to the bitterness, astringency, and other flavors unique to hops. In recent years, the number of consumers who dislike the bitterness and astringency derived from hops has increased, and consumption of beer-flavored beverages is said to be stagnating. Development of beer-flavored beverages that do not use hops as an ingredient is also progressing (for example, JP 2017-6077 A (Patent Document 1)). However, some beer-flavored beverages that do not use hops can lack body and have a weak flavor. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2017-6077 Summary of the Invention [Problem to be solved by the invention]

[0004] There is a demand for beer-flavored beverages that use reduced amounts of hops and that have the taste and firmness typical of beer-flavored beverages. [Means for solving the problem]

[0005] The present invention provides a beer-taste beverage in which the amount of hops used is reduced, and which has a total nitrogen content of 5 to 140 mg / 100 mL, a total polyphenol content of 3 to 200 ppm by mass, and a 2,3-diethyl-5-methylpyrazine content of 0.02 ppb by mass or more.

[0006] The present invention includes the following aspects. [1] A beer-flavored beverage having a bitterness value of 18 BUs or less, a total nitrogen content of 5 to 140 mg / 100 mL, a total polyphenol content of 3 to 200 ppm by mass, and a 2,3-diethyl-5-methylpyrazine content of 0.02 ppb by mass or more. [2] The beer-flavored beverage according to [1], having a bitterness value of 5 BUs or less. [3] The beer-flavored beverage according to [1] or [2], which is substantially free of components derived from hops. [4] The beer-taste beverage according to any one of [1] to [3], wherein the content of 2,3-diethyl-5-methylpyrazine is 100 ppb by mass or less. [5] The beer-taste beverage according to any one of [1] to [4], wherein the original wort extract (O-Ex) concentration is 5 to 18% by mass. [6] The beer-taste beverage according to any one of [1] to [5], wherein the ratio of total nitrogen (mg / 100 mL) to total polyphenols (ppm by mass) is 0.2 to 3.0. [7] The beer-taste beverage according to any one of [1] to [6], wherein at least a portion of the nitrogen or polyphenols is derived from malt. [8] The beer-taste beverage according to any one of [1] to [7], wherein at least a portion of the nitrogen or polyphenols is derived from corn. [9] The beer-taste beverage according to any one of [1] to [8], wherein the malt content is 90% by mass or less.

[10] The beer-taste beverage according to any one of [1] to [8], wherein the malt content is 0% by mass.

[11] The beer-taste beverage according to any one of [1] to

[10] , wherein the beer-taste beverage is a fermented beer-taste beverage.

[12] The beer-taste beverage according to any one of [1] to

[10] , wherein the beer-taste beverage is a non-fermented beer-taste beverage.

[13] A method for producing a beer-taste beverage according to

[11] , comprising: A method for producing a beer-taste beverage, comprising the steps of adding yeast to water and raw materials that can be assimilated by the yeast, and carrying out alcoholic fermentation.

[14] The method for producing a beer-taste beverage according to

[13] , wherein the raw materials that can be assimilated by yeast include malt and corn, and the proportion of malt used is 90% by mass or less. [Effects of the Invention]

[0007] According to a preferred embodiment of the present invention, a beer-taste beverage is provided that uses a reduced amount of hops, and that has a taste and a firmness that is typical of beer-taste beverages. DETAILED DESCRIPTION OF THE INVENTION

[0008] 1. Beer-flavored beverages The beer-taste beverage of the present invention has a bitterness value of 18 BUs or less, a total nitrogen content of 5 to 140 mg / 100 mL, a total polyphenol content of 3 to 200 ppm by mass, and a 2,3-diethyl-5-methylpyrazine content of 0.02 ppb by mass or more.

[0009] As used herein, the term "beer-taste beverage" refers to an alcoholic or non-alcoholic carbonated beverage with a beer-like flavor. In other words, unless otherwise specified, the term "beer-taste beverage" as used herein encompasses any carbonated beverage with a beer flavor. Therefore, it is not limited to beverages produced by adding yeast to wort and fermenting it, but also encompasses any carbonated beverage with a beer flavor that contains added beer flavorings, including esters, higher alcohols (e.g., isoamyl acetate, ethyl acetate, n-propanol, isobutanol, acetaldehyde, ethyl caproate, linalool, 4-vinylguaiacol, isoamyl propionate, etc.), acids (e.g., 2-methyl-2-pentenoic acid, 4-methyl-3-pentenoic acid), etc. The term "carbonated beverages" is not limited to fermented beverages produced by adding yeast to wort or a pre-fermentation liquid containing the components necessary for fermentation and then fermenting the resulting beverage, but also includes fermented and non-fermented carbonated beverages to which beer flavorings (flavorings that evoke a beer-like aroma) have been added, including esters, higher alcohols, and lactones, such as isoamyl acetate, ethyl acetate, n-propanol, isobutanol, acetaldehyde, ethyl caproate, ethyl caprylate, isoamyl propionate, linalool, geraniol, citral, 4-vinylguaiacol (4-VG), 4-methyl-3-pentenoic acid, 2-methyl-2-pentenoic acid, 1,4-cineole, 1,8-cineole, 2,3-diethyl-5-methylpyrazine, γ-decanolactone, γ-undecalactone, ethyl hexanoate, ethyl 2-methylbutyrate, ethyl n-butyrate, myrcene, methional, furfural, and furaneol. A non-alcoholic beer-taste beverage may be a fermented beverage obtained by fermenting using yeast (top-fermenting yeast and / or bottom-fermenting yeast) in the production process, followed by removal of the alcohol produced during the fermentation process, resulting in an alcohol content of less than 1 (v / v%). It may also be a fermented beverage obtained by terminating fermentation so that the alcohol content is less than 1 (v / v%). It may also be a fermented beverage diluted with water or the like so that the alcohol content is less than 1 (v / v%). When fermentation is terminated, it is preferable to terminate fermentation so that the levels of off-flavors such as hydrogen sulfide, diacetyl, 2,3-pentanedione, and acetaldehyde are below a threshold, but this is not necessarily required. The concentration of off-flavors such as hydrogen sulfide, diacetyl, 2,3-pentanedione, and acetaldehyde is not limited as long as they blend with the flavor and aroma of the beer-taste beverage to create a favorable flavor. It may also be a non-fermented beverage prepared without a fermentation process. Furthermore, the beer-taste beverage of one embodiment of the present invention may be a fermented beer-taste beverage that has undergone a fermentation process using yeast, or a non-fermented beer-taste beverage that has not undergone a fermentation process. The fermented beer-taste beverage may be a top-fermented beer-taste beverage brewed through a fermentation process using top-fermenting yeast, or a bottom-fermented beer-taste beverage brewed through a fermentation process using bottom-fermenting yeast. Fermentation may be carried out using alcohol-producing yeast (Saccharomyces) or wild yeast (Brettanomyces, etc.), or may be carried out using non-alcohol-producing yeast (Saccharomyces, etc.), wild yeast (Brettanomyces, etc.), or bacteria that perform lactic acid fermentation or gluconic acid fermentation. Furthermore, the beer-taste beverage of one embodiment of the present invention may be an alcohol-containing beer-taste beverage with an alcohol content of 1 (v / v)% or more, or a non-alcoholic beer-taste beverage with an alcohol content of less than 1 (v / v)%. The non-alcoholic beer-taste beverage may be a non-alcoholic fermented beer-taste beverage produced by fermenting and then removing the alcohol produced in the fermentation process, or a non-alcoholic, non-fermented beer-taste beverage prepared to have a beer-like flavor without undergoing a fermentation process. In addition, the beer-taste beverage of one embodiment of the present invention may be a malt-based beer-taste beverage that uses malt as an ingredient, or a malt-free beer-taste beverage that does not use malt, although a malt-based beer-taste beverage is preferred, and a barley malt beer-taste beverage is more preferred. Alternatively, the fermented beer-taste beverage of one embodiment of the present invention may be an ale-taste beverage brewed through a fermentation process using top-fermenting yeast, or a lager-taste beverage brewed through a fermentation process using bottom-fermenting yeast. Furthermore, the fermented beer-taste beverage of one embodiment of the present invention may be a beer-taste beverage containing distilled alcoholic beverages such as spirits, whiskey, or shochu, with spirit-containing beer-taste beverages being preferred.

