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JP6381991B2 - Vinegar and its production method, vinegar-containing food and drink and its flavor improvement method - Google Patents

Vinegar and its production method, vinegar-containing food and drink and its flavor improvement method Download PDF

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JP6381991B2
JP6381991B2 JP2014131939A JP2014131939A JP6381991B2 JP 6381991 B2 JP6381991 B2 JP 6381991B2 JP 2014131939 A JP2014131939 A JP 2014131939A JP 2014131939 A JP2014131939 A JP 2014131939A JP 6381991 B2 JP6381991 B2 JP 6381991B2
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英昭 田口
英昭 田口
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Mizkan Holdings Co Ltd
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Description

本発明は、食酢及びその製造方法、食酢含有飲食品及びその風味改善方法に関するものである。   The present invention relates to vinegar and its production method, vinegar-containing food and drink, and its flavor improvement method.

食酢は様々な飲食品に幅広く使用されるものであるが、成分中に酢酸を含む関係上、鋭い酸味や酢酸独特の酸臭といった風味を有している。近年、消費者の健康志向の高まりに伴い、食酢を含有する飲食品が支持を集めているが、強い酸味や酸臭は飲食物の風味に悪影響を与えることが知られている。ゆえに、食酢を含有する飲食品においては、食酢独特の酸味や酸臭の緩和という課題がある。   Although vinegar is widely used for various foods and drinks, it has a taste such as a sharp acidity and an acid odor peculiar to acetic acid because of the inclusion of acetic acid in its components. In recent years, foods and beverages containing vinegar have gained support with increasing consumer health, but it is known that strong acidity and acid odor adversely affect the flavor of food and drink. Therefore, in the food and drink containing vinegar, there exists a subject of relaxation of the acidity and acid smell peculiar to vinegar.

このような課題を解決するために、食酢中の酢酸等の成分を維持しながら食酢の酸味や酸臭を緩和する様々な方法が従来開発されてきた。例えば、化学的な手法としては、各種の添加物を添加する方法が提案されており、具体的にはグリシンを添加する方法(例えば、特許文献1を参照)、スクラロースを添加する方法(例えば、特許文献2を参照)、ヘキサナールを添加する方法(例えば、特許文献3を参照)などが知られている。また、物理的な手法としては、例えば、酢酸発酵液に対してパルス磁場を印加する方法(例えば、特許文献4を参照)、電磁波、超音波、遠赤外線などを照射する方法(例えば、特許文献5を参照)などが知られている。   In order to solve such problems, various methods have been developed in the past to alleviate the acidity and acid odor of vinegar while maintaining components such as acetic acid in vinegar. For example, as a chemical method, a method of adding various additives has been proposed. Specifically, a method of adding glycine (for example, see Patent Document 1), a method of adding sucralose (for example, A method of adding hexanal (see, for example, Patent Document 3) is known. As physical methods, for example, a method of applying a pulsed magnetic field to an acetic acid fermentation broth (see, for example, Patent Document 4), a method of irradiating electromagnetic waves, ultrasonic waves, far infrared rays, etc. (for example, Patent Documents) 5) is known.

特開2001−258487号公報JP 2001-258487 A 特開2002−95409号公報JP 2002-95409 A 特開2010−1246969号公報JP 2010-1246969 A 特開平5−176693号公報Japanese Patent Laid-Open No. 5-176693 特開2005−117977号公報JP 2005-117777 A

ところが、食酢の風味を改善するための上記従来の方法には、以下のような問題があった。即ち、化学的な手法の場合、基本的に風味改善のための添加物の添加を伴うことから、求めていない余分な味が食品に付与されてしまい、食酢本来の風味を維持することができなくなる。また、物理的な手法の場合、添加物の添加を伴わない点では好ましい反面、多大な設備や運転費用がかかるうえに、酸味や酸臭を緩和する効果が必ずしも十分に得られない。   However, the conventional method for improving the flavor of vinegar has the following problems. That is, in the case of a chemical method, since an additive for improving the flavor is basically added, an undesired extra taste is imparted to the food, and the original flavor of vinegar can be maintained. Disappear. Moreover, in the case of a physical method, although it is preferable at the point which does not accompany the addition of an additive, in addition to a great installation and operating cost, the effect of relieving sourness and acid odor is not necessarily acquired sufficiently.

このように、添加物の添加を伴わず、しかも食酢の品質をあまり変化させることなく、酸味や酸臭を有効に緩和しうる方法は、従来知られていなかった。ちなみに、化学的・物理的な手法を採用しなくても、食酢を長期間熟成すればマイルドな風味になるものの、製造に要する期間が長くなり生産性の観点で不利である。   Thus, a method that can effectively mitigate the sourness and acid odor without adding additives and without changing the quality of vinegar so far has not been known. By the way, even if chemical and physical methods are not employed, aging vinegar for a long period of time will result in a mild flavor, but it is disadvantageous from the viewpoint of productivity because the period required for production becomes long.

本発明は上記の課題に鑑みてなされたものであり、その目的は、添加物の添加を伴わず、しかも食酢の品質をあまり変化させることなく、食酢特有の酸味及び酸臭を有効に緩和して風味を改善することができる食酢及びその製造方法を提供することにある。また、本発明の別の目的は、このように風味が改善された食酢を含有する食酢含有飲食品を提供することにある。本発明のさらに別の目的は、何ら添加物を添加することなく、食酢の風味を改善する方法を提供することにある。   The present invention has been made in view of the above problems, and its purpose is to effectively relieve the sourness and acid smell peculiar to vinegar without adding additives and without significantly changing the quality of vinegar. It is providing the vinegar which can improve flavor, and its manufacturing method. Another object of the present invention is to provide a vinegar-containing food or drink containing vinegar with improved flavor. Still another object of the present invention is to provide a method for improving the flavor of vinegar without adding any additives.

