Bottled carbonated alcoholic beverage containing gin and method for producing the same
By adding a cooling agent like menthol to bottled carbonated gin beverages, the metallic aroma and bitter aftertaste are mitigated, resulting in an improved flavor experience.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-01-25
- Publication Date
- 2026-04-10
AI Technical Summary
Bottled carbonated alcoholic beverages containing gin often exhibit unpleasant metallic aroma and bitter aftertaste due to the characteristics of gin.
Incorporating a cooling sensation-imparting substance, such as menthol or its derivatives, at specific concentrations to improve the metallic aroma and bitter aftertaste.
The addition of a cooling agent effectively reduces the metallic aroma and bitter aftertaste, enhancing the overall flavor profile of the beverage.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to beverages, and more specifically, to a carbonated alcoholic beverage contained in a container containing gin and a method for producing the same.
Background Art
[0002] It is generally known that a carbonated alcoholic beverage contained in a container is produced using a base liquor as an alcohol source. As such a base liquor, for example, distilled liquors such as shochu, spirits, and alcohol for raw materials are used. Among the carbonated alcoholic beverages contained in containers on the market, there are products flavored by adding fruit juices, flavors, sweeteners, and acidulants to the above-mentioned base liquor.
[0003] Among carbonated alcoholic beverages contained in containers, products flavored with gin have a refreshing flavor derived from characteristic aroma components contained in gin, and there is a certain need among consumers.
[0004] Techniques for enhancing the flavor effect on alcoholic beverages have been known for a long time. So far, for example, an alcoholic beverage containing coriander extract and saccharides (Patent Document 1), a carbonated alcoholic beverage contained in a container containing limonene and a cooling substance (Patent Document 2), etc. have been reported.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0006] The inventors of this invention discovered that, in the process of developing a bottled carbonated alcoholic beverage, while using gin can impart a distinctive refreshing flavor, it also has the drawback of easily resulting in an unpleasant flavor due to the metallic aroma derived from the gin and a bitter aftertaste.
[0007] Therefore, the present invention aims to provide a packaged carbonated alcoholic beverage containing gin in which the metallic aroma and bitter aftertaste derived from gin have been improved. [Means for solving the problem]
[0008] In order to solve the above problems, the inventors diligently conducted research and found that the addition of a cooling sensation-imparting substance is effective in improving the metallic aroma and bitter aftertaste derived from gin in bottled carbonated alcoholic beverages. Based on this finding, the inventors completed the present invention.
[0009] The present invention is not limited to the following, but relates to the following: (1) A bottled carbonated alcoholic beverage containing gin and a cooling agent. (2) The beverage described in (1), which contains a cooling sensation-imparting substance at a concentration of 0.1 to 10,000 ppb. (3) A beverage as described in (1) or (2), containing a cooling substance at a concentration of 0.1 to 100 ppb. (4) The beverage according to any one of (1) to (3), wherein the cooling sensation-imparting substance is at least one selected from the group consisting of menthol or its derivatives, menthone, camphor, plegol, isopulegol, cineole, peppermint oil, spearmint oil, eucalyptus oil, 3-(l-menthoxy)propane-1,2-diol, N-alkyl-p-menthane-3-carboxamide, 2-methyl-3-(l-menthoxy)propane-1,2-diol, p-menthane-3,8-diol, 2-(l-menthoxy)ethane-1-ol, 3-(l-menthoxy)propane-1-ol, 4-(l-menthoxy)butan-1-ol, menthyl 3-hydroxybutanoate, menthyl lactate, menthol glycerin ketal, N-methyl-2,2-isopropylmethyl-3-methylbutanamide, and menthyl glyoxylate. (5) A beverage as described in any one of (1) to (4), having an alcohol content of 1 to 15 v / v%. (6) A beverage as described in any one of (1) to (5), having an alcohol content of 5 to 9 v / v%. (7) A beverage described in any one of (1) to (6) below, having a sweetness level of 2 or less. (8) A beverage described in any one of (1) to (7), in which the container is a can. (9) A method for producing a bottled carbonated alcoholic beverage, comprising the step of mixing gin with a cooling agent. [Effects of the Invention]
[0010] According to the present invention, it is possible to provide a packaged carbonated alcoholic beverage containing gin in which the metallic aroma and bitter aftertaste have been improved. [Modes for carrying out the invention]
[0011] The packaged carbonated alcohol beverage of the present invention will be described below. Unless otherwise specified, "ppm," "ppb," and "weight %" used herein refer to ppm, ppb, and weight % in terms of weight / volume (w / v), respectively.