[0010] The beer-taste beverage of the present invention uses a reduced amount of hops and has a bitterness value of 18 BUs or less. As used herein, "bitterness value" refers to an index of the bitterness caused by iso-α acids such as isohumulone. The bitterness value can be measured according to the method described in Section 8.15, "Bitterness Value," of the BCOJ Beer Analysis Methods (revised November 1, 2004). Specifically, an acid is added to a degassed sample, followed by extraction with isooctane. The absorbance of the resulting isooctane layer is measured at 275 nm against isooctane, and the bitterness value (BUs) can be obtained by multiplying the value by a factor. The bitterness value is not particularly limited as long as it is 18 BUs or less, but is preferably 17 BUs or less, more preferably 16 BUs or less, even more preferably 15 BUs or less, even more preferably 14 BUs or less, even more preferably 13 BUs or less, even more preferably 12 BUs or less, even more preferably 11 BUs or less, even more preferably 10 BUs or less, even more preferably 9 BUs or less, even more preferably 8 BUs or less, even more preferably 7 BUs or less, even more preferably 6 BUs or less, even more preferably 5 BUs or less, even more preferably 4 BUs or less, even more preferably 3 BUs or less, even more preferably 2 BUs or less, even more preferably 1 BUs or less, even more preferably 0.5 BUs or less, and particularly preferably 0.1 BUs or less. The bitterness value depends on the content of iso-α acids in the beverage, which are bitter components found in large amounts in hops. Therefore, by controlling the amount of hops used, it is possible to produce a beverage with a desired bitterness value. The bitterness value can be controlled by adjusting the hop variety, the amount of hops used, the timing of hop addition, the temperature at which hops are added and the holding time at that temperature range, the pH at which hops are added, the original extract concentration in the pre-fermentation liquid, the original extract concentration in the fermentation process, fermentation conditions (oxygen concentration, aeration conditions, yeast variety, amount of yeast added, yeast growth rate, timing of yeast removal, fermentation temperature, fermentation time, pressure setting, carbon dioxide concentration, etc.), beer filtration conditions, the addition of dilution water, the addition of carbonated water, etc. It can also be adjusted by using commercially available hop processed products (such as iso-α acids), and the adjustment can be made by adjusting the amount, type, timing of addition, temperature at which addition is made and the holding time at that temperature range, the pH at the time of addition, the original extract concentration in the pre-fermentation liquid, the original extract concentration in the fermentation process, fermentation conditions (oxygen concentration, aeration conditions, yeast variety, amount of yeast added, yeast growth rate, timing of yeast removal, fermentation temperature, fermentation time, pressure setting, carbon dioxide concentration, etc.), beer filtration conditions, the addition of dilution water, the addition of carbonated water, etc. Hops may be pelleted hops, extracted hops, or hop bracts. Hops and hop processed products may be used alone or in combination. Furthermore, beverages that are substantially free of hop-derived components can be produced by not using hops as an ingredient.

[0011] Some beer-taste beverages that do not use hops lack a firm texture and have a weak flavor. Even when the amount of hops used is reduced so that the bitterness value is 18 BUs or less, the beer-taste beverage of the present invention can still have a taste and a firm texture characteristic of a beer-taste beverage by adjusting the total nitrogen content to 5 to 140 mg / 100 mL, the total polyphenol content to 3 to 200 ppm by mass, and the 2,3-diethyl-5-methylpyrazine content to 0.02 ppb by mass or more.

[0012] The total nitrogen content of the beer-taste beverage of the present invention is 5 to 140 mg / 100 mL. In the present invention, "total nitrogen content" refers to the total amount of all nitrogen compounds such as proteins and amino acids. The total nitrogen content affects the firmness, drinking response, depth of flavor, taste, etc. By ensuring that the total nitrogen content is 5 mg / 100 mL or more, the firmness, drinking response, depth of flavor, and taste can be improved. From the perspective of further improving these, the total nitrogen content of the beer-taste beverage of the present invention is preferably 10 mg / 100 mL or more, more preferably 15 mg / 100 mL or more, even more preferably 20 mg / 100 mL or more, even more preferably 25 mg / 100 mL or more, and particularly preferably 30 mg / 100 mL or more. On the other hand, if the total nitrogen content is high, the beverage will have a heavy mouthfeel. Therefore, by setting the total nitrogen content of the beverage of the present invention to 140 mg / 100 mL or less, the beverage will have a light mouthfeel. From the viewpoint of further improving these properties, the total nitrogen content is preferably 130 mg / 100 mL or less, more preferably 125 mg / 100 mL or less, more preferably 120 mg / 100 mL or less, even more preferably 115 mg / 100 mL or less, even more preferably 110 mg / 100 mL or less, and particularly preferably 105 mg / 100 mL or less. The total nitrogen content of the carbonated beverage of the present invention can be determined by appropriately setting filtration conditions such as the addition of dilution water or carbonated water, the type of raw materials (malt, corn grits, sugar solution, etc.), the amount of raw materials, the type of enzyme, the amount of enzyme (including proteolytic enzymes, etc.) added, the temperature during the enzyme reaction, the timing of enzyme addition, the proteolysis time in the brewing tank, the pH in the brewing tank, the temperature in the brewing tank, the pH during the brewing process (the wort production process from the addition of malt to before the addition of yeast), the temperature during the brewing process, the temperature during wort filtration, the time of wort filtration, the pH during wort filtration, the amount of sparging water used during wort filtration, the set temperatures and holding times for each temperature range when preparing the wort, the boiling time and pH in the boiling process, the original extract concentration of the pre-fermentation liquid, the original extract concentration during the fermentation process, and the fermentation conditions (oxygen concentration, aeration conditions, yeast variety, amount of yeast added, yeast growth rate, timing of yeast removal, fermentation temperature, fermentation time, pressure setting, carbon dioxide concentration, etc.). When not using beer brewing equipment such as brewing tanks or fermentation tanks, the total nitrogen amount can be adjusted by adding dilution water or carbonated water, selecting the amount and type of raw materials used, as well as by appropriately setting the time during the production process (such as the mixing time for mixing the raw materials), the temperature during the production process, the pH during the production process, the original extract concentration during the production process, etc. For example, the total nitrogen content of the beer-taste beverage of the present invention can be controlled by adjusting the amount of raw materials used that have a relatively high nitrogen content and can be assimilated by yeast. Specifically, the total nitrogen content can be increased by increasing the amount of malt or other raw materials with a high nitrogen content. Examples of raw materials with a high nitrogen content include malt, soybeans, yeast extract, peas, ungerminated grains, collagen, collagen peptides, and yeast extract. Examples of ungerminated grains include ungerminated barley, wheat, rye, oats, oats, pearl barley, oats, soybeans, and peas. The total nitrogen content of the beer-taste beverage of the present invention can be measured, for example, by the method described in 8.9 Total Nitrogen in the Revised BCOJ Beer Analysis Methods (published by the Brewery Society of Japan, a public interest incorporated foundation, edited by the International Technical Committee of the Brewers Association of Japan (Analysis Committee), revised and expanded in 2013).