そこで本発明者らは、上記課題を解決するべく鋭意検討を重ねた結果、偶然にも液体調味料である食酢を分散媒として、湿式微粉砕機で加工処理を行った場合に、分散媒である食酢の酸味や酸臭が緩和され、結果として食酢の風味が改善されることを新規に知見した。本発明者らは上記の知見に基づいてさらに鋭意研究を進めることにより、下記の発明を完成させるに至ったのである。ちなみに、食品分野において食品素材を湿式微粉砕機で加工処理する技術は既に存在していたが、あくまで固形分をある程度含む食品素材に適用され、その固形分を微細化することを主目的とするものであった。これに対して、当該技術を食酢のように固形分をほとんど含まない液体に適用することは未だ提案されておらず、また、これが風味改善に寄与することも従来全く知られていなかった。   Therefore, as a result of intensive studies to solve the above problems, the present inventors have accidentally used vinegar, which is a liquid seasoning, as a dispersion medium, and when processing is performed with a wet pulverizer, It was newly found that the sour taste and acid smell of a certain vinegar were alleviated and as a result the flavor of the vinegar was improved. Based on the above findings, the present inventors have made further studies and have completed the following invention. By the way, technology for processing food materials with a wet pulverizer already existed in the food field, but it is applied to food materials containing solids to some extent, and the main purpose is to refine the solids. It was a thing. On the other hand, it has not yet been proposed to apply the technique to a liquid containing almost no solid content such as vinegar, and it has not been known at all that this contributes to flavor improvement.

上記の課題を解決するための手段[1]〜[]を以下に列挙する。 Means [1] to [ 7 ] for solving the above problems are listed below.

[1]原料である食酢を球状の無機粉砕媒体とともに容器内に収納して回転させるタイプの湿式微粉砕機を用いて、液温の上昇を抑制しつつ前記食酢を加工処理する風味改善工程を含むことを特徴とする食酢の製造方法。 [1] A flavor improving step of processing the vinegar while suppressing an increase in liquid temperature using a wet type fine pulverizer of a type in which vinegar as a raw material is stored in a container together with a spherical inorganic pulverizing medium and rotated. The manufacturing method of the vinegar characterized by including.

]前記湿式微粉砕機は、ビーズミル粉砕機であることを特徴とする手段に記載の食酢の製造方法。 [ 2 ] The method for producing vinegar according to means 1 , wherein the wet pulverizer is a bead mill pulverizer.

]前記無機粉砕媒体の平均粒径は、0.1mm以上1.0mm以下であることを特徴とする手段1または2に記載の食酢の製造方法。 [ 3 ] The method for producing vinegar according to means 1 or 2 , wherein the average particle size of the inorganic grinding medium is 0.1 mm or more and 1.0 mm or less.

]前記食酢における糖類の濃度は、20質量%以下であることを特徴とする手段1乃至のいずれか1項に記載の食酢の製造方法。 [ 4 ] The method for producing vinegar according to any one of means 1 to 3 , wherein the saccharide concentration in the vinegar is 20% by mass or less.

]手段1乃至のいずれか1項に記載の方法により製造された食酢。 [ 5 ] A vinegar produced by the method according to any one of means 1 to 4 .

]手段1乃至のいずれか1項に記載の方法により製造された食酢を含む食酢含有飲食品。 [ 6 ] A vinegar-containing food or drink comprising the vinegar produced by the method according to any one of means 1 to 4 .

原料である食酢を球状の無機粉砕媒体とともに容器内に収納して回転させるタイプの湿式微粉砕機を用いて、液温の上昇を抑制しつつ加工処理された食酢を添加することで、当該食酢を含有する飲食品全体の風味を改善する方法。 [ 7 ] By adding the processed vinegar while suppressing the rise in the liquid temperature using a wet type fine pulverizer of a type in which vinegar as a raw material is stored in a container and rotated together with a spherical inorganic pulverizing medium. The method of improving the flavor of the whole food-drinks containing the said vinegar.

以上詳述したように、請求項1〜に記載の発明によると、風味改善用添加物の添加を伴わず、しかも食酢の品質をあまり変化させることなく、食酢特有の酸味及び酸臭を有効に緩和して風味を改善することができる食酢及びその製造方法を提供することができる。また、請求項に記載の発明によると、このように風味が改善された食酢を含有する品質のよい食酢含有飲食品を提供することができる。さらに、請求項に記載の発明によると、風味改善用添加物を何ら添加することなく、食酢の風味を改善することができる優れた方法を提供することができる。 As described in detail above, according to the inventions described in claims 1 to 5 , the sourness and acid smell peculiar to vinegar are effective without adding the flavor improving additive and without changing the quality of vinegar so much. It is possible to provide a vinegar that can be relaxed to improve the flavor and a method for producing the vinegar. Moreover, according to invention of Claim 6 , the quality vinegar containing food / beverage products containing the vinegar whose flavor was improved in this way can be provided. Furthermore, according to the invention of Claim 7 , the outstanding method which can improve the flavor of vinegar can be provided, without adding the flavor improvement additive at all.

本発明を具体化した実施形態の実施例において行った試験1の結果を示す表1。Table 1 which shows the result of the test 1 performed in the Example of embodiment which actualized this invention. 上記実施例において行った試験2で試作した飲食品のレシピを示す表2。Table 2 which shows the recipe of the food / beverage products made in trial 2 in the said Example. 上記実施例において行った試験2の結果を示す表3。Table 3 showing the results of Test 2 performed in the above examples. 上記実施例において行った試験3の結果を示す表4。Table 4 showing the results of Test 3 performed in the above Examples.

