Alcoholic beverages
By adding limonene and adjusting specific gravity with sugars, the stimulating sensation of alcohol in beverages is improved, enhancing consumer preference.
Patent Information
- Application Number
- JP2023109757
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-07-04
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2038-10-12
AI Technical Summary
Alcoholic beverages such as chuhai and cocktails fail to sufficiently mask the stimulating sensation of alcohol, leading to a tingling sensation that reduces consumer preference, especially with increasing alcohol content.
Incorporating limonene in the range of 0.04 to 0.16 mg/L and adjusting the specific gravity of the beverage to 1.015 to 1.032, along with sugars like glucose, fructose, or sucrose, to enhance the masking effect of alcohol's stimulating sensation.
The solution effectively improves the stimulating sensation derived from alcohol, making the beverages more palatable by reducing the sharp pungency, as demonstrated in sensory evaluations.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to an alcoholic beverage with an improved alcoholic stimulating sensation and a method for producing the alcoholic beverage. [Background technology]
[0002] In recent years, in the alcoholic beverage market, various alcoholic beverages such as sake, wine, beer, shochu, liqueurs, and whiskey are sold to meet diverse consumer tastes. Although alcoholic beverages have a stimulating sensation inherent to alcohol, in brewed alcoholic beverages such as sake, wine, and beer, the stimulating sensation inherent to the alcohol itself is masked by amino acids, peptides, and sugars derived from the raw materials and complex brewing flavor components produced by microorganisms, resulting in a pleasant aftertaste. In addition, shochu, whiskey, brandy, and the like, which are produced by fermenting grains or fruits with yeast, distilling the resulting mixture, and then storing and aging a portion of the mixture in barrels, have a pleasant aftertaste because the stimulating sensation inherent to the alcohol itself is masked by complex flavor components produced by yeast and sweet aromas derived from esters and lignin decomposition products such as vanillin produced during storage in barrels.
[0003] On the other hand, alcoholic beverages such as chuhai and cocktails are designed for quality by flavoring them primarily with pre-made flavoring ingredients, and unlike the above-mentioned alcoholic beverages such as sake, they do not undergo the processes of fermentation or barrel storage, and are generally low in amino acids, peptides, sugars, and aroma components produced by microorganisms.As a result, in alcoholic beverages such as chuhai, the stimulating sensation caused by alcohol cannot be sufficiently masked, and the tingling sensation comes to the forefront in the taste, which poses a problem of not being able to sufficiently increase consumer preference.
[0004] The stimulating sensation of alcohol is an important factor that influences the palatability of alcoholic beverages. Chuhai has traditionally contained about 5% v / v of alcohol, but in recent years, the alcohol content has tended to increase, making it an urgent task to improve the tingling sensation of alcohol. Attempts to reduce the stimulating sensation of alcohol in alcoholic beverages have been made to date, and reported methods include a method using mangiferin, a polyphenol contained in honeybush (Patent Document 1), a method using a yeast extract containing sodium 5'-inosinate, etc. (Patent Document 2), and a method using betaine, a type of amino acid (Patent Document 3). [Prior art documents] [Patent documents]
[0005] [Patent Document 1] Japanese Patent Application Laid-Open No. 2016-36318 [Patent Document 2] Japanese Patent Application Laid-Open No. 2002-253199 [Patent Document 3] Japanese Patent Application Laid-Open No. 2003-204779 Summary of the Invention [Problem to be solved by the invention]
[0006] The present invention aims to provide an alcoholic beverage with an improved stimulating sensation derived from alcohol. [Means for solving the problem]
[0007] As a result of extensive research to solve the above problems, the present inventors have focused on the use of limonene. They have found that the stimulating sensation caused by alcohol can be improved by adjusting the amount of limonene in an alcoholic beverage and further adding glucose, fructose, or sucrose to adjust the specific gravity of the beverage to a specific range depending on the amount added. Based on this finding, Based on this, the present inventors have completed the present invention.