[0013] The total polyphenol content of the beer-taste beverage of the present invention is 3 to 200 ppm by mass. Polyphenols are compounds in which two or more hydrogen atoms of an aromatic hydrocarbon have been replaced with hydroxyl groups. Examples of polyphenols include flavonols, isoflavones, tannins, catechins, quercetin, and anthocyanins. In the present invention, the "total amount of polyphenols" refers to the total amount of these polyphenols contained in the beer-taste beverage.

[0014] The amount of total polyphenols affects the drinking response, depth of flavor, taste, etc. By setting the total polyphenol amount to 3 ppm by mass or more, it is possible to improve the firmness, drinking response, depth of flavor, and taste. From the viewpoint of further improving these, the total polyphenol amount is preferably 4 ppm by mass or more, more preferably 7 ppm by mass or more, even more preferably 10 ppm by mass or more, even more preferably 15 ppm by mass or more, more preferably 20 ppm by mass or more, even more preferably 25 ppm by mass or more, and particularly preferably 30 ppm by mass or more. On the other hand, beverages with a high total polyphenol content have reduced cloudiness stability and a heavy mouthfeel. Therefore, by adjusting the total polyphenol content of the beverage of the present invention to 200 ppm by mass or less, the cloudiness stability and mouthfeel of the beverage can be improved. To further improve these properties, the total polyphenol content is preferably 190 ppm by mass or less, more preferably 180 ppm by mass or less, even more preferably 170 ppm by mass or less, and particularly preferably 163 ppm by mass or less. The total polyphenol content of the beer-taste beverage of the present invention can be adjusted by appropriately setting the addition of dilution water or carbonated water, the type of raw material (raw materials containing polyphenols such as malt), the amount of raw material, the type of enzyme, the amount of enzyme added, the timing of enzyme addition, the pH in the mash tank, the pH during the mashing process (the wort production process from the addition of malt to before the addition of yeast), the time for wort filtration, the set temperatures and holding times for each temperature range when preparing wort (including during saccharification), the original extract concentration in the pre-fermentation liquid, the original extract concentration during the fermentation process, and the fermentation conditions (oxygen concentration, aeration conditions, yeast variety, amount of yeast added, yeast growth rate, timing of yeast removal, fermentation temperature, fermentation time, pressure setting, carbon dioxide concentration, etc.). When not using beer brewing equipment such as brewing tanks or fermentation tanks, the total polyphenol content can be adjusted by adding dilution water or carbonated water, selecting the amount and type of raw materials used, as well as by appropriately setting the time during the production process (such as the mixing time for mixing the raw materials), the temperature during the production process, the pH during the production process, the original extract concentration during the production process, etc. Furthermore, the total polyphenol content of the carbonated beverage of the present invention can be controlled by adjusting the amounts of raw materials used, such as grain raw materials such as barley or malt with high polyphenol content, such as barley malt and malt husks (grain husks), tea raw materials such as green tea, barley tea, black tea, and oolong tea, coffee raw materials such as coffee beans, peels, fruits, seeds, etc. Specifically, the total polyphenol content can be increased by increasing the amount of raw materials used, such as malt with high polyphenol content.

[0015] Generally, malt containing husks (grain husks) has a high nitrogen and polyphenol content, while soybeans, yeast extract, wheat, and wheat malt have a high nitrogen content but a low polyphenol content. Therefore, the total nitrogen and polyphenol content in a beer-flavored beverage can be increased or decreased by adjusting the blending ratio of the ingredients. Representative methods (1) to (4) for increasing or decreasing the total nitrogen and polyphenol content are listed below. (1) By increasing the amount of malt containing husks, the total nitrogen and polyphenol content of beer-flavored beverages can be increased. (2) By increasing or decreasing the amount of soybeans, yeast extract, etc. used, the total nitrogen content of the beer-flavored beverage can be increased or decreased while maintaining the total polyphenol content. (3) By increasing the amount of malt containing husk and decreasing the amount of soybeans, yeast extract, etc., the total amount of polyphenols can be increased while maintaining the total amount of nitrogen. (4) By reducing the amount of malt containing husk and increasing the amount of soybeans, yeast extract, etc., the total amount of polyphenols can be reduced while maintaining the total amount of nitrogen.

[0016] The total polyphenol content of the beer-taste beverage of the present invention can be measured, for example, by the method described in Revised BCOJ Beer Analysis Methods (published by the Brewery Society of Japan, a public interest incorporated foundation, edited by the International Technical Committee (Analysis Committee) of the Brewers Association of Japan, revised and expanded in 2013), 8.19 Total Polyphenols.

[0017] In the beer-taste beverage of the present invention, from the viewpoint of reducing wateriness and providing a beverage that is light to drink, the ratio of total nitrogen to total polyphenols, that is, total nitrogen (mg / 100 mL) / total polyphenols (ppm by mass), is preferably 0.2 to 3.0, more preferably 0.25 to 2.8, even more preferably 0.3 to 2.7, even more preferably 0.35 to 2.6, even more preferably 0.4 to 2.5, and particularly preferably 0.5 to 2.4. The ratio of total nitrogen (mg / 100 mL) to total polyphenols (ppm by mass) may be 0.55 or more, 0.6 or more, 0.65 or more, 0.7 or more, 0.75 or more, or 0.8 or more, and may be 2.2 or less, 2.0 or less, 1.8 or less, 1.5 or less, 1.2 or less, or 1.0 or less.

[0018] In the beer-taste beverage of the present invention, from the perspective of providing a beverage with an improved beer-taste-like taste, it is preferable that at least a portion of the nitrogen or polyphenols is derived from malt. Furthermore, in the beer-taste beverage of the present invention, from the perspective of providing a beverage with an improved firmness characteristic of beer-taste beverages, it is preferable that at least a portion of the nitrogen or polyphenols is derived from corn. In other words, from the perspective of producing a beverage that has both an improved beer-flavored taste and a firm texture, it is preferable that at least a portion of the nitrogen or polyphenols is derived from malt and corn.