[0012] One aspect of the present invention is a bottled carbonated alcoholic beverage containing gin and a cooling agent. The use of the cooling agent can improve the metallic aroma and bitter aftertaste derived from gin in the bottled carbonated alcoholic beverage. Here, metallic aroma refers to an unpleasant, pungent aroma reminiscent of metal.
[0013] (gin) The beverage of the present invention contains gin. Gin is a type of distilled spirit, made by fermenting grains such as barley, rye, and potatoes and flavoring them with juniper berries. In the present invention, gin may be made in-house using known methods, or commercially available gin may be used as an ingredient for alcoholic beverages. In the present invention, commercially available gin is preferably used. In the present invention, only one type of gin may be used, or two or more types of gin may be used in combination.
[0014] In the present invention, the gin content in the beverage is not particularly limited and can be set appropriately according to various purposes. The gin content in the beverage of the present invention is expressed as the amount of gin-derived alcohol in the beverage (v / v%). For example, if gin with an alcohol content (alcohol percentage) of 40 v / v% is included in the beverage at an amount of 10 v / v%, the gin content in the beverage is expressed as 4 v / v%, which is the amount of gin-derived alcohol in the beverage. The gin content in the beverage of the present invention is not particularly limited, but is, for example, 0.01 v / v% or more, preferably 0.1 v / v% or more, and more preferably 0.5 v / v% or more. The upper limit of the gin content is also not particularly limited, and the gin content in the beverage of the present invention is, for example, 15 v / v% or less, preferably 10 v / v% or less, and more preferably 7 v / v% or less. The gin content in the beverage of the present invention is not particularly limited, but is, for example, 0.01 to 15 v / v%, preferably 0.1 to 10 v / v%, more preferably 1 to 9 v / v%, and even more preferably 3 to 7 v / v%. If the beverage of the present invention contains two or more types of gin, the above content refers to the total gin content.
[0015] (Cooling sensation-providing substance) The beverage of the present invention contains a cooling sensation-imparting substance. In the present invention, a cooling sensation-imparting substance means a substance that gives a cooling sensation when placed in the mouth. Examples of cooling-feeling substances include, but are not limited to, menthol or its derivatives, menthone, camphor, plegol, isopulegol, cineole, peppermint oil, spearmint oil, eucalyptus oil, 3-(l-menthoxy)propane-1,2-diol, N-alkyl-p-menthane-3-carboxamide, 2-methyl-3-(l-menthoxy)propane-1,2-diol, p-menthane-3,8-diol, 2-(l-menthoxy)ethane-1-ol, 3-(l-menthoxy)propane-1-ol, 4-(l-menthoxy)butan-1-ol, menthyl 3-hydroxybutanoate, menthyl lactate, menthol glycerin ketal, N-methyl-2,2-isopropylmethyl-3-methylbutanamide, and menthyl glyoxylate. While not particularly limited, examples of menthol derivatives include those in which the hydrogen atom in the hydroxyl group in the chemical structure of menthol is substituted with a C1-C6 alkyl group which may be substituted with one or more hydroxyl groups, or those in which the hydrogen atom is substituted with a C1-C6 alkylcarbonyl group which may be substituted with one or more hydroxyl groups. In the present invention, only one cooling sensation-imparting substance may be used, or two or more may be used in combination. Preferably, menthol or its derivatives are used as the cooling sensation-imparting substance. The menthol used in the present invention may be either l-menthol or d-menthol, or a mixture thereof.
[0016] In the present invention, the origin of the cooling sensation-imparting substance is not particularly limited and may be an extract of herbs such as mint, or a distillate thereof, or a raw alcoholic beverage that serves as an alcohol source, or other additives.
[0017] The content of the cooling sensation-imparting substance in the beverage of the present invention is not particularly limited, but is, for example, 0.1 to 10,000 ppb. When the cooling sensation-imparting substance is used within the range of the content, the metallic aroma and aftertaste bitterness derived from gin can be effectively improved. The content of the cooling sensation-imparting substance is preferably 0.5 ppb or more, more preferably 1 ppb or more, still more preferably 3 ppb or more, and even more preferably 5 ppb or more. Also, the content of the cooling sensation-imparting substance is preferably 1,000 ppb or less, more preferably 500 ppb or less, still more preferably 100 ppb or less, and even more preferably 50 ppb or less. The content of the cooling sensation-imparting substance in the beverage of the present invention is preferably 0.5 to 1,000 ppb, more preferably 1 to 500 ppb, still more preferably 3 to 100 ppb, and even more preferably 5 to 50 ppb.