以下、本発明の食酢及びその製造方法、食酢含有飲食品及びその風味改善方法について詳細に説明する。
本発明の食酢の製造方法は、所定の風味改善工程を含むものであって、主として食酢特有の酸味及び酸臭の緩和を通じてその風味を改善する工程を含むものである。本発明が適用可能な食酢は、醸造酢であれば特に限定されないが、その例として、高酸度酢、米やその他穀物を原料とする米酢、玄米酢、穀物酢、リンゴ果汁、ブドウ果汁、ブドウ以外の果実(例えばブルーベリーなど)の果汁を原料とする果実酢などを挙げることができる。特に、エキス分(可溶性固形分)が少ない食酢は、風味が弱く、酸味、酸臭が強く感じられやすいため、本発明はこのような食酢に適用されることが好ましい。ここで、エキス分が少ない食酢とは、具体的にはエキス分含有量(EX%)が10質量%以下である低エキス食酢のことを指している。先に列挙した醸造酢のなかでは、高酸度酢、米酢、玄米酢、穀物酢、リンゴ果汁を原料とする果実酢などが低エキス食酢に該当し、とりわけエキス分含有量が少ないものとして高酸度酢を挙げることができる。
Hereinafter, the vinegar of this invention, its manufacturing method, vinegar containing food-drinks, and its flavor improvement method are demonstrated in detail.
The method for producing vinegar according to the present invention includes a predetermined flavor improving step, and mainly includes a step of improving the flavor through relaxation of acidity and acid smell peculiar to vinegar. The vinegar to which the present invention is applicable is not particularly limited as long as it is a brewed vinegar, but examples thereof include high acidity vinegar, rice vinegar made from rice and other grains, brown rice vinegar, grain vinegar, apple juice, grape juice, Examples include fruit vinegar made from fruit juices other than grapes (for example, blueberries). In particular, vinegar with a low extract content (soluble solid content) has a weak flavor and a strong acidity and acid odor are likely to be felt. Therefore, the present invention is preferably applied to such vinegar. Here, the vinegar with a low extract content specifically refers to a low extract vinegar having an extract content (EX%) of 10% by mass or less. Among the brewed vinegars listed above, high acidity vinegar, rice vinegar, brown rice vinegar, cereal vinegar, fruit vinegar made from apple juice, etc. correspond to low extract vinegar, especially those with low extract content. An acidity vinegar can be mentioned.

本発明の食酢は、装置の効率などを考慮して、できるだけ酸度(TA%)の高い食酢を生の状態で処理することが好ましい。ここで、酸度の高い食酢の例としては高酸度酢を挙げることができ、具体的には酸度が10%以上の高酸度酢を挙げることができる。なお、本発明における風味改善工程は、酸度の高い生酢の状態で実施されてもよいほか、他の原料を混合した後の調味酢あるいは食酢飲料の状態としてから実施されてもよい。   In the vinegar of the present invention, it is preferable to treat the vinegar with as high an acidity (TA%) as possible in a raw state in consideration of the efficiency of the apparatus. Here, examples of high acidity vinegar can include high acidity vinegar, and specifically, high acidity vinegar having an acidity of 10% or more. In addition, the flavor improvement process in this invention may be implemented in the state of the seasoned vinegar after mixing other raw materials, or may be implemented in the state of raw acid vinegar with high acidity.

本発明が適用される食酢におけるエキス分含有量(EX%)及び酸度(TA%)に関していうと、例えば「EX%/TA%」の値が9.00以下であることが好ましく、2.00以下であることがより好ましく、1.80以下であることがさらに好ましく、0.80以下であることが最も好ましい。このほか、食酢の成分に関するパラメータとしては、他に全窒素含有量(TN%)やブリックス(Bx%)などがあるが、例えば「TN%/TA%」の値が0.04以下であることが好ましく、0.02以下であることがより好ましく、0.01以下であることが最も好ましい。また、「Bx%/TA%」の値が9.40以下であることが好ましく、2.80以下であることがより好ましく、2.10以下であることがさらに好ましく、1.40以下であることが最も好ましい。   Regarding the extract content (EX%) and acidity (TA%) in vinegar to which the present invention is applied, for example, the value of “EX% / TA%” is preferably 9.00 or less, and is 2.00. Or less, more preferably 1.80 or less, and most preferably 0.80 or less. Other parameters related to vinegar ingredients include total nitrogen content (TN%) and Brix (Bx%). For example, the value of “TN% / TA%” is 0.04 or less. Is preferable, 0.02 or less is more preferable, and 0.01 or less is most preferable. The value of “Bx% / TA%” is preferably 9.40 or less, more preferably 2.80 or less, further preferably 2.10 or less, and 1.40 or less. Most preferred.

本発明の適用により風味が改善された食酢は、従来の食酢の利用方法であれば特に限定されることなく広く使用できるが、用途の具体例としては、食酢飲料用、すし酢用、ぽん酢用、その他の調理用などが挙げられる。これらのなかでも、食酢飲料用の食酢は酸味酸臭緩和のために通常なら糖類を添加する必要があり、本発明はこのような用途の食酢に適用されることが特に好ましい。即ち、酸味酸臭が緩和された食酢を使用すれば、糖類の添加を抑制することができ、近年の消費者における健康志向への高まりに応えることができるからである。また、製造者にとっても、糖類添加量の低減によって経済的なメリットを享受でき、好ましいからである。   The vinegar whose flavor has been improved by the application of the present invention can be widely used without particular limitation as long as it is a conventional method of using vinegar, but specific examples of uses are for vinegar drinks, for sushi vinegar, for vinegar, For other cooking purposes. Among these, vinegar for vinegared beverages usually needs to be added with saccharides for alleviating sour acid odor, and the present invention is particularly preferably applied to vinegar for such use. That is, if vinegar with a mild sour acid odor is used, the addition of saccharides can be suppressed, and it is possible to respond to the recent increase in health orientation of consumers. Moreover, it is because it is preferable for the manufacturer to enjoy an economic merit by reducing the amount of added sugar.

以下、本発明の食酢の製造方法について説明する。   Hereinafter, the manufacturing method of the vinegar of this invention is demonstrated.