[0008] The present invention relates to, but is not limited to, the following: (1) An alcoholic beverage containing limonene and one or more sugars selected from the group consisting of glucose, fructose, and sucrose, The beverage has a limonene content of 0.04 to 0.16 mg / L and a specific gravity of 1.015 to 1.032. (2) The beverage according to (1), having an alcohol content of 3 to 10 v / v%. (3) A beverage according to (1) or (2) containing fruit juice. (4) A beverage according to any one of (1) to (3), which is a bottled alcoholic beverage. (5) A method for producing an alcoholic beverage containing limonene and one or more sugars selected from the group consisting of glucose, fructose, and sucrose, A step of adjusting the limonene content to 0.04 to 0.16 mg / L; and The process of adjusting the specific gravity of the beverage to 1.015-1.032 The above manufacturing method. [Effects of the Invention]
[0009] The present invention provides an alcoholic beverage with an improved stimulating sensation derived from alcohol. The present invention is suitable for alcoholic beverages such as chuhai and cocktails, and can effectively improve the stimulating sensation of alcoholic beverages in which the stimulating sensation derived from alcohol cannot normally be sufficiently masked. DETAILED DESCRIPTION OF THE INVENTION
[0010] One aspect of the present invention is an alcoholic beverage containing limonene and one or more sugars selected from the group consisting of glucose, fructose, and sucrose, wherein the limonene content is 0.04 to 0.16 mg / L and the specific gravity of the beverage is 1.015 to 1.032. By adopting this configuration, an alcoholic beverage with an improved stimulating sensation derived from alcohol can be provided.
[0011] In this specification, the "pungency derived from alcohol" means a sharp pungency felt when alcohol is held in the mouth. Further, "improving" the pungency derived from alcohol means reducing the pungency derived from alcohol so that it is less likely to be felt.
[0012] (Limonene) The alcoholic beverage of the present invention contains limonene. Limonene is a kind of monocyclic monoterpene and is a compound represented by the chemical formula C 10 H 16 . Limonene may be d-limonene or l-limonene, but d-limonene is preferred. Further, limonene may be derived from fruit juice or may be derived from a fragrance.
[0013] The content of limonene in the alcoholic beverage of the present invention is 0.04 to 0.16 mg / L. By the content of limonene being within this range, the pungency derived from alcohol can be effectively improved. Even when the content of limonene exceeds 0.16 mg / L, there is a possibility of improving the pungency derived from alcohol, but the bitterness and astringency caused by limonene tend to become strong and the beverage becomes unsuitable. The content of limonene can be 0.05 mg / L or more, 0.06 mg / L or more, or 0.08 mg / L or more as long as it is within the range of 0.04 to 0.16 mg / L, and can be 0.14 mg / L or less, or 0.12 mg / L or less. Typically, the content of limonene in the alcoholic beverage of the present invention is preferably from 0.05 to 0.16 mg / L, more preferably from 0.06 to 0.16 mg / L, and still more preferably from 0.08 to 0.12 mg / L. The content of limonene may be measured by any known method such as GC-MS, HPLC method, etc. Hereinafter, GC-MS The typical analysis conditions are shown.
[0014] <GC-MS analysis conditions> The sample beverage was subjected to gas chromatography mass spectrometry (GC-MS) under the following conditions: GC analysis conditions are as follows: GC device: Agilent Technologies GC-MSD GC oven temperature conditions: 40°C (5 min) - 6°C / min - 240°C Mass spectrometry (MS) conditions Quadrupole setting: 150 Ion source setting: 230 Area calculation conditions Total ion mode Mass (LOW):35 Mass (HIGH):550 Column: DB-WAXETR 60 m, inner diameter 320 μm, film thickness 0.25 μm Sample pretreatment conditions: 80 μL of sample and 20 μL of internal standard (decanoic acid methyl ester 20 ppm alcohol aqueous solution) were mixed in a 20 mL screw-cap vial. Dynamic Headspace Conditions Equipment: Gestell MPS Adsorbent: TENAX Sample vaporization temperature: 80℃ Sample vaporization gas supply: 3000 ml Sample vaporization gas supply rate: 100 ml / min Sample vaporization gas type: Nitrogen Components and concentrations are identified by peak retention time:MS analysis. Standard substance: limonene
[0015] (glucose, fructose, sucrose) The alcoholic beverage of the present invention contains one or more sugars selected from the group consisting of glucose, fructose, and sucrose. By adding one or more of glucose, fructose, and sucrose, it is possible to impart a moderate sweetness to the alcoholic beverage and effectively reduce the stimulating sensation caused by alcohol. The sugar used in the present invention may be any of D-, L-, and DL-isomers, and the form can be determined appropriately depending on the type of sugar used.