[0018] In the present invention, the content of the cooling sensation-imparting substance in the beverage can be measured using gas chromatography. When two or more kinds of cooling sensation-imparting substances are used, the above content means the total content of the cooling sensation-imparting substances.
[0019] (Alcohol content) The beverage of the present invention is a carbonated alcoholic beverage. In the present invention, unless otherwise specified, "alcohol" refers to ethanol. The alcohol content in the beverage of the present invention is not particularly limited, but is, for example, 1 to 15 v / v%. When the alcohol content is within the above range, it tends to be a more flavorful and easy-to-drink beverage as a carbonated alcoholic beverage containing gin. The alcohol content in the beverage of the present invention is preferably 1 to 10 v / v%, more preferably 3 to 9 v / v%, still more preferably 4 to 9 v / v%, and even more preferably 5 to 9 v / v%.
[0020] The alcohol content of a beverage can be measured by any known method, but for example, it can be measured by a vibrating densimeter. Specifically, a sample is prepared by removing carbon dioxide from the beverage as needed by filtration or ultrasound, and then the sample is steam distilled. The density of the resulting distillate at 15°C is measured, and the specific gravity can be determined by converting it using "Table 2 Conversion Table for Alcohol Content, Density (15°C) and Specific Gravity (15 / 15°C)," which is an appendix to the National Tax Agency's prescribed analytical method (National Tax Agency Instruction No. 6 of 2007, revised June 22, 2007). In this invention, alcohol content is synonymous with alcohol percentage (v / v%).
[0021] The alcohol content of the beverage of the present invention may be adjusted using the gin described above, or it may be adjusted using gin and other alcoholic beverages. In other words, the beverage of the present invention may contain alcoholic beverages other than gin. As alcoholic beverages other than gin, for example, distilled spirits other than gin can be used, and such distilled spirits are not limited by their raw materials or manufacturing methods. Examples of distilled spirits other than gin include spirits (e.g., vodka, rum, tequila, gin, aquavit), neutral spirits, liqueurs, shochu, raw material alcohol, etc. The distilled spirits other than gin used in the present invention are preferably neutral spirits.
[0022] (Carbon dioxide) The beverage of the present invention contains carbon dioxide. Carbon dioxide can be added to the beverage by methods commonly known to those skilled in the art, for example, but not limited to these, by dissolving carbon dioxide in the beverage under pressure, mixing carbon dioxide and the beverage in a pipe using a mixer such as a carbonator from Zuhenhagen, or by spraying the beverage into a tank filled with carbon dioxide to allow the beverage to absorb the carbon dioxide, or by mixing the beverage with carbonated water. The carbon dioxide pressure is adjusted using these means as appropriate.
[0023] The carbon dioxide pressure of the beverage of the present invention is not particularly limited, but at a beverage temperature of 20°C, for example, 0.5 to 4.0 kgf / cm². 2Preferably 1.0 to 3.5 kgf / cm² 2 , more preferably 1.5 to 3.4 kgf / cm² 2 In this invention, the carbon dioxide pressure can be measured using the GVA-500A gas volume measuring device manufactured by Kyoto Electronics Manufacturing Co., Ltd. For example, the sample temperature is set to 20°C, and after degassing (snifting) and shaking the air inside the container using the gas volume measuring device, the carbon dioxide pressure is measured. In this specification, unless otherwise specified, carbon dioxide pressure refers to the carbon dioxide pressure at 20°C.
[0024] (Sweetness level) The sweetness level of the beverage of the present invention is not particularly limited, but is, for example, 5 or less. When the sweetness level is 5 or less, the refreshing aroma characteristic of gin tends to be more easily perceived in the beverage of the present invention. The sweetness level of the beverage of the present invention is preferably 4 or less, more preferably 3 or less, and even more preferably 2 or less.
[0025] In this specification, sweetness level is an index representing the sweetness of a beverage, with the sweetness of a beverage containing 1g of sucrose per 100g of beverage set as "1". The sweetness level of the beverage is determined by converting the content of each sweetening component to an equivalent amount of sucrose based on the relative sweetness ratio of that component to the sweetness of sucrose (1), and then summing up the sucrose equivalent amounts of all sweetening components contained in the beverage (including sweetening components derived from fruit juice, extracts, etc.). The relative sweetness ratios of various representative sweetening components to the sweetness of sucrose (1) are shown in the table below. For sweetening components not listed in the table below, the sweetness level provided by the manufacturer or distributor of that sweetening component may be used, or the sweetness level may be determined by sensory evaluation.