[0019] The beer-taste beverage of the present invention contains 2,3-diethyl-5-methylpyrazine, with the content being 0.02 ppb by mass or more. 2,3-Diethyl 5-methylpyrazine imparts a beer-like taste and firmness, and can therefore effectively improve the taste and firmness of beer-flavored beverages with a reduced bitterness value. In particular, beer-flavored beverages with a bitterness value of 18 BUs or less have a low perceived bitterness derived from hops, while beer-flavored beverages with a total nitrogen and total polyphenol content above a certain level tend to have a pronounced malt flavor. Therefore, adding a certain amount of 2,3-diethyl 5-methylpyrazine can effectively impart a beer-flavored taste and firmness. Therefore, the content of 2,3-diethyl-5-methylpyrazine in the beer-taste beverage of the present invention is preferably 0.05 mass ppb or more, more preferably 0.1 mass ppb or more, even more preferably 0.2 mass ppb or more, even more preferably 0.3 mass ppb or more, even more preferably 0.4 mass ppb or more, even more preferably 0.5 mass ppb or more, even more preferably 0.6 mass ppb or more, even more preferably 0.7 mass ppb or more, even more preferably 0.8 mass ppb or more, even more preferably 0.9 mass ppb or more, and particularly preferably 1.0 mass ppb or more. On the other hand, from the viewpoint of producing a beverage with a firm texture characteristic of a beer-flavored beverage, the content of 2,3-diethyl-5-methylpyrazine in the beverage of the present invention is preferably 100 mass ppb or less, more preferably 80 mass ppb or less, even more preferably 70 mass ppb or less, even more preferably 60 mass ppb or less, even more preferably 50 mass ppb or less, even more preferably 40 mass ppb or less, and particularly preferably 30 mass ppb or less. The 2,3-diethyl 5-methylpyrazine content in the beer-taste beverage of the present invention can be controlled, for example, by adding 2,3-diethyl 5-methylpyrazine or adjusting the amount of raw materials with a high 2,3-diethyl 5-methylpyrazine content used.

[0020] The content of 2,3-diethyl-5-methylpyrazine in the beer-taste beverage of the present invention can be measured by gas chromatography-mass spectrometry (m / z 135).

[0021] The beer-taste beverage of the present invention includes a non-alcoholic beer-taste beverage. The alcohol content of the beer-taste beverage of the present invention is not limited, but is preferably 0 to 20.0 (v / v)%, more preferably 0.5 to 17.0 (v / v)% or more, even more preferably 1.0 to 15.0 (v / v)%, even more preferably 2.0 to 12.0 (v / v)%, even more preferably 3.0 to 10.0 (v / v)%, and particularly preferably 4.0 to 9.0 (v / v)%. In this specification, the alcohol content is expressed as a volume / volume percentage (v / v%). The alcohol content of a beverage can be measured by any known method, for example, using a vibration density meter.

[0022] Furthermore, the beer-taste beverage of one embodiment of the present invention may further contain grain-derived spirits as an alcohol component. In this specification, spirits refers to alcoholic beverages obtained by saccharifying grains such as barley, rice, buckwheat, and corn using malt or, if necessary, an enzyme agent, fermenting the grains using yeast, and then distilling the saccharified grains. Barley is preferred as the grain used as the raw material for spirits.

[0023] The color of the beer-taste beverage of one embodiment of the present invention is not particularly limited, and may be amber or golden like regular beer, black like dark beer, or colorless and transparent, or may be imparted with a desired color by adding a coloring agent, etc. The color of the beer-taste beverage can be distinguished with the naked eye, but may also be specified by total luminous transmittance, chromaticity, etc.

[0024] The pH of the beer-taste beverage of one embodiment of the present invention is not particularly limited, but is preferably 2.0 to 4.6, more preferably 2.5 to 4.5, even more preferably 3.0 to 4.2, and particularly preferably 3.2 to 4.0. The pH of the beer-taste beverage is preferably 4.5 or lower, even more preferably 4.3 or lower, even more preferably 4.2 or lower, even more preferably 4.1 or lower, even more preferably 4.0 or lower, even more preferably 3.9 or lower, even more preferably 3.8 or lower, and particularly preferably 3.7 or lower. Furthermore, a pH of 2.0 or higher for the beer-taste beverage of the present invention tends to improve the flavor and aroma of the beverage, and is preferably 2.2 or higher, more preferably 2.2 or higher, even more preferably 2.5 or higher, even more preferably 2.7 or higher, and particularly preferably 3.0 or higher. The pH of alcohol-containing beer-taste beverages is preferably 3.0 to 4.5, more preferably 3.3 to 4.3, and particularly preferably 3.5 to 4.0, while the pH of non-alcohol beer-taste beverages is preferably 3.0 to 4.5, more preferably 3.0 to 4.0, and particularly preferably 3.2 to 3.8. The pH can be adjusted by appropriately setting the addition of dilution water or carbonated water, the type of raw materials (malt, corn grits, sugar solution, etc.), the amount of raw materials, the type of enzyme, the amount of enzyme added, the timing of enzyme addition, the saccharification time in the mash tank, the proteolysis time in the mash tank, the pH in the mash tank, the pH during the mashing process (the wort production process from the addition of malt to before the addition of yeast), the type of acid used to adjust the pH (lactic acid, phosphoric acid, malic acid, tartaric acid, citric acid, etc.), the amount of acid added to adjust the pH, the timing of pH adjustment (during mashing, during fermentation, at the completion of fermentation, before beer filtration, after beer filtration, etc.), the set temperatures and holding times for each temperature range when preparing wort (including during saccharification), the original extract concentration of the pre-fermentation liquid, the original extract concentration during the fermentation process, and the fermentation conditions (oxygen concentration, aeration conditions, yeast variety, amount of yeast added, yeast growth rate, timing of yeast removal, fermentation temperature, fermentation time, pressure setting, carbon dioxide concentration, etc.). When not using beer brewing equipment such as a brewing tank or fermentation tank, the pH can be adjusted by adding dilution water or carbonated water, adding minerals (sodium salts, potassium salts, calcium salts, magnesium salts, etc.), adding water containing minerals, selecting the amount and type of acidulant used, the amount and type of raw materials used, as well as by appropriately setting the time during the production process (such as the mixing time involved in mixing the raw materials), the temperature during the production process, the pH during the production process, the original extract concentration during the production process, etc. The pH of the carbonated beverage according to the present invention can be measured by the method described in "8.7 pH" of the Revised BCOJ Beer Analysis Method (published by the Brewery Society of Japan, a public interest incorporated foundation, edited by the International Technical Committee (Analysis Committee) of the Brewers Association of Japan, revised and expanded in 2013).

[0025] The concentration of original wort extract (O-Ex) in a beer-taste beverage according to one embodiment of the present invention is not particularly limited, but in the case of an alcoholic beer-taste beverage, from the viewpoint of imparting a light drinking experience to the beer-taste beverage, the concentration is preferably 5 to 18% by mass, more preferably 8 to 15% by mass, even more preferably 9 to 14% by mass, and particularly preferably 10 to 13.5% by mass. In this specification, the "original wort extract concentration" refers to the extract content defined by the Japanese Liquor Tax Law for beverages with an alcohol content of 1 (v / v)% or more, i.e., the concentration of the original wort extract at a temperature of 15°C in an original volume of 100 cm 3 For beverages with an alcohol content of less than 1% (v / v), it refers to the extract value (mass%) measured on a degassed sample in accordance with the analytical method established by the Brewers Association of Japan (BOCJ Beer Analysis Methods (Fermentation, Brewery Society of Japan, edited by the Brewers Association of Japan, revised November 1, 2004)).

[0026] The beer-taste beverage of one embodiment of the present invention is suitable for packaging in a container, such as a glass bottle, a plastic bottle, a can, or a barrel, with cans, glass bottles, and plastic bottles being preferred from the standpoint of portability. Furthermore, unlike regular cans or colored bottles, when colorless, transparent glass or PET bottles are used, they are exposed to sunlight and fluorescent light. However, because the beer-taste beverage of one embodiment of the present invention is substantially free of hop-derived components, the generation of sunlight-related odors caused by exposure to sunlight is suppressed. Therefore, the beer-taste beverage of one embodiment of the present invention can also be filled into such colorless, transparent glass or PET bottles.