[0016] The glucose, fructose, and sucrose contents of the alcoholic beverage of the present invention are not particularly limited and can be adjusted appropriately within the range of the specific gravity of the beverage described below. While not particularly limited, the glucose content is, for example, 50 to 110 g / L, preferably 55 to 105 g / L, more preferably 60 to 100 g / L or 70 to 90 g / L; the fructose content is, for example, 40 to 100 g / L, preferably 45 to 80 g / L, more preferably 50 to 70 g / L; and the sucrose content is, for example, 50 to 110 g / L, preferably 60 to 100 g / L, more preferably 70 to 90 g / L. The glucose, fructose, and sucrose contents in the beverage can be analyzed using high-performance liquid chromatography (HPLC) or other methods known to those skilled in the art, and the contents of various sugars can also be measured using HPLC or other methods.
[0017] (specific gravity) The alcoholic beverage of the present invention has a specific gravity of 1.015 to 1.032. In this specification, "specific gravity" refers to the ratio of the density of the beverage (mass per unit volume) to the density of water (standard substance). Specific gravity can be measured by any known method. For example, it can be measured by a hydrometer such as a pycnometer or hydrometer.
[0018] The specific gravity of the alcoholic beverage of the present invention can be adjusted based on the various components and their amounts blended into the beverage. Furthermore, since the specific gravity of an alcoholic beverage varies depending on the alcohol content (i.e., the higher the alcohol content, the lower the specific gravity of the alcoholic beverage), the specific gravity of the alcoholic beverage of the present invention can be adjusted by determining not only the various components blended into the beverage and their amounts, but also the alcohol content of the beverage. As the alcohol content increases, the stimulating sensation caused by alcohol also increases. In the present invention, we investigated the various blended components, such as glucose, fructose, or sucrose, and their blending amounts, and found that the stimulating sensation caused by alcohol can be improved by setting the specific gravity of the beverage within the above range. Therefore, in the alcoholic beverage of the present invention, the stimulating sensation caused by alcohol can be effectively improved by having the specific gravity of the beverage within the above range.
[0019] The specific gravity of the alcoholic beverage of the present invention may be 1.018 or more, or 1.020 or more, as long as it is within the range of 1.015 to 1.032, and may be 1.030 or less, 1.026 or less, or 1.024 or less. Typically, the specific gravity of the alcoholic beverage of the present invention is preferably 1.015 to 1.030, more preferably 1.018 to 1.026, and even more preferably 1.018 to 1.024, or 1.020 to 1.024.
[0020] (alcohol) The alcoholic beverage of the present invention is a beverage containing alcohol, and the alcohol content in the beverage is 3 to 10 v / v%. The term "alcohol" as used herein means ethanol unless otherwise specified. When the alcohol content is less than 3 v / v%, the stimulating sensation caused by the alcohol is not so strong, making it difficult to determine whether the effects of the present invention are being achieved. On the other hand, when the alcohol content exceeds 10 v / v%, the stimulating sensation caused by the alcohol becomes too strong, and the effects of the present invention may not be achieved.
[0021] The alcohol content in the alcoholic beverage of the present invention is preferably 3 to 9 v / v %, more preferably 5 to 9 v / v %, and even more preferably 5 to 7 v / v %.
[0022] The alcohol content (v / v%) of a beverage can be measured by any known method, for example, using a vibration density meter. Specifically, the beverage is used as a sample (if the beverage contains carbon dioxide, the carbon dioxide is removed by filtration or ultrasonication to prepare a sample), and the sample is distilled over an open flame. The density of the resulting distillate is measured at 15°C, and the alcohol content can be calculated using "Table 2: Conversion Table for Alcohol Content, Density (15°C) and Specific Gravity (15 / 15°C)," an appendix to the National Tax Agency's Prescribed Analysis Methods (National Tax Agency Ordinance No. 6 of 2007, revised June 22, 2007).