[0026] [Table 1]
[0027] The sweetness of a beverage can be adjusted using sweetening agents. These sweetening agents may be directly incorporated into the beverage, or raw materials containing sweetening agents, such as fruit juice or extract, may be incorporated. Furthermore, not only one type of sweetening agent but two or more types may be incorporated. Preferred sweetening agents include fructose, isomerized sugar, glucose, sucrose, lactose, oligosaccharides (such as maltooligosaccharides), and sugar alcohols (such as erythritol and xylitol), with fructose and sucrose being particularly preferred.
[0028] (Terpinen-4-ol) The beverage of the present invention contains terpinen-4-ol. Terpinen-4-ol has the chemical formula C 10 H 18 It is an isomer of terpineol represented by O, and is also known as 4-methyl-1-(1-methylethyl)-3-cyclohexen-1-ol, with a CAS registry number of 562-74-3. Terpinen-4-ol is known to be contained in tea tree essential oil and is also known to be contained in gin. In this invention, terpinen-4-ol may be derived from gin or from a raw material other than gin.
[0029] The terpinen-4-ol content in the beverage of the present invention is not particularly limited, but is, for example, 2 to 5000 ppb, preferably 6 to 1000 ppb, and more preferably 6 to 500 ppb. As described above, terpinen-4-ol is a component contained in gin, but in the present invention, the concentration of this component in gin tends to decrease when the beverage is bottled. When the concentration of terpinen-4-ol decreases, the metallic aroma derived from gin may be strongly felt, and in that case, the effect of the cooling sensation imparted substance in the present invention will be exerted more effectively. In the present invention, since terpinen-4-ol is contained in gin, the gin content in the beverage can also be adjusted by the terpinen-4-ol content in the beverage.
[0030] In the beverage of the present invention, the weight ratio of the content of the cooling sensation-imparting substance to the content of terpinen-4-ol ([content of cooling sensation-imparting substance] / [content of terpinen-4-ol]) is not particularly limited, but is, for example, 0.00002 or more, preferably 0.0001 or more, more preferably 0.001 or more, and even more preferably 0.01 or more. Furthermore, this weight ratio is, for example, 5000 or less, preferably 2000 or less, more preferably 1000 or less, and even more preferably 100 or less. Note that the above weight ratio is calculated when the content of terpinen-4-ol and the cooling sensation-imparting substance are both expressed in the same unit.
[0031] (Other ingredients) In addition to the various components described above, the beverage of the present invention may contain, to the extent that it does not impair the effects of the present invention, flavorings, nutritional fortifiers (such as vitamins), antioxidants, emulsifiers, preservatives, extracts, dietary fiber, pH adjusters, and quality stabilizers commonly used in beverages.
[0032] (beverage) The type of alcoholic beverage of the present invention is not particularly limited and can include, for example, highballs, chuhai (shochu cocktails), cocktails, sours, etc. When the terms "highball" and "chuhai" are used in relation to the beverages of the present invention, they mean beverages containing water, distilled spirits, and carbon dioxide. Highballs and chuhai may further contain fruit juice. When the term "sour" is used in relation to the beverages of the present invention, it means a beverage containing spirits, acidic fruit juice such as citrus, a sweetener, and carbon dioxide. When the term "cocktail" is used in relation to the beverages of the present invention, it means an alcoholic beverage made by mixing fruit juice, etc., with a base alcoholic beverage.
[0033] The beverage of the present invention is a packaged beverage in which the beverage is contained in a container. The container is not particularly limited and can include, for example, plastic bottles (such as PET bottles), cans (such as aluminum cans and steel cans), paper cartons, chilled cups, and glass bottles. Among these, it is preferable to use a can as the container in the present invention.
[0034] The beverage of the present invention may be a heat-sterilized, packaged beverage. When heat sterilization is performed, the method is not particularly limited and can be carried out using conventional methods such as UHT sterilization and retort sterilization. The temperature of the heat sterilization treatment is not particularly limited, but is, for example, 65 to 130°C, preferably 85 to 120°C. The time of the heat sterilization treatment is not particularly limited, but is, for example, 10 to 40 minutes. However, if a sterilization value equivalent to the above conditions can be obtained, heat sterilization may be performed at an appropriate temperature for a few seconds, for example, 5 to 30 seconds.