[0027] Optional ingredients such as grains and sweeteners that can be used in producing the beer-taste beverage of the present invention are described in detail in "1.1 Ingredients."

[0028] 1.1 Raw materials The main ingredients of the non-alcoholic beer-taste beverage of one embodiment of the present invention may be water and malt, or may not contain malt. Hops may also be used, as well as preservatives, sweeteners, water-soluble dietary fiber, bittering agents or bitterness-imparting agents, antioxidants, flavorings, acidulants, salts, etc.

[0029] When malt is used as a raw material, the malt refers to germinated, dried, and de-rooted seeds of wheat, such as barley, wheat, rye, oats, oats, adlay, and oats, and can be of any origin or variety. In the present invention, it is preferable to use barley malt. Barley malt is one of the malts most commonly used as an ingredient in beer-flavored beverages in Japan. Barley comes in varieties such as two-row barley and six-row barley, and either may be used. Furthermore, in addition to regular malt, colored malt may also be used. When colored malt is used, different types of colored malt may be used in combination as appropriate, or a single type of colored malt may be used.

[0030] In addition to malt, grains other than malt, proteins, yeast extracts, sugar solutions, etc. may also be used. Examples of such grains include wheat (barley, wheat, rye, oats, oats, pearl barley, oats, etc.) that do not fall under the category of malt, rice (white rice, brown rice, etc.), corn (corn grits, etc.), koryan (rice bran), potatoes, beans (soybeans, peas, etc.), buckwheat, sorghum, millet, barnyard millet, and starches obtained therefrom, as well as extracts thereof. Among these, corn (corn grits, etc.) is preferred. Examples of proteins include soybean protein, pea protein, yeast extract, and hydrolyzed products thereof.

[0031] In cases where malt is not used, examples of beer-flavored beverages include liquid sugar containing a carbon source and a nitrogen source such as an amino acid-containing material (e.g., soy protein) from the above-mentioned grains other than malt.

[0032] Malt contains nitrogen compounds and polyphenols. Therefore, in the present invention, it is preferable to set the proportion of malt in the raw materials within a certain range so that the total nitrogen and polyphenol contents of the beer-taste beverage of the present invention fall within the ranges specified by the present invention. Specifically, the proportion of malt used (the proportion of all malt used) is preferably 1% by mass or more, more preferably 3% by mass or more, and even more preferably 4% by mass or more. By setting the proportion of malt used within the above range, a beer-taste beverage with a beer-like flavor derived from malt can be produced. Furthermore, the proportion of malt used in the beer-taste beverage of the present invention may be 10% by mass or more, 20% by mass or more, or 30% by mass or more. The malt content of the beer-taste beverage of the present invention is preferably 90% by mass or less, more preferably 80% by mass or less, and even more preferably 75% by mass or less, and may also be 65% by mass or less, 60% by mass or less, 55% by mass or less, or 50% by mass or less. In this specification, the malt usage ratio means a value calculated in accordance with the Liquor Tax Act and the Interpretation Notice of Liquor Administration-related Laws and Regulations, etc., which came into effect on April 1, 2018.

[0033] When the proportion of malt is reduced, it is preferable to increase the amount of raw materials (carbon source, nitrogen source) other than malt that can be assimilated by yeast. Carbon sources of raw materials that can be assimilated by yeast include monosaccharides, disaccharides, trisaccharides, and their sugar solutions, while nitrogen sources include yeast extract, soy protein, malt, soybeans, yeast extract, peas, wheat malt, ungerminated grains, and decomposition products thereof. Examples of ungerminated grains include ungerminated barley, wheat, rye, oats, oats, pearl barley, oats, soybeans, and peas. In particular, using sugars as raw materials can effectively suppress the barley aroma derived from malt.

[0034] The 2,3-diethyl 5-methylpyrazine contained in the beer-taste beverage of one embodiment of the present invention may be 2,3-diethyl 5-methylpyrazine contained in the raw materials, or an additive containing 2,3-diethyl 5-methylpyrazine or 2,3-diethyl 5-methylpyrazine may be added. Alternatively, if 2,3-diethyl 5-methylpyrazine is produced during the brewing process, that 2,3-diethyl 5-methylpyrazine may be used.

[0035] Hops used in one embodiment of the present invention may be in the form of, for example, pelleted hops, powdered hops, hop extract, etc. Furthermore, processed hop products such as isomerized hops and reduced hops may also be used.

[0036] Examples of preservatives include benzoic acid; benzoates such as sodium benzoate; benzoate esters such as propyl parahydroxybenzoate and butyl parahydroxybenzoate; and dimethyl dicarbonate. Commercially available preservatives, such as Strong Sunplazer (a mixture of sodium benzoate and butyl benzoate, manufactured by San-Ei Gen F.F.I. Co., Ltd.), may also be used. These preservatives may be used alone or in combination. The amount of the preservative to be added is preferably 5 to 1200 ppm by mass, more preferably 10 to 1100 ppm by mass, even more preferably 15 to 1000 ppm by mass, and still more preferably 20 to 900 ppm by mass.

[0037] Examples of sweeteners include commercially available saccharified solutions prepared by decomposing grain-derived starch with acids or enzymes, commercially available sugars such as starch syrup, sugars of three or more sugars, sugar alcohols, natural sweeteners such as stevia, and artificial sweeteners. These sugars may be in the form of a liquid such as a solution, or a solid such as a powder. There are also no particular limitations on the type of grain from which starch is produced, the starch purification method, or the conditions for enzymatic or acidic hydrolysis. For example, sugars with a higher maltose content may be used by appropriately setting the conditions for enzymatic or acidic hydrolysis. Other sugars that can be used include sucrose, fructose, glucose, maltose, trehalose, maltotriose, and solutions thereof (sugar solutions). Examples of artificial sweeteners include aspartame, acesulfame potassium (acesulfame K), sucralose, and neotame.

[0038] Examples of water-soluble dietary fibers include indigestible dextrin, polydextrose, hydrolyzed guar gum, pectin, glucomannan, alginic acid, laminarin, fucoidin, and carrageenan. From the viewpoint of versatility such as stability and safety, indigestible dextrin or polydextrose is preferred.

[0039] The bittering agent or bitterness imparting agent used is not particularly limited, so long as the bitterness value is within the range of 18 BUs or less, and in addition to hops, examples include rosemary, lychee, anise, juniper nut, sage, elm, Ganoderma lucidum, bay laurel, mulberry, citrus extract, bitter persimmon extract, coffee extract, tea extract, bitter gourd extract, lotus germ extract, aloe arborescens extract, rosemary extract, lychee extract, laurel extract, sage extract, caraway extract, naringin, artemisia absinthium, and artemisia absinthium extract.

[0040] The antioxidant is not particularly limited, and any of those used as antioxidants in ordinary beer and happoshu can be used, such as ascorbic acid, erythorbic acid, and catechin.

[0041] The flavoring agent is not particularly limited, and general beer flavoring agents can be used. Beer flavoring agents are used to impart a beer-like flavor and include brewing components generated by fermentation. Specific examples of beer flavoring agents include esters and higher alcohols, and more specific examples include isoamyl acetate, ethyl acetate, n-propanol, isobutanol, acetaldehyde, ethyl caproate, linalool, 4-vinylguaiacol, isoamyl propionate, 2-methyl-2-pentenoic acid, 4-methyl-3-pentenoic acid, methional, furfural, and furaneol. These fragrances may be used alone or in combination of two or more.