[0023] (fruit juice) The alcoholic beverage of the present invention may contain fruit juice. The fruit juice may be in the form of either straight fruit juice obtained by squeezing fruit and using the juice as is, or concentrated fruit juice. Clear or cloudy fruit juice may also be used. It is also possible to use whole fruit juice obtained by crushing the whole fruit, including the outer skin, and removing only particularly hard solids such as seeds, fruit puree obtained by straining fruit, or fruit juice obtained by crushing or extracting the pulp of dried fruit.
[0024] The type of fruit juice is not particularly limited, but examples include citrus juices (orange juice, Unshu mandarin juice, grapefruit juice, lemon juice, lime juice, yuzu juice, iyokan juice, natsumikan juice, hassaku juice, ponkan juice, shiikuwasha juice, kabosu juice, etc.), grape juice, peach juice, tropical fruit juices (pineapple juice, guava juice, banana juice, mango juice, acerola juice, lychee juice, papaya juice, passion fruit juice, etc.). Other examples include fruit juices (plum juice, pear juice, apricot juice, plum juice, berry juice, kiwi fruit juice, etc.), strawberry juice, melon juice, etc. These fruit juices may be used alone or in combination of two or more. The glucose, fructose, and sucrose contained in the alcoholic beverage of the present invention may be derived from fruit juice.
[0025] The content of fruit juice in the alcoholic beverage of the present invention is not particularly limited and can be adjusted appropriately within the range of the specific gravity of the alcoholic beverage of the present invention. Although not particularly limited, the content of fruit juice, converted into fruit juice percentage, can be, for example, 0 to 100 w / w%. The content of fruit juice in the alcoholic beverage of the present invention (converted into fruit juice percentage) is preferably 1 to 80 w / w%, more preferably 15 to 50 w / w%.
[0026] In this specification, the percentage of fruit juice in a beverage is calculated using the amount of fruit juice (g) blended in 100g of beverage using the following conversion formula. The concentration ratio shall be calculated in accordance with JAS standards, excluding the sugar refractometer readings of sugars, honey, etc. added to the juice.
[0027] Juice percentage (w / w%) = <amount of juice (g)> x <concentration ratio> / 100 mL / <specific gravity of beverage> x 100
[0028] (Sweetness) The sweetness of the alcoholic beverage of the present invention is not particularly limited, but is, for example, 3 to 11, preferably 4 to 10, and more preferably 6 to 9, calculated as sucrose. The sweetness of a beverage can be determined by converting the amount (weight concentration) of each sweet component contained in the beverage into a sucrose equivalent based on the relative ratio of the sweetness of that sweet component to the sweetness of sucrose (1), and then totaling the sucrose-equivalent amounts of all sweet components contained in the beverage (including sweet components derived from fruit juice, etc.). The relative ratio of the sweetness of each sweet component to the sweetness of sucrose (1) can be determined from a known sugar sweetness conversion table (e.g., Beverage Japan's "Beverage Terminology Dictionary," p. 11).
[0029] (sweetener) The alcoholic beverage of the present invention may contain a sweetener other than the sugars described above. Examples of sweeteners include, but are not limited to, maltose, high-fructose corn syrup, high-fructose corn syrup, high-fructose corn syrup, glucose-fructose corn syrup, sugar alcohols, oligosaccharides, honey, sugarcane juice (brown sugar syrup), maple syrup, molasses, and starch syrup. The glucose, fructose, and sucrose contained in the alcoholic beverage of the present invention may be derived from the above-mentioned sweeteners.
[0030] (acidifier) The alcoholic beverage of the present invention may contain an acidulant. The acidulant is not particularly limited as long as it does not adversely affect the effects of the present invention, and may be selected from the group consisting of phosphoric acid, citric acid, malic acid, ascorbic acid, tartaric acid, succinic acid, lactic acid, gluconic acid, fumaric acid, citric acid, acetic acid, and salts thereof. These acidulants differ in acidity and flavor, and can be selected according to the type of beverage. Furthermore, two or more acidulants can be used in combination, if necessary. The amount of acidulant added to the alcoholic beverage of the present invention can be determined according to the flavor and purpose of the beverage.