本発明の製造方法では、液体調味料である食酢を加工処理して風味を改善するために、湿式微粉砕機を用いるとともに、原料である食酢を分散媒として当該装置に通じ、湿式の粉砕処理を行う必要がある。ここで、適用可能な湿式の粉砕方式としては、例えば、ピンミル、ロッドミル、ボールミル、ロールミル、ディスクミル、ビーズミルなどといった粉砕機を湿式で用いる方法が挙げられる。この場合において、原料である食酢を球状の無機粉砕媒体とともに容器内に収納して回転させるタイプの湿式微粉砕機を用いる方法が好ましく、特にビーズミル粉砕機を用いる方法が好ましい。ビーズミル粉砕機を用いると、食酢を確実にかつ効率よく処理できるばかりでなく、液温をあまり上昇させることなく処理できるという利点があるからである。   In the production method of the present invention, in order to improve the flavor by processing vinegar that is a liquid seasoning, a wet pulverizer is used, and the vinegar that is a raw material is passed through the apparatus as a dispersion medium to perform a wet pulverization process. Need to do. Here, as an applicable wet pulverization method, for example, a method using a pulverizer such as a pin mill, a rod mill, a ball mill, a roll mill, a disk mill, and a bead mill in a wet manner can be used. In this case, a method using a wet fine pulverizer of a type in which vinegar as a raw material is stored in a container together with a spherical inorganic pulverizing medium and rotated is preferable, and a method using a bead mill pulverizer is particularly preferable. This is because the use of a bead mill grinder has the advantage that not only vinegar can be treated reliably and efficiently, but also the liquid temperature can be treated without increasing so much.

通常、液体中の固形分を粉砕する場合、目標とする粉砕粒度に応じて、回転数や流速などを適宜変更して、最も経済性の高い条件を設定するが、本発明の製造方法における風味改善工程においても、当該発明の効果が得られる程度に適宜条件設定を行い、最も経済性の高い条件設定を行えばよい。   Usually, when solids in a liquid are pulverized, the most economical conditions are set by appropriately changing the rotation speed, flow rate, etc. according to the target pulverization particle size, but the flavor in the production method of the present invention Also in the improvement process, conditions may be set as appropriate to such an extent that the effect of the present invention is obtained, and the conditions that are most economical may be set.

ビーズミル粉砕機とは、一般に、液体中の粒子をナノ/マイクロメートルサイズまで粉砕・分散する装置のことをいう。処理室とも呼ばれる容器の中には、微細な酸化物セラミック製ビーズ(無機粉砕媒体)が70%〜95%程度充填される。この状態で、処理室の回転子を5m/秒〜15m/秒程度の速度で回転させることにより、ビーズに運動を与える。そして、本発明の風味改善工程においては、被処理物である食酢をあらかじめ作製しておき、その食酢を容器内にポンプで順次送り込むようにする。この場合、食酢には風味改善のための添加剤は特に添加されない。そして、容器を回転させると、容器内でのビーズ同士の衝突により、食酢が物理的に加工処理される。当該処理の後、食酢とビーズとは、処理室の出口にある分離手段等により分離される。当該処理の際には、常時冷却水を流通させるなどの方法により、液温の上昇を抑制することが好ましい。具体的には、液温が40℃以下を保つようにすることが好ましく、特には35℃以下を保つようにすることがより好ましい。このように非加熱下で加工処理を行うと、食酢の風味が熱により低下するリスクを軽減することができる。   A bead mill pulverizer generally refers to an apparatus that pulverizes and disperses particles in a liquid to a nano / micrometer size. A container called a processing chamber is filled with about 70% to 95% of fine oxide ceramic beads (inorganic grinding medium). In this state, the rotor of the processing chamber is rotated at a speed of about 5 m / sec to 15 m / sec, thereby giving motion to the beads. And in the flavor improvement process of this invention, the vinegar which is a to-be-processed object is produced previously, and the vinegar is sequentially sent with a pump in a container. In this case, an additive for improving the flavor is not particularly added to the vinegar. When the container is rotated, the vinegar is physically processed by the collision of the beads in the container. After the treatment, the vinegar and the beads are separated by separation means or the like at the outlet of the treatment chamber. During the treatment, it is preferable to suppress an increase in the liquid temperature by a method of always circulating cooling water. Specifically, it is preferable to maintain the liquid temperature at 40 ° C. or lower, and it is particularly preferable to maintain the liquid temperature at 35 ° C. or lower. Thus, when it processes without heating, the risk that the flavor of vinegar will fall with heat | fever can be reduced.

なお、無機粉砕媒体としては特に限定されるものではないが、例えばジルコニアビーズを使用することが好ましい。また、ジルコニアビーズ等の無機粉砕媒体としては、例えば平均粒径が1.0mm以下のものを使用することが好ましく、特には0.1mm以上1.0mm以下のものを使用することが好ましい。   In addition, although it does not specifically limit as an inorganic grinding | pulverization medium, For example, it is preferable to use a zirconia bead. In addition, as an inorganic pulverizing medium such as zirconia beads, it is preferable to use, for example, one having an average particle diameter of 1.0 mm or less, and particularly preferably 0.1 mm or more and 1.0 mm or less.

また、風味改善工程における加工処理時間は、特に限定されず任意に設定可能であるが、例えば1秒以上としてもよく、好ましくは1秒以上5時間以下としてもよく、さらに好ましくは1秒以上5分以下としてもよい。   Further, the processing time in the flavor improving step is not particularly limited and can be arbitrarily set. For example, it may be 1 second or longer, preferably 1 second to 5 hours, and more preferably 1 second to 5 seconds. It may be less than a minute.

本発明の製造方法における風味改善工程を経て得た食酢は、そのまま製品として成立してもよいほか、当該食酢を添加することで飲食品全体の風味が改善された食酢含有飲食品として成立してもよい。食酢を含有する飲食品の例としては、例えば、食酢を含有する飲料(食酢飲料)や、食酢を含有する液状調味料(合わせ酢、すし酢、ぽん酢、ドレッシング、めんつゆなど)等を挙げることができる。   The vinegar obtained through the flavor improving step in the production method of the present invention may be established as a product as it is, and it is established as a vinegar-containing food or drink in which the flavor of the entire food or drink is improved by adding the vinegar. Also good. Examples of foods and drinks containing vinegar include, for example, beverages containing vinegar (vinegar beverages) and liquid seasonings containing vinegar (such as vinegar, sushi vinegar, ponzu, dressing, and noodle soup). .

以下、実施形態の食酢及びその製造方法、食酢含有飲食品及びその風味改善方法をより具体化して行った実施例について図1〜図4に基づいて説明する。   Hereinafter, the vinegar of embodiment and its manufacturing method, the vinegar containing food-drinks, and the Example which carried out more concretely the flavor improvement method are demonstrated based on FIGS. 1-4.