[0042] The acidulant is not particularly limited as long as it is a substance that has a sour taste, but examples thereof include tartaric acid, phosphoric acid, citric acid, gluconic acid, lactic acid, malic acid, phytic acid, acetic acid, succinic acid, glucono-delta-lactone, and salts thereof. Among these acidulants, tartaric acid, phosphoric acid, citric acid, gluconic acid, lactic acid, malic acid, phytic acid, acetic acid, succinic acid, or salts thereof are preferred, and tartaric acid, phosphoric acid, citric acid, lactic acid, acetic acid, or salts thereof are more preferred. These acidulants may be used alone or in combination of two or more.

[0043] 1.2 Carbon dioxide The carbon dioxide contained in the beer-taste beverage of one embodiment of the present invention may be carbon dioxide contained in the raw materials, or may be dissolved by mixing with carbonated water or adding carbon dioxide gas. The beer-taste beverage of one embodiment of the present invention undergoes alcoholic fermentation, and therefore the carbon dioxide gas produced during this fermentation process can be used as is, but the amount of carbon dioxide gas can also be adjusted by adding carbonated water as appropriate.

[0044] The carbon dioxide concentration of the beer-taste beverage of one embodiment of the present invention is preferably 0.30 (w / w)% or more, more preferably 0.35 (w / w)% or more, even more preferably 0.40 (w / w)% or more, still more preferably 0.42 (w / w)% or more, even more preferably 0.45 (w / w)% or more, still more preferably 0.46 (w / w)% or more, still more preferably 0.47 (w / w)% or more, and particularly preferably 0.48 (w / w)%. or more, and is preferably 0.80(w / w)% or less, more preferably 0.70(w / w)% or less, even more preferably 0.65(w / w)% or less, still more preferably 0.60(w / w)% or less, still more preferably 0.59(w / w)% or less, even more preferably 0.58(w / w)% or less, still more preferably 0.57(w / w) or less, still more preferably 0.56(w / w)% or less, and particularly preferably 0.55(w / w)% or less. In this specification, the carbon dioxide concentration can be measured using a gas volume measuring device (e.g., GVA-500 (manufactured by Kyoto Electronics Manufacturing Co., Ltd.) after adjusting the temperature of the beverage to 20°C by immersing the container containing the beverage in question in a water bath at 20°C for 30 minutes or more while shaking it occasionally.

[0045] The amount of carbon dioxide contained in the beer-taste beverage of one embodiment of the present invention is expressed in terms of the carbon dioxide pressure of the beverage, but this is not particularly limited as long as it does not impede the effects of the present invention. Typically, the upper limit of the carbon dioxide pressure of the beverage is 5.0 kg / cm. 2 , 4.5kg / cm 2 , or 4.0 kg / cm 2 and the lower limit is 0.20 kg / cm 2 , 0.50kg / cm 2 , or 1.0 kg / cm 2 Any combination of these upper and lower limits may be used. For example, the carbon dioxide pressure of a beverage may be 0.20 kg / cm 2 More than 5.0kg / cm 2 Below 0.50kg / cm 2 More than 4.5kg / cm 2 or less than 1.0 kg / cm 2 More than 4.0kg / cm 2The amount of carbon dioxide gas contained in the bottled carbonated beverage of one embodiment of the present invention may be 5.0 kg / cm or less. 2 Below 4.5kg / cm 2 or less than 4.0 kg / cm 2 It may be less than 0.20 kg / cm 2 More than 0.50kg / cm 2 or more, or 1.0 kg / cm 2 Any of these upper and lower limits may be combined. For example, the carbon dioxide pressure of the beverage may be 0.20 kg / cm or more. 2 More than 5.0kg / cm 2 Below 0.50kg / cm 2 More than 4.5kg / cm 2 or less than 1.0 kg / cm 2 More than 4.0kg / cm 2 It may be the following: In this specification, the gas pressure refers to the gas pressure inside the container, unless otherwise specified. The pressure can be measured by a method well known to those skilled in the art, for example, by fixing a sample cooled to 20°C to a gas pressure gauge, opening the stopcock of the gas pressure gauge to release the gas, closing the stopcock again, swinging the gas pressure gauge, and reading the value when the pointer reaches a certain position, or by using a commercially available gas pressure measuring device.

[0046] 1.3 Other additives The beer-taste beverage of one embodiment of the present invention may contain various additives as needed, provided that the effects of the present invention are not impaired. Such additives include, for example, coloring agents, foam-forming agents, fermentation promoters, yeast extracts, protein substances such as peptide-containing substances, and seasonings such as amino acids. The coloring agent is used to give the beverage a beer-like color, and caramel coloring can be used. The foam-forming agent is used to form a beer-like foam in the beverage or to maintain the foam in the beverage, and suitable examples include plant-extracted saponin substances such as soybean saponin and quillaja saponin, plant proteins such as corn and soybean, peptide-containing substances such as collagen peptide, and yeast extract. The fermentation promoter is used to promote fermentation by yeast, and examples thereof include yeast extract, bran components such as rice or wheat, vitamins, and minerals, which may be used alone or in combination.

[0047] 1.4 Packaged beverages The beer-taste beverage of one embodiment of the present invention may be a packaged beverage. Packages of any shape and material may be used for packaged beverages. Examples of containers include glass bottles, cans, barrels, and plastic bottles. Cans, glass bottles, and plastic bottles are preferred, as they are particularly easy to carry.

[0048] 2.1 Fermented beer-flavored beverage manufacturing method The method for producing a beer-taste beverage according to one embodiment of the present invention is not particularly limited, but a method including a step of adding yeast to water and ingredients that can be assimilated by the yeast and carrying out alcoholic fermentation is preferred. Raw materials that can be assimilated by yeast are as described above in the raw materials section, but preferably include malt and corn. Furthermore, the method for producing a beer-taste beverage according to one embodiment of the present invention preferably comprises the following step (1), more preferably the step (4) of adjusting the content of 2,3-diethyl-5-methylpyrazine, and may further comprise the step (2) of blending one or more ingredients that can be assimilated by yeast and the step (3) of adding grain-derived spirits. Step (1): Adding yeast to raw materials containing water and malt to carry out alcoholic fermentation. Step (2): A step of blending one or more raw materials that can be assimilated by yeast. Step (3): Adding grain-derived spirits. Step (4): A step of adjusting the content of 2,3-diethyl-5-methylpyrazine.

[0049] The order of the above steps (1) to (4) is not particularly limited, but it is preferable that in step (2), raw materials that can be assimilated by yeast are blended with water and malt to prepare raw materials before fermentation, and then in step (1), the raw materials containing the raw materials that can be assimilated by yeast are subjected to alcoholic fermentation. Similarly, with regard to step (3), the order in which each step is performed is not particularly limited. For example, the blending of each component in step (3) may be performed on the raw materials before fermentation, before step (1), or on the raw materials after fermentation, after step (1). Similarly, the order in which the steps in step (4) are performed is not particularly limited. For example, the adjustment of the 2,3-diethyl-5-methylpyrazine content in step (4) may be performed on the raw material after fermentation in step (1), but step (4) is preferably performed last. Specifically, it is preferable to produce a beer-taste base beverage based on steps other than step (4) (e.g., steps (1) to (3)), and then adjust the 2,3-diethyl-5-methylpyrazine content of the base beverage based on step (4). In the production method of the present invention, the yeast is preferably removed by a filtration step. The order of the filtration step is not particularly limited, but it is preferably carried out between steps (2) and (3). Furthermore, the production method of the present invention has a bitterness value of 18 BUs or less, and the amount of hops used is limited. Beverages in which the amount of hops used, which have bacteriostatic effects, is limited, carry the risk of microorganisms growing and multiplying. Therefore, the production method of the present invention preferably includes a sterilization step to suppress the growth and proliferation of microorganisms. The order of the sterilization step is not particularly limited, but it is preferably performed after step (4). The sterilization step is preferably performed by heating.