[0035] (Manufacturing method) The beverage of the present invention can be manufactured by appropriately blending the above-mentioned components. In the manufacture of the beverage of the present invention, the order in which the various components are blended is not particularly limited. Furthermore, the manufacture of the beverage of the present invention may also include steps for blending the above-mentioned components and materials and for adjusting their content. Various elements such as the types of components in the beverage and their content in the manufacture of the beverage of the present invention are as described above with respect to the beverage of the present invention, or are obvious from there.
[0036] Furthermore, the production of the beverage of the present invention may include a step of heat sterilization of the beverage as needed, and may also include a step of packaging the beverage into containers. Through these steps, a packaged beverage can be produced. The conditions for heat sterilization are as described above, but are not particularly limited.
[0037] The method for producing the beverage of the present invention is not particularly limited as described above, but for example, the beverage of the present invention can be obtained by the following method. First, gin and, if necessary, base liquor or raw material liquor are added to water and diluted so that the alcohol content reaches a predetermined value. Next, predetermined amounts of a cooling sensation imparting substance and, if necessary, other additives are added and mixed uniformly. Then, carbonation is performed so that the carbon dioxide content reaches a predetermined amount. Next, the obtained beverage is filled into a container and sealed, and, if necessary, heat sterilized. This allows the beverage of the present invention to be obtained. Carbon dioxide may be added to the beverage by using carbonated water instead of water. Another aspect of the present invention is a method for producing a bottled carbonated alcoholic beverage, comprising the step of mixing gin and a cooling sensation imparting substance. [Examples]
[0038] The details of the present invention will be specifically explained below with reference to experimental examples, but the present invention is not limited thereto.
[0039] <Reference example> For carbonated alcoholic beverages containing gin, beverage samples were prepared so that the final concentrations of various components matched those shown in the table below. Specifically, beverage samples were prepared by mixing gin and citric acid (anhydrous) with carbonated water, and the alcohol content of the beverage was adjusted by adding raw material alcohol as needed. In Reference Examples 1-4, the gin used as a raw material was Gin Product A (Suntory Gin SUI: 40% alcohol content), in Reference Examples 5 and 6, Gin Product B (Beefeater Gin: 40% alcohol content), and in Reference Examples 7 and 8, Gin Product C (Gordon's London Dry Gin: 43% alcohol content). Beverage samples were prepared both in aluminum cans and unsealed. The sweetness level of all beverage samples was 0. The gin content was expressed as the amount of gin-derived alcohol in the beverage, and the same method was used below.
[0040] The obtained beverage samples were subjected to sensory evaluation by a panel of two experts. The items and criteria for sensory evaluation were as follows:
[0041] (The metallic scent of gin) 1: The metallic scent of gin is strong. 2: The metallic aroma of the gin is a little strong. 3: The metallic aroma of the gin is a little weak. 4: The metallic aroma of the gin is weak. 5: The metallic scent of the gin is very weak.
[0042] (Bitter aftertaste) 1: Strong bitter aftertaste 2: The aftertaste is slightly bitter. 3: The bitterness in the aftertaste is slightly weak. 4: The aftertaste is not bitter. 5: The aftertaste has very little bitterness.
[0043] The evaluation results were based on the average of the scores given by each expert panel. In addition, as an overall assessment representing the desirability as a carbonated alcoholic beverage, a comprehensive evaluation was conducted by consensus among all expert panel members based on the following criteria.
[0044] (comprehensive evaluation) ×: Undesirable △: Not very desirable ○: Somewhat favorable ◎: Preferred
[0045] [Table 2]
[0046] As shown above, all samples of bottled carbonated alcoholic beverages containing gin exhibited a strong metallic aroma of gin, as well as a strong bitter aftertaste.
[0047] <Experimental Example 1> Beverage samples were prepared using gin, anhydrous citric acid, l-menthol, carbonated water, and raw material alcohol, so that the final concentrations of each component were as shown in the table below. Specifically, gin product A was mixed with carbonated water, anhydrous citric acid and l-menthol were added to prepare the beverage samples, and raw material alcohol was added as needed to adjust the alcohol content of the beverage. All beverage samples were sealed in cans to produce bottled beverages. The sweetness level of all beverage samples was 0. The concentration of terpinen-4-ol contained in each beverage sample is also shown.