[試験1] [Test 1]

(1)サンプルの作製   (1) Sample preparation

試験1では以下の手順で各種の食酢を加工処理した。ここでは、湿式微粉砕機として、直径0.5mmのジルコニア製ビーズを原料加工処理室に85%充填したビ−ズミル(アシザワ・ファインテック社製、商品名「スターミル ラボスターミニ LMZ015」)を用いた。そして、回転子を13m/sの速度で回転させながら、食酢を処理した。ビーズミルによる加工処理の条件は定法によるものとした。具体的には、送液量75rpm(ワンパス),ミル処理強度4208rpm/13m/s,ビーズサイズ0.5mm,メッシュ0.2μmとした。また、加工処理を通じて液温を35℃以下に維持した。   In Test 1, various vinegars were processed according to the following procedure. Here, as a wet pulverizer, a bead mill (trade name “Star Mill Lab Star Mini LMZ015” manufactured by Ashizawa Finetech Co., Ltd.) filled with 85% of zirconia beads having a diameter of 0.5 mm in the raw material processing chamber is used. It was. And vinegar was processed, rotating a rotor at the speed of 13 m / s. The conditions for processing by the bead mill were determined according to a standard method. Specifically, the feeding amount was 75 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, the bead size was 0.5 mm, and the mesh was 0.2 μm. Further, the liquid temperature was maintained at 35 ° C. or lower throughout the processing.

食酢として、市販の高酸度酢(1種)、穀物酢(2種)、米酢(3種)、玄米酢(3種)、リンゴ酢(2種)、ブルーベリー酢(1種)の合計12サンプルを準備し、酸度(TA%)、エキス分含有量(EX%)、全窒素含有量(TN%)、ブリックス(Bx%)、pHを常法に従って測定した。その結果を図1の表1に示す。また、これらの測定データに基づいて計算を行い、酸度に対するエキス分含有量の比率として定義されるエキス分・酸度比(EX%/TA%)、酸度に対する全窒素含有量の比率として定義される全窒素・酸度比(TN%/TA%)、酸度に対するブリックスの比率として定義されるブリックス・酸度比(Bx%/TA%)をそれぞれ求めた(表1参照)。なお、表1中では、EX%/TA%の値が小さいものから順に並べ、サンプルNo.1〜No.12とした。概して、酸度の高い食酢やエキス分の少ない食酢が表1の上段側に位置する一方、酸度の低い食酢やエキス分の多い食酢が表1の下段側に位置している。   As vinegar, total 12 of commercially available high acidity vinegar (1 type), grain vinegar (2 types), rice vinegar (3 types), brown rice vinegar (3 types), apple vinegar (2 types), blueberry vinegar (1 type) Samples were prepared, and acidity (TA%), extract content (EX%), total nitrogen content (TN%), Brix (Bx%), and pH were measured according to conventional methods. The results are shown in Table 1 of FIG. Also, calculation is performed based on these measurement data, and the extract content / acidity ratio (EX% / TA%) defined as the ratio of the extract content to the acidity is defined as the ratio of the total nitrogen content to the acidity. The total nitrogen / acidity ratio (TN% / TA%) and the Brix / acidity ratio (Bx% / TA%) defined as the ratio of Brix to acidity were determined (see Table 1). In Table 1, sample numbers are arranged in order from the smallest EX% / TA% value. 1-No. It was set to 12. Generally, vinegar with high acidity and vinegar with little extract are located on the upper side of Table 1, while vinegar with low acidity and vinegar with much extract are located on the lower side of Table 1.

ちなみに、サンプルNo.1は高酸度酢であって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.000、0.001、0.498であった。サンプルNo.2は米酢Bであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.248、0.004、0.756であった。サンプルNo.3はリンゴ酢Aであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.575、0.001、1.076であった。サンプルNo.4は穀物酢Bであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.686、0.010、1.243であった。サンプルNo.5は穀物酢Aであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.739、0.010、1.310であった。サンプルNo.6はリンゴ酢Bであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.824、0.001、1.317であった。サンプルNo.7は玄米酢Aであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.873、0.029、1.652であった。サンプルNo.8は玄米酢Cであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が0.956、0.029、1.704であった。サンプルNo.9は米酢Aであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が1.621、0.007、2.156であった。サンプルNo.10は玄米酢Bであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が1.894、0.037、2.788であった。サンプルNo.11は米酢Cであって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が1.994、0.014、2.573であった。サンプルNo.12はブルーベリー酢であって、各計算値(EX%/TA%、TN%/TA%、Bx%/TA%)の値が8.677、0.019、9.303であった。   Incidentally, sample no. 1 is a high acidity vinegar, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.000, 0.001, and 0.498. Sample No. 2 is rice vinegar B, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.248, 0.004, and 0.756, respectively. Sample No. 3 is apple vinegar A, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.575, 0.001, and 1.076. Sample No. 4 is grain vinegar B, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.686, 0.010, and 1.243. Sample No. 5 is grain vinegar A, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.739, 0.010, and 1.310. Sample No. 6 is apple vinegar B, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.824, 0.001, and 1.317. Sample No. 7 is brown rice vinegar A, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.873, 0.029, and 1.652, respectively. Sample No. 8 is brown rice vinegar C, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 0.956, 0.029 and 1.704. Sample No. 9 is rice vinegar A, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 1.621, 0.007, and 2.156. Sample No. 10 is brown rice vinegar B, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 1.894, 0.037, 2.788. Sample No. 11 is rice vinegar C, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 1.994, 0.014, and 2.573, respectively. Sample No. 12 is blueberry vinegar, and the calculated values (EX% / TA%, TN% / TA%, Bx% / TA%) were 8.677, 0.019, and 9.303.

なお、上記12種類のサンプルについては、ビーズミルによる加工処理を行ったもの(BM処理品)と、行わないもの(BM無処理品:コントロール品)とをそれぞれ作製し、後述する比較評価のための試験に供した。   In addition, about the above-mentioned 12 kinds of samples, a sample processed with a bead mill (BM-processed product) and a sample not processed (BM-unprocessed product: control product) were prepared, respectively, for comparative evaluation described later. It used for the test.