[0050] The proportion of malt used in the method for producing a beer-taste beverage of one embodiment of the present invention is not particularly limited, but may be 10% by mass or more, 20% by mass or more, or 30% by mass or more, and is preferably 90% by mass or less, more preferably 80% by mass or less, even more preferably 75% by mass or less, and may even be 65% by mass or less, 60% by mass or less, 55% by mass or less, or 50% by mass or less.

[0051] <Process (1)> Step (1) is a step of adding yeast to raw materials containing water and malt to carry out alcoholic fermentation. The raw materials are prepared by placing them in a brewing kettle or tank, adding enzymes such as amylase as needed, gelatinizing and saccharifying them, filtering and boiling them, and removing solids such as coagulated proteins in a clarifying tank.Yeast is then added to ferment the mixture, and the yeast is removed using a filter or the like.The raw materials can be prepared by adding additives such as water, flavorings, acidulants, and colorings as needed. Antioxidants, bittering agents, flavorings, acidulants, colorants, etc. may be added in predetermined amounts after the fermentation process, but they may also be added at any time during the production process, including the gelatinization and saccharification processes, and the timing of addition is not limited.

[0052] The yeast used in this process can be selected appropriately taking into consideration the type of fermented beverage to be produced, the desired flavor, fermentation conditions, etc., and both top-fermenting and bottom-fermenting yeast can be used to produce the beverage of the present invention, and commercially available yeast such as the Weihenstephan-34 strain (bottom-fermenting yeast) can also be used. The yeast may be added to the raw material as a yeast suspension, or may be added to the raw material as a slurry obtained by concentrating the yeast by centrifugation or sedimentation. Alternatively, the yeast may be added after the supernatant has been completely removed after centrifugation. The amount of yeast to be added to the raw material can be determined as appropriate, but for example, 5 × 10 6 cells / mL ~ 1 × 10 8 cells / mL.

[0053] The conditions for alcoholic fermentation, such as the fermentation temperature and fermentation period, can be set as appropriate, but for example, fermentation may be carried out under the fermentation conditions for producing ordinary beer or happoshu, such as 8 to 25°C for 5 to 10 days. The temperature (increase or decrease) or pressure of the fermented liquid may be changed during the fermentation process. The beer-taste beverage of the present invention has a total nitrogen content of 5 to 140 mg / 100 mL and a total polyphenol content of 3 to 200 ppm by mass, and by controlling the content within these ranges, it is possible to impart a beer-like flavor derived from malt.

[0054] After the fermentation step, steps well known to those skilled in the art for producing beer-taste beverages, such as a storage step and a filtration step, may be carried out.

[0055] <Process (2), (3)> Step (2) is a step of blending one or more ingredients that can be assimilated by yeast. The ingredients that can be assimilated by yeast in step (2) are ingredients other than malt that serve as nitrogen and carbon sources, such as peas, corn (corn grits, etc.), rice, soybeans, yeast extract, etc., but other ingredients can also be used. These ingredients also affect the taste and aroma of the beer-flavored beverage, so it is preferable to select them appropriately based on the consumer's preferences. Step (3) is a step of adding spirits derived from grains.

[0056] <Process (4)> Step (4) is a step of adjusting the content of 2,3-diethyl-5-methylpyrazine. The beer-taste beverage of the present invention preferably has a 2,3-diethyl 5-methylpyrazine content adjusted to fall within the above-mentioned range, and such a beverage can be produced by carrying out a process including step (4). Here, if the appropriate content is achieved by the 2,3-diethyl 5-methylpyrazine derived from the raw materials, there is no need to add additional 2,3-diethyl 5-methylpyrazine. Alternatively, the 2,3-diethyl 5-methylpyrazine content of the beer-taste beverage may be adjusted in step (4) by adding 2,3-diethyl 5-methylpyrazine or an additive containing 2,3-diethyl 5-methylpyrazine.

[0057] In steps (2) to (4), the ingredients to be added in each step may be added to the raw materials before fermentation or to the raw materials after fermentation, and may be added all at once or in multiple batches. Alternatively, the raw materials that can be assimilated by yeast and the spirits may be blended at the same time, and steps (2) to (4) may be carried out simultaneously. Furthermore, when steps (2) to (4) are carried out, other additives may also be added at the same time.

[0058] 2.2 Manufacturing method for non-fermented beer-flavored beverages The method for producing a non-fermented beer-taste beverage according to one embodiment of the present invention is not particularly limited, but is the same as a typical method for producing a non-fermented beer-taste beverage, except for controlling the bitterness value, total nitrogen content, total polyphenol content, and 2,3-diethyl 5-methylpyrazine content. A specific production method for producing a non-fermented beer-taste beverage includes using a typical method to produce a non-fermented beer-taste beverage concentrate having a bitterness value of 18 BUs or less, a total nitrogen content of 5 to 140 mg / 100 mL, and a total polyphenol content of 3 to 200 ppm by mass, and then adding 2,3-diethyl 5-methylpyrazine or a raw material containing 2,3-diethyl 5-methylpyrazine to adjust the 2,3-diethyl 5-methylpyrazine content.

[0059] In one example of a method for producing a liquid base for a non-fermented beer-flavored beverage, wort, sweeteners, flavorings, and other ingredients are mixed in predetermined amounts to prepare a blend. A predetermined amount of drinking water is then added to the blend to prepare a primary liquid base. After boiling the primary liquid base, alcoholic beverages are added, and carbonated water is then added in a carbonation process. The alcoholic beverage to be added is not particularly limited, but examples of spirits that can be used include raw material alcohol, shochu, awamori, whiskey, brandy, vodka, rum, tequila, and gin.

[0060] If necessary, precipitates can be separated and removed at each stage by filtration, centrifugation, etc. Alternatively, carbonated water can be added after the raw material liquid is prepared in a concentrated state. By using these methods in a typical soft drink production process, non-fermented beverages can be easily prepared without fermentation equipment.

[0061] It is more desirable to remove the precipitate before the carbonation step or the carbonated water addition step, as this will remove substances that cause sediment and unpleasant flavors.

[0062] The fermented beer-taste beverage and non-fermented beer-taste beverage of one embodiment of the present invention obtained in this manner are filled into specified containers and distributed on the market as products. The method for packaging the beer-taste beverage is not particularly limited, and any packaging method known to those skilled in the art can be used. In the packaging process, the beer-taste beverage of the present invention is filled and sealed in a container. Containers of any shape and material may be used in the packaging process, and examples of containers include those described in "1.4 Packaged Beverages." [Example]

[0063] The present invention will be explained in more detail below with reference to examples, but the present invention is not limited to these examples. In the examples, the original wort extract concentration, total nitrogen content, and total polyphenol content were measured based on the method described in the Revised BCOJ Beer Analysis Method (published by the Brewery Society of Japan, a public interest incorporated foundation, edited by the International Technical Committee of the Brewers Association of Japan (Analysis Committee), revised and expanded in 2013).