[0048] The obtained beverage samples were subjected to sensory evaluation by a panel of two experts. The sensory evaluation used the same criteria as the reference example to examine the "metallic aroma of gin" and the "bitter aftertaste." In this experiment, two additional evaluation items were added: "refreshing aroma of gin" and "coolness," each evaluated according to the following criteria.
[0049] (The refreshing scent of gin) 1: The refreshing aroma of gin is weak. 2: The refreshing aroma of gin is a little weak. 3: The refreshing aroma of gin is a little strong. 4: Strong, refreshing gin aroma 5: The refreshing scent of gin is very strong.
[0050] (Cooling sensation) 1: Strong cooling sensation 2: Slightly strong cooling sensation 3: The cooling sensation is somewhat weak. 4: The cooling sensation is weak. 5: Very weak cooling sensation
[0051] The evaluation results were based on the average of the scores given by each expert panel. In addition, an overall evaluation representing the desirability as a carbonated alcoholic beverage was conducted using the same criteria and methods as the reference example.
[0052] [Table 3-1]
[0053] [Table 3-2]
[0054] The results are as described above. When menthol was added to a bottled carbonated alcoholic beverage containing gin, the metallic aroma and bitter aftertaste derived from the gin were improved. At a menthol content of 1000 ppb, the cooling sensation was perceived as slightly too strong, so it was found that adding menthol at a level of 100 ppb or less, which resulted in a less cooling sensation, was preferable.
[0055] <Experimental Example 2> Beverage samples were prepared by changing the type of gin used as the raw material, so that the final concentrations of various components were as shown in the table below. The preparation of the beverage samples was carried out in the same manner as in Experimental Example 1. The gins used as raw materials were Gin Product A, Gin Product B, and Gin Product C, as in the reference example. All beverage samples were sealed in cans to become bottled beverages. The sweetness level of all beverage samples was 0.
[0056] The obtained beverage samples were subjected to sensory evaluation by a panel of two experts. The sensory evaluation was conducted using the same criteria and methods as in Experimental Example 1, and examined "metallic aroma of gin," "bitter aftertaste," "refreshing aroma of gin," "coolness," and an overall evaluation.
[0057] [Table 4]
[0058] As shown above, even when the type of gin used as the raw material was changed, the addition of menthol resulted in an improvement in the metallic aroma and bitter aftertaste derived from the gin.
[0059] <Experimental Example 3> For beverages with altered acidity, carbon dioxide pressure, and alcohol content, beverage samples were prepared so that the final concentrations of each component were as shown in the table below. The beverage samples were prepared in the same manner as in Experimental Example 1, and all were sealed in cans to become bottled beverages. The sweetness level of all beverage samples was 0.
[0060] The obtained beverage samples were subjected to sensory evaluation by a panel of two experts. The sensory evaluation was conducted using the same criteria and methods as in Experimental Example 1, and examined "metallic aroma of gin," "bitter aftertaste," "refreshing aroma of gin," "coolness," and an overall evaluation.
[0061] [Table 5]
[0062] As shown above, even in beverages with altered acidity, carbon dioxide pressure, and alcohol content, the addition of menthol improved the metallic aroma and bitter aftertaste derived from gin.
Claims
1. A bottled carbonated alcoholic beverage containing gin and 0.1 to 100 ppb of l-menthol, with a terpinen-4-ol content of 2 to 5000 ppb.
2. The beverage according to claim 1, wherein the weight ratio of the l-menthol content to the terpinen-4-ol content ([l-menthol content] / [terpinen-4-ol content]) is 0.00002 or more.
3. The beverage according to claim 1 or 2, wherein the alcohol content is 1 to 15 v / v%.
4. A beverage according to any one of claims 1 to 3, wherein the alcohol content is 5 to 9 v / v%.
5. A beverage according to any one of claims 1 to 4, wherein the sweetness level is 2 or less.
6. The beverage according to any one of claims 1 to 5, wherein the container is a can.
7. A method for producing a bottled carbonated alcoholic beverage, comprising the steps of: mixing gin and l-menthol; adjusting the l-menthol content to 0.1 to 100 ppb; and adjusting the terpinen-4-ol content to 2 to 5000 ppb.
8. The method according to claim 7, further comprising the step of adjusting the weight ratio of the l-menthol content to the terpinen-4-ol content ([l-menthol content] / [terpinen-4-ol content]) to 0.00002 or more.
Citation Information
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