(2)サンプルの比較評価   (2) Comparative evaluation of samples

作製した食酢サンプルの風味(特に酸味酸臭)につき、5名の官能検査官による官能検査を行って比較評価した。その結果を図1の表1に示す。なお、サンプルごとに、絶対評価として、◎(明らかに酸の刺激が緩和される)、○(酸の刺激が緩和される)、△(やや酸の刺激が緩和される)、×(酸の刺激が強い(口に入れたとたんにツンツン、ピリピリする))の4段階で評価した。   The flavor (especially sour acid odor) of the prepared vinegar sample was subjected to a sensory test by five sensory inspectors for comparative evaluation. The results are shown in Table 1 of FIG. In addition, for each sample, as absolute evaluation, ◎ (obviously acid stimulation is alleviated), ○ (acid stimulation is alleviated), Δ (slight acid stimulation is alleviated), × (acid The evaluation was made in four grades of strong irritation (smoothly as soon as it was put in the mouth).

(3)評価結果   (3) Evaluation results

図1の表1に示すように、No.1(高酸度酢)からNo.14(ブルーベリー酢)のBM無処理品については、いずれも評価が×(酸の刺激が強い(口に入れたとたんにツンツン、ピリピリする))であった。それゆえ、これらのBM無処理品は、酸味酸臭が強く風味の改善を要するものであった。これに対し、No.1(高酸度酢)からNo.5(穀物酢A)のBM処理品については、いずれも評価が◎(明らかに酸の刺激が緩和される)となり、風味改善効果が極めて高いことがわかった。No.6(リンゴ酢B)からNo.9(米酢A)のBM処理品については、いずれも評価が〇(酸の刺激が緩和される)となり、これらのサンプルについても風味改善効果が高いことがわかった。No.10(玄米酢B)からNo.12(ブルーベリー酢)のBM処理品については、いずれも評価が△(やや酸の刺激が緩和される)となり、効果はそれほど高くはないが風味改善効果があることがわかった。   As shown in Table 1 of FIG. No. 1 (high acidity vinegar) to No. 1 14 (blueberry vinegar) BM untreated products were all evaluated as x (strong acid irritation (swiftly when put in mouth)). Therefore, these BM-untreated products have a strong sour acid odor and require improvement in flavor. In contrast, no. No. 1 (high acidity vinegar) to No. 1 5 (grain vinegar A) BM-treated products were evaluated as 酸 (obviously the acid stimulation was alleviated), and it was found that the effect of improving the flavor was extremely high. No. 6 (apple cider vinegar B) 9 (rice vinegar A) was evaluated as ◯ (acid stimulation was alleviated) for all BM-treated products, and these samples were found to have a high flavor improving effect. No. No. 10 (brown rice vinegar B) For the BM-treated product of 12 (blueberry vinegar), the evaluation was Δ (slightly less acid stimulation), and the effect was not so high, but was found to have a flavor improving effect.

以上の結果を総合すると、エキス分・酸度比(EX%/TA%)が2.00以下であるサンプルや、ブリックス・酸度比(Bx%/TA%)が2.80以下であるサンプルについて、風味改善効果が得やすくなる傾向があることがわかった。一方、全窒素・酸度比(TN%/TA%)に関して特にこのような傾向は認められなかった。   Summing up the above results, the sample having an extract content / acidity ratio (EX% / TA%) of 2.00 or less, or a sample having a Brix / acidity ratio (Bx% / TA%) of 2.80 or less, It turned out that there exists a tendency which becomes easy to obtain the flavor improvement effect. On the other hand, such a tendency was not particularly observed with respect to the total nitrogen / acidity ratio (TN% / TA%).

[試験2] [Test 2]

試験2では、基本的に試験1と同様の手順で各種の食酢をビーズミルで加工処理した。加工処理の条件としては、具体的には、送液量45rpm(循環),ミル処理強度4208rpm/13m/s,処理時間90分,ビーズサイズ0.5mm,メッシュ0.2μmとした。また、加工処理を通じて液温を35℃以下に維持した。ここでは、加工処理の対象となる食酢として、穀物酢(TA=4.2%,EX=3.1%)、純玄米黒酢(TA=4.5%,EX=8.6%)、米酢(TA=4.5%,EX=7.3%)、高酸度酢(TA=15.0%,EX=0.0%)の4種類を準備した。そして、このようなビーズミル加工処理済みの食酢を用いて、図2の表2のレシピに示すように、食酢飲料、合わせ酢(すし酢)、ぽん酢の3種類をそれぞれ作製した。このようにして作製した3種類の食酢含有飲食品と、生酢(即ちビーズミル加工処理済みの食酢)とを用い、各々について風味(特に酸味酸臭)に関する評価試験を行った。評価試験は試験1に準じて5名の官能検査官による官能検査とし、◎,○,△,×の4段階評価とした。サンプルNo.13〜No.16についての評価結果を図3の表3に示す。   In Test 2, various vinegars were processed with a bead mill in the same procedure as in Test 1. Specifically, the processing conditions were a liquid feed rate of 45 rpm (circulation), a mill processing strength of 4208 rpm / 13 m / s, a processing time of 90 minutes, a bead size of 0.5 mm, and a mesh of 0.2 μm. Further, the liquid temperature was maintained at 35 ° C. or lower throughout the processing. Here, as the vinegar to be processed, grain vinegar (TA = 4.2%, EX = 3.1%), pure brown rice black vinegar (TA = 4.5%, EX = 8.6%), Four types of rice vinegar (TA = 4.5%, EX = 7.3%) and high acidity vinegar (TA = 15.0%, EX = 0.0%) were prepared. Then, using such bead mill processed vinegar, three types of vinegared beverage, combined vinegar (sushi vinegar), and ponzu were prepared as shown in the recipe of Table 2 in FIG. Using the three kinds of vinegar-containing foods and drinks thus prepared and fresh vinegar (that is, vinegar that had been subjected to bead mill processing), an evaluation test on flavor (particularly sour acid odor) was performed. The evaluation test was a sensory test by five sensory inspectors according to Test 1, and a four-level evaluation of ◎, ○, Δ, and ×. Sample No. 13-No. The evaluation results for 16 are shown in Table 3 of FIG.