[0064] [Examples 1 to 25, Comparative Examples 1 to 5] <Preparation of hop-based fermented beverages> The crushed barley malt and corn grits were placed in a mash tank containing 120 L of hot water, which was then gradually heated and maintained at that temperature. The water was then filtered to remove malt grains and other impurities. The raw material liquid and hops were then placed in a boiling kettle, and a sugar solution was added to achieve the specified malt ratio. The volume was then adjusted to 100 L with hot water to obtain hot wort. Specifically, the malt ratio was adjusted to 70% by mass in Examples 1 to 5 and Comparative Example 1, 49% by mass in Examples 6 to 20 and Comparative Examples 2 to 4, and 25% by mass in Examples 21 to 25 and Comparative Example 5. Corn grits were not used as a raw material in Examples 5, 10, 15, 20, 25, and Comparative Examples 1 to 5. The obtained hot wort was cooled and aerated with oxygen to obtain 60 L of a pre-fermentation liquid before the addition of yeast.

[0065] The pre-fermentation liquid thus obtained was boiled and cooled, after which beer yeast (bottom-fermenting yeast) was added to the resulting fermented mash and fermented for approximately one week. After a further maturation period of approximately one week, the yeast was removed by filtration, and extract-adjusted water was added to prepare a beer-flavored beverage. The original wort extract concentration, total nitrogen content, total polyphenol content, total nitrogen content / total polyphenol content, and 2,3-diethyl-5-methylpyrazine content of the beer-taste beverages thus obtained are shown in Tables 1 to 5. The pH of the beverages of all Examples and Comparative Examples was less than 4.2.

[0066] [Examples 26 to 35, Comparative Examples 6 to 7] <Preparation of hop-free fermented beverage> Beer-taste beverages were prepared in the same manner as in Examples 1 to 25, except that hops were not used as an ingredient. The original wort extract concentration, total nitrogen content, total polyphenol content, total nitrogen content / total polyphenol content, and 2,3-diethyl-5-methylpyrazine content of the beer-taste beverages thus obtained are shown in Tables 6 and 7. The pH of the beverages of all Examples and Comparative Examples was less than 4.55.

[0067] [Examples 36 to 42, Comparative Example 8] <Preparation of non-fermented beverages without hops> Water, collagen peptide, barley extract, liquid sugar, acidulant, beer flavoring, and wheat spirits were mixed as raw materials, and 2,3-diethyl-5-methylpyrazine was added to the raw material liquid without carrying out a fermentation process using yeast, to the contents shown in Table 8. In Examples 36 to 42 and Comparative Example 8, carbon dioxide gas was added to prepare alcohol-containing beer-flavored beverages with a carbon dioxide content of 0.520 w / w%, a pH of less than 4.0, and an alcohol content of 5.0 to 5.6 (v / v)%.

[0068] <Sensory evaluation> Evaluation of beer-flavored beverages for their "beer-flavored beverage-like taste" and "beer-flavored beverage-like firmness" The resulting beer-taste beverages were evaluated by the same four panelists who tasted each beverage as follows:

[0069] Each panelist tasted the beer-taste beverages cooled to approximately 4°C and rated them for "beer-taste-like flavor" and "beer-taste-like body." Based on the following scoring criteria, the panelists used scores ranging from 3.0 (maximum) to 1.0 (minimum) in increments of 0.1, and the average scores of the four panelists were calculated. The results are shown in Tables 1 to 8. For the evaluation, samples that met the following criteria for "beer-taste beverage taste" (1.0), "2.0," and "3.0") and samples that met the following criteria for "beer-taste beverage firmness" (1.0), "2.0," and "3.0") were prepared in advance to ensure standardization among panelists. Furthermore, in all of the sensory evaluations shown in Tables 1 to 8, no differences in scores of 2.0 or higher were observed among panelists for the same beverage.

[0070] [Beer-like flavor] · "3.0": Very good. · "2.0": Good. · "1.0": Bad. Based on the average value of the four panelists, the product was evaluated according to the following criteria, with a score of 2.0 or higher being considered a pass.

[0071] [A firm texture typical of beer-flavored beverages] · "3.0": Not felt. 2.0: Barely noticeable. · "1.0": Feel. Based on the average value of the four panelists, the product was evaluated according to the following criteria, with a score of 2.0 or higher being considered a pass.

[0072] [comprehensive evaluation] Beverages with a "taste typical of a beer-flavored beverage" of 2.0 or higher and a "solidity typical of a beer-flavored beverage" of 2.0 or higher were given an "A" rating. Additionally, beverages with a "beer-like taste" score of less than 2.0 or a "beer-like firmness" score of less than 2.0 were rated "B."

[0073] [Table A] [Table B] [Table C]

[0074] The results of the examples show that in fermented and non-fermented beer-flavored beverages, when the beer-flavored beverage has a bitterness value of 18 BUs or less, a total nitrogen content of 5 to 140 mg / 100 mL, and a total polyphenol content of 3 to 200 ppm by mass, and the 2,3-diethyl 5-methylpyrazine content is 0.02 ppb by mass or more, it is possible to provide a beverage that has the taste and firmness characteristic of a beer-flavored beverage.

Claims

1. The bitterness value is 18 BUs or less, the total nitrogen content is 5 to 140 mg / 100 mL, the total polyphenol content is 3 to 200 ppm by mass, and the 2,3-diethyl 5-methylpyrazine content is 0.02 ppb by mass or more and 30 ppb by mass or less, A beer-flavored beverage having a total nitrogen content (mg / 100 mL) / total polyphenol content (ppm by mass) of 0.3 or more.

2. 2. The beer-taste beverage according to claim 1, wherein the bitterness value is 5 BUs or less.

3. 3. The beer-taste beverage according to claim 1, which is substantially free of components derived from hops.

4. The beer-taste beverage according to any one of claims 1 to 3, wherein the content of 2,3-diethyl-5-methylpyrazine is from 0.05 ppb by mass to 30 ppb by mass.

5. 5. The beer-taste beverage according to any one of claims 1 to 4, wherein the original wort extract (O-Ex) concentration is 5 to 18% by mass.

6. 6. The beer-taste beverage according to any one of claims 1 to 5, wherein the ratio of total nitrogen (mg / 100 mL) to total polyphenols (ppm by mass) is 0.3 to 3.

0.

7. 7. The beer-taste beverage according to any one of claims 1 to 6, wherein at least a portion of the nitrogen or polyphenols is derived from malt.

8. 8. The beer-taste beverage according to any one of claims 1 to 7, wherein at least a portion of the nitrogen or polyphenols is derived from corn.

9. 9. The beer-taste beverage according to any one of claims 1 to 8, wherein the malt content is 90% by mass or less.

10. The beer-taste beverage according to any one of claims 1 to 8, wherein the malt usage ratio is 0% by mass.

11. The beer-taste beverage according to any one of claims 1 to 10, wherein the beer-taste beverage is a fermented beer-taste beverage.

12. The beer-taste beverage according to any one of claims 1 to 10, wherein the beer-taste beverage is a non-fermented beer-taste beverage.

13. A method for producing the beer-taste beverage according to claim 11, comprising: A method for producing a beer-taste beverage, comprising the steps of adding yeast to water and raw materials that can be assimilated by the yeast, and carrying out alcoholic fermentation.

14. 14. The method for producing a beer-taste beverage according to claim 13, wherein the raw materials that can be assimilated by yeast include malt and corn, and the proportion of malt used is 90 mass% or less.

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