[0031] (carbon dioxide) The alcoholic beverage of the present invention may contain carbon dioxide gas. That is, the alcoholic beverage of the present invention may be a carbonated beverage. Carbon dioxide gas can be added to the beverage by a method commonly known to those skilled in the art, for example, but not limited to, dissolving carbon dioxide in the beverage under pressure, or adding carbon dioxide gas in a pipe using a mixer such as a Zuhenhagen carbonator. Alternatively, the beverage may be sprayed into a tank filled with carbon dioxide so that the carbon dioxide is absorbed into the beverage, or the beverage may be mixed with carbonated water. Carbon dioxide pressure can be adjusted by using any of these methods as appropriate.
[0032] The carbon dioxide pressure of the alcoholic beverage of the present invention is not particularly limited, but is preferably 0.7 to 3.5 kgf / cm when the beverage temperature is 20°C. 2, more preferably 0.8 to 2.8 kgf / cm 2 , and more preferably 1.2 to 2.4 kgf / cm 2 In the present invention, the carbon dioxide pressure can be measured using a gas volume measuring device GVA-500A manufactured by Kyoto Electronics Manufacturing Co., Ltd. For example, the sample temperature is set to 20°C, and the air in the container is degassed (sniffed) using the gas volume measuring device, shaken, and then the carbon dioxide pressure is measured. In this specification, unless otherwise specified, the carbon dioxide pressure refers to the carbon dioxide pressure at 20°C.
[0033] (pH) The pH of the alcoholic beverage of the present invention is not particularly limited, but is, for example, pH 2.0 to 5.0, preferably pH 2.5 to 4.5, and more preferably pH 3.0 to 4.0. The pH of the beverage can be adjusted using known methods, for example, by adjusting the amount of a pH adjuster or acidulant added.
[0034] (Other ingredients) The alcoholic beverage of the present invention may also contain additives that are typically added to beverages, such as flavorings, vitamins, colorings, antioxidants, emulsifiers, preservatives, seasonings, extracts, pH adjusters, and quality stabilizers, as long as the effects of the present invention are not impaired.
[0035] (Type of drink) The type of alcoholic beverage of the present invention is not particularly limited, but from the viewpoint that the stimulating sensation derived from alcohol is easily felt, the present invention is preferably applied to chuhai (Japanese shochu highball), cocktails, sours, etc. Chuhai and sours refer to alcoholic beverages based on distilled alcohol such as spirits diluted with carbonated water, and depending on the product, may also contain fruit juice, sweeteners, etc.
[0036] (Packaged beverages) The alcoholic beverage of the present invention can be provided in a container, and can be a container-packed alcoholic beverage. The container form includes, but is not limited to, metal containers such as cans, PET bottles, paper cartons, bottles, pouches, etc. For example, a sterilized container-packed product can be produced by filling the alcoholic beverage of the present invention into a container and then subjecting it to heat sterilization, such as hot water sterilization at about 50 to 75°C, or by sterilizing the beverage and then filling it into a container.
[0037] (method) Another aspect of the present invention is a method for producing an alcoholic beverage, specifically, a method for producing an alcoholic beverage containing limonene and one or more sugars selected from the group consisting of glucose, fructose, and sucrose, the method comprising the following steps: A step of adjusting the limonene content to 0.04 to 0.16 mg / L; and adjusting the specific gravity of the beverage to 1.015 to 1.032; Includes:
[0038] The method for adjusting the limonene content in the beverage and the specific gravity of the beverage is as described above for alcoholic beverages or is obvious from the above. The timing is also not limited. For example, the above steps may be performed simultaneously or separately, or the order of the steps may be reversed. It is sufficient that the final alcoholic beverage satisfies the above conditions. The preferred ranges for the content, specific gravity of the beverage, amounts of glucose, fructose, and sucrose, and alcohol content are as described above for alcoholic beverages. Specific examples and amounts of other ingredients to be added, as well as sweetness, carbon dioxide, and pH, are also as described above for alcoholic beverages.
[0039] The production method of the present invention can improve the stimulating sensation caused by alcohol in an alcoholic beverage. Therefore, in another aspect, the production method is a method for improving the stimulating sensation caused by alcohol.