その結果、図3の表3に示すように、食酢の種類を問わず、また飲食品の種類を問わず、◎の評価となり、高い風味改善効果が認められた。なお、これらのものにおいては、先の酸味(即ち、口に含んだ直後の刺激)が明らかに緩和されることがわかった。   As a result, as shown in Table 3 of FIG. 3, regardless of the type of vinegar or the type of food or drink, the evaluation was “◎”, and a high flavor improving effect was recognized. In addition, in these things, it turned out that the previous acidity (namely, irritation | stimulation immediately after having included in the mouth) is relieved clearly.

[試験3] [Test 3]

試験3では、食酢として穀物酢(TA=4.2%,EX=3.1%)を用意し、基本的に試験1と同様の手順で食酢をビーズミルで加工処理するにあたり、加工処理の条件を図4の表4に示すように変更して、サンプルNo.17〜No.30を作製した。具体的にいうと、サンプルNo.17では、送液量45rpm(ワンパス),ミル処理強度4208rpm/13m/s,処理時間6分,とした。サンプルNo.18では、送液量30rpm(ワンパス),ミル処理強度4208rpm/13m/s,処理時間9分,とした。サンプルNo.19では、送液量15rpm(ワンパス),ミル処理強度4208rpm/13m/s,処理時間18分,とした。サンプルNo.20では、送液量15rpm(ワンパス),ミル処理強度2590rpm/8m/s,処理時間18分,とした。サンプルNo.21では、送液量45rpm(循環),ミル処理強度4208rpm/13m/s,処理時間90分,とした。サンプルNo.22では、送液量468rpm(装置能力上限)(ワンパス),ミル処理強度4208rpm/13m/s,処理時間0.5分未満,とした。サンプルNo.23では、送液量400rpm(装置能力上限)(ワンパス),ミル処理強度4208rpm/13m/s,処理時間0.5分未満,とした。サンプルNo.24では、送液量300rpm(装置能力上限)(ワンパス),ミル処理強度4208rpm/13m/s,処理時間0.5分未満,とした。サンプルNo.25では、送液量200rpm(ワンパス),ミル処理強度4208rpm/13m/s,処理時間1分,とした。サンプルNo.26では、送液量150rpm(ワンパス),ミル処理強度4208rpm/13m/s,処理時間2分,とした。サンプルNo.27では、送液量100rpm(ワンパス),ミル処理強度4208rpm/13m/s,処理時間3分,とした。サンプルNo.28は、送液量75rpm,ミル処理強度4208rpm/13m/s,処理時間4分,とした。サンプルNo.29は、送液量150rpm(ワンパス),ミル処理強度2590rpm/8m/s,処理時間2分,とした。なお、サンプルNo.30は無処理区とした。そして、上記14種類の生酢サンプルについて風味(特に酸味酸臭)に関する評価試験を行った。評価試験は試験1に準じて5名の官能検査官による官能検査とし、◎,○,△,×の4段階評価とした。サンプルNo.17〜No.30についての評価結果を図4の表4に示す。   In Test 3, cereal vinegar (TA = 4.2%, EX = 3.1%) is prepared as vinegar, and the processing conditions for processing vinegar in a bead mill are basically the same as in Test 1. As shown in Table 4 of FIG. 17-No. 30 was produced. Specifically, sample no. In No. 17, the feed rate was 45 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 6 minutes. Sample No. In No. 18, the feeding amount was 30 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 9 minutes. Sample No. In No. 19, the feeding amount was 15 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 18 minutes. Sample No. In No. 20, the feeding amount was 15 rpm (one pass), the mill processing strength was 2590 rpm / 8 m / s, and the processing time was 18 minutes. Sample No. In No. 21, the feeding amount was 45 rpm (circulation), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 90 minutes. Sample No. In No. 22, the feeding amount was 468 rpm (upper apparatus capacity) (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was less than 0.5 minutes. Sample No. 23, the liquid feed amount was 400 rpm (upper apparatus capacity) (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was less than 0.5 minutes. Sample No. In No. 24, the liquid feed amount was 300 rpm (upper apparatus capacity) (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was less than 0.5 minutes. Sample No. 25, the feed rate was 200 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 1 minute. Sample No. In No. 26, the feeding amount was 150 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 2 minutes. Sample No. In No. 27, the feeding amount was 100 rpm (one pass), the mill processing strength was 4208 rpm / 13 m / s, and the processing time was 3 minutes. Sample No. No. 28 has a liquid feeding amount of 75 rpm, a mill processing strength of 4208 rpm / 13 m / s, and a processing time of 4 minutes. Sample No. No. 29 has a liquid feed amount of 150 rpm (one pass), a mill processing strength of 2590 rpm / 8 m / s, and a processing time of 2 minutes. Sample No. 30 was defined as an untreated section. And the evaluation test regarding flavor (especially sour acid odor) was done about said 14 types of fresh vinegar samples. The evaluation test was a sensory test by five sensory inspectors according to Test 1, and a four-level evaluation of ◎, ○, Δ, and ×. Sample No. 17-No. The evaluation results for 30 are shown in Table 4 of FIG.