[0040] (Numerical range) For clarity, numerical ranges expressed herein by a lower limit and an upper limit, i.e., "from the lower limit to the upper limit," are inclusive of the lower limit and the upper limit. For example, a range expressed by "from 1 to 2" includes 1 and 2. [Example]
[0041] The present invention will be specifically described in detail below by showing experimental examples, but the present invention is not limited to these examples.
[0042] [Experimental Example 1] The stimulating sensation due to alcohol in alcoholic beverages containing limonene was evaluated. Specifically, various ingredients were blended to the contents shown in the table below to prepare beverage samples. The raw material used as the alcohol source was raw material alcohol (alcohol content 59 v / v%), and high-fructose corn syrup with 45% glucose and 55% fructose was used. Anhydrous citric acid was blended to a concentration of 2.0 g / L in each beverage sample. The resulting beverage samples were filled into aluminum cans and stored at a carbon dioxide pressure of 1.6 kgf / cm. 2 Carbon dioxide was added to the beverage, and the aluminum can lid was sealed to produce a bottled beverage. The bottled beverage was then heat sterilized in hot water at 63°C.
[0043] The specific gravity of each beverage sample was measured using a hydrometer (Kyoto Electronics Manufacturing, Density and Hydrometer DA-520). The sweetness, converted to sucrose equivalent, was also determined. The pH of each beverage ranged from 2.0 to 4.0. A trained panel of four experts conducted a sensory evaluation of the resulting beverages to determine the stimulating sensation due to alcohol. Each expert panel member assigned a score on the following four-point scale. After each panel member's evaluation, the entire panel discussed and performed an overall evaluation on the following four-point scale. Each panel member used beverages No. 1-5 as the evaluation standard, confirming the relationship between the stimulating sensation due to alcohol and the corresponding score, and the evaluation test was conducted after the evaluation was completed to ensure that the scores were as consistent as possible.
[0044] <Evaluation criteria> ◎: No alcoholic stimulation, and a rounded taste ○: No alcohol stimulation △: Slight alcohol stimulation ×: I can feel the stimulation of alcohol
[0045] The results of the sensory evaluation are shown in the table below.
[0046] [Table 1]
[0047] As described above, it was shown that the irritating sensation caused by alcohol is improved when the limonene content in the beverage is within a specified range.
[0048] [Experimental Example 2] Beverage samples were prepared in the same manner as in Experimental Example 1, except that the alcohol content was changed to 9 v / v% or 3 v / v%, by blending various ingredients in the amounts shown in the table below with 2.0 g / L of anhydrous citric acid, and sterilized, packaged beverages were manufactured. The specific gravity and sweetness of the beverages were determined in the same manner as in Experimental Example 1, and sensory evaluations were conducted using the same method as in Experimental Example 1. The pH of each beverage was within the range of 2.0 to 4.0. The results are shown in the table below.
[0049] [Table 2] [Table 3]
[0050] As mentioned above, alcoholic beverages with an alcohol content of 9v / v% or 3v / v% It was also shown that the irritating sensation caused by alcohol is improved when the limonene content in the beverage is within a specified range.
[0051] [Experimental Example 3] Beverage samples containing sucralose or acesulfame potassium were evaluated. Specifically, beverage samples were prepared by blending various ingredients in the amounts shown in the table below with 2.0 g / L of anhydrous citric acid in the same manner as in Experimental Example 1, and sterilized, packaged beverages were produced. The specific gravity and sweetness of the beverages were determined in the same manner as in Experimental Example 1, and sensory evaluations were performed using the same method as in Experimental Example 1. The pH of each beverage was within the range of 2.0 to 4.0. The results are shown in the table below.
[0052] [Table 4]
[0053] As described above, when high fructose corn syrup was used, the irritating sensation caused by alcohol was alleviated, but when sucralose or acesulfame potassium was used, the irritating sensation caused by alcohol was not alleviated.
[0054] [Experimental Example 4] Beverage samples using glucose or fructose were evaluated. Specifically, beverage samples were prepared by blending various ingredients in the amounts shown in the table below with 2.0 g / L of anhydrous citric acid in the same manner as in Experimental Example 1, and sterilized, packaged beverages were produced. The specific gravity and sweetness of the beverages were determined in the same manner as in Experimental Example 1, and sensory evaluation was carried out using the same method as in Experimental Example 1. The pH of each beverage was within the range of 2.0 to 4.0. The results are shown in the table below.
[0055] [Table 5]
[0056] As described above, it was shown that the irritating sensation caused by alcohol was improved even when glucose or fructose was used.
[0057] [Experimental Example 5] Beverage samples containing fruit juice were evaluated. Specifically, beverage samples were prepared by blending various ingredients to the contents shown in the table below, and sterilized, packaged beverages were produced in the same manner as in Experimental Example 1. Concentrated reconstituted fruit juices were used for each type of fruit juice, and the values (w / w%) converted to the equivalent amount of straight fruit juice are shown in the table below. The specific gravity of each beverage was measured in the same manner as in Experimental Example 1. Sensory evaluation of each beverage was also carried out using the same method as in Experimental Example 1, except that the evaluation points were based on the following five-point scale.
[0058] <Evaluation criteria> ◎+: No alcoholic sting, more full-bodied and rounded flavor ◎: No alcoholic sting and a rounded taste ○: No alcohol stimulation △: Slight alcohol stimulation ×: I can feel the strong stimulation of alcohol
[0059] The results of the sensory evaluation are shown in the table below.
[0060] [Table 6]
[0061] As described above, it was shown that the irritation caused by alcohol was improved even when fruit juice was added. Furthermore, the irritation caused by alcohol was improved even when limonene was derived from fruit juice.
[0062] [Experimental Example 6] Beverages with different specific gravities were evaluated. Specifically, in the same manner as in Experimental Example 1, beverage samples were prepared by blending various ingredients in the amounts shown in the table below with 2.0 g / L of anhydrous citric acid, and sterilized, packaged beverages were manufactured. In addition, the specific gravities and sweetness levels of the beverages were determined in the same manner as in Experimental Example 1, and sensory evaluations were conducted using the same method as in Experimental Example 1. The pH of each beverage was within the range of 2.0 to 4.0. The results are shown in the table below.
[0063] [Table 7-1]
[0064] [Table 7-2]
[0065] [Table 7-3]
[0066] As described above, it was shown that the irritating sensation caused by alcohol is improved when the specific gravity of the beverage is within a predetermined range.
[0067] [Experimental Example 7] Beverage samples using sucrose (cane sugar) were evaluated. Specifically, in the same manner as in Experimental Example 1, beverage samples were prepared by blending various ingredients in the amounts shown in the table below with 2.0 g / L of anhydrous citric acid, and sterilized, packaged beverages were produced. In addition, the specific gravity and sweetness of the beverages were determined in the same manner as in Experimental Example 1, and sensory evaluation was performed using the same method as in Experimental Example 1. The results are shown in the table below.
[0068] [Table 8]
[0069] As described above, it was shown that the irritating sensation caused by alcohol was improved even when sucrose was used.
[0070] [Experimental Example 8] Non-carbonated beverage samples were evaluated. Specifically, beverage samples were prepared in the same manner as in Experimental Example 1, blending various ingredients in the amounts shown in the table below with 2.0 g / L of anhydrous citric acid. Then, sterilized packaged beverages to which carbon dioxide gas had been added were produced in the same manner as in Experimental Example 1, and additional sterilized packaged beverages were produced in the same manner as in Experimental Example 1, except that no carbon dioxide gas was added. Furthermore, the specific gravity and sweetness of the beverages were determined in the same manner as in Experimental Example 1, and sensory evaluation was carried out using the same method as in Experimental Example 1. The pH of each beverage was within the range of 2.0 to 4.0. The results are shown in the table below.
[0071] [Table 9]
[0072] As described above, it was shown that the irritating sensation caused by alcohol was improved even without adding carbon dioxide gas.
Claims
1. An alcoholic beverage containing limonene and one or more sugars selected from the group consisting of glucose, fructose, and sucrose, The beverage has a limonene content of 0.08 to 0.12 mg / L, a specific gravity of 1.018 to 1.026, and an alcohol content of 3 to 10 v / v%.
2. The beverage of claim 1 containing fruit juice.
3. The beverage according to claim 1 or 2, which is a bottled alcoholic beverage.
Citation Information
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