図4の表4に示すように、サンプルNo.17、18、19、21については、いずれも◎の評価となり、高い風味改善効果が認められた。つまり、これらのものにおいては、先の酸味(即ち、口に含んだ直後の刺激)が明らかに緩和されることがわかった。これらに対し、ミル処理強度を低く設定したサンプルNo.20については、やや弱いが先の酸味の緩和効果があることから△の評価となった。また、処理時間を6分間〜90分間に設定した上記サンプルとは異なり、処理時間5分未満と短く設定したサンプルNo.22、23、24、25、26、27、28、29であっても、△〜◎の評価となったため、これらにおいても風味改善効果があることがわかった。特にサンプルNo.28は◎の評価となり、高い風味改善効果が認められた。   As shown in Table 4 of FIG. About 17, 18, 19, and 21, all became evaluation of (double-circle) and the high flavor improvement effect was recognized. That is, in these things, it turned out that the previous acidity (namely, irritation | stimulation immediately after having put in the mouth) is relieved clearly. In contrast, Sample No. with a low milling strength was used. About 20, although it was a little weak, since it had the effect of relieving the previous acidity, it was evaluated as Δ. Further, unlike the above sample in which the processing time was set to 6 minutes to 90 minutes, the sample No. Even if it was 22, 23, 24, 25, 26, 27, 28, 29, since it became evaluation of (triangle | delta)-(double-circle), it turned out that these also have a flavor improvement effect. Especially sample no. 28 was evaluated as ◎, and a high flavor improving effect was recognized.

上述したように、本実施形態の上記試験例の食酢及びその製造方法によると、風味改善用添加物の添加を伴わず、しかも食酢の品質をあまり変化させることなく、食酢特有の酸味及び酸臭を有効に緩和して風味を改善することができる。また、上記試験例の製造方法を経て風味が改善された食酢を用いることにより、風味に優れた品質のよい食酢含有飲食品を提供することができる。なお、本発明の実施形態は発明の趣旨を逸脱しない限りにおいて任意に変更してもよい。   As described above, according to the vinegar of the above test example of the present embodiment and the method for producing the vinegar, the acidity and acid smell peculiar to vinegar are not accompanied by the addition of the flavor improving additive, and the quality of the vinegar is not significantly changed. Can be effectively relaxed to improve the flavor. Moreover, the vinegar containing food / beverage products of the quality excellent in flavor can be provided by using the vinegar by which the flavor was improved through the manufacturing method of the said test example. In addition, you may change arbitrarily embodiment of this invention, unless it deviates from the meaning of invention.

次に、前述した実施の形態によって把握される技術的思想を以下に列挙する。
(1)上記手段1乃至8のいずれか1項において、前記食酢は、酸度が10%以上の高酸度酢であること。
(2)上記手段1乃至8のいずれか1項において、前記食酢は、エキス分が0質量%以上10質量%以下の低エキス食酢であること。
(3)上記手段1乃至8のいずれか1項において、前記風味改善工程は、食酢の酸味及び酸臭の緩和を伴うものであること。
(4)上記手段1乃至8のいずれか1項において、前記風味改善工程は、前記食酢に対する添加物の添加を伴わずに行うこと。
(5)上記手段1乃至8のいずれか1項において、前記風味改善工程は、非加熱下で行うこと。
(6)上記手段1乃至8のいずれか1項において、前記風味改善工程は、40℃以下の液温を保持しながら行うこと。
(7)上記手段1乃至8のいずれか1項において、前記風味改善工程における加工処理時間が1秒以上5分以下であること。
(8)上記手段7において、前記食酢含有飲食品は食酢含有飲料であること。
(9)上記手段7において、前記食酢含有飲食品は食酢含有液状調味料であること。
Next, the technical ideas grasped by the embodiment described above are listed below.
(1) In any one of the above means 1 to 8, the vinegar is a high acidity vinegar having an acidity of 10% or more.
(2) In any one of the above means 1 to 8, the vinegar is a low extract vinegar having an extract content of 0% by mass to 10% by mass.
(3) In any one of said means 1 thru | or 8, the said flavor improvement process involves relaxation of the acidity and acid smell of vinegar.
(4) In any one of said means 1 thru | or 8, the said flavor improvement process is performed without the addition of the additive with respect to the said vinegar.
(5) In any one of the above means 1 to 8, the flavor improving step is performed without heating.
(6) In any one of the above means 1 to 8, the flavor improving step is performed while maintaining a liquid temperature of 40 ° C. or lower.
(7) In any one of the above means 1 to 8, the processing time in the flavor improving step is 1 second or more and 5 minutes or less.
(8) In the above means 7, the vinegar-containing food or drink is a vinegar-containing beverage.
(9) In the above means 7, the vinegar-containing food or drink is a vinegar-containing liquid seasoning.

Claims (7)

原料である食酢を球状の無機粉砕媒体とともに容器内に収納して回転させるタイプの湿式微粉砕機を用いて、液温の上昇を抑制しつつ前記食酢を加工処理する風味改善工程を含むことを特徴とする食酢の製造方法。 Including a flavor improving step of processing the vinegar while suppressing the rise in liquid temperature, using a wet type fine pulverizer of a type in which vinegar as a raw material is stored in a container together with a spherical inorganic pulverizing medium and rotated. The manufacturing method of the vinegar characterized by the above. 前記湿式微粉砕機は、ビーズミル粉砕機であることを特徴とする請求項に記載の食酢の製造方法。 The method for producing vinegar according to claim 1 , wherein the wet pulverizer is a bead mill pulverizer. 前記無機粉砕媒体の平均粒径は、0.1mm以上1.0mm以下であることを特徴とする請求項1または2に記載の食酢の製造方法。 The average particle diameter of the said inorganic grinding | pulverization medium is 0.1 mm or more and 1.0 mm or less, The manufacturing method of the vinegar of Claim 1 or 2 characterized by the above-mentioned. 前記食酢における糖類の濃度は、20質量%以下であることを特徴とする請求項1乃至のいずれか1項に記載の食酢の製造方法。 The method for producing vinegar according to any one of claims 1 to 3 , wherein the saccharide concentration in the vinegar is 20% by mass or less. 請求項1乃至のいずれか1項に記載の方法により製造された食酢。 A vinegar produced by the method according to any one of claims 1 to 4 . 請求項1乃至のいずれか1項に記載の方法により製造された食酢を含む食酢含有飲食品。 A vinegar-containing food or drink comprising the vinegar produced by the method according to any one of claims 1 to 4 . 原料である食酢を球状の無機粉砕媒体とともに容器内に収納して回転させるタイプの湿式微粉砕機を用いて、液温の上昇を抑制しつつ加工処理された食酢を添加することで、当該食酢を含有する飲食品全体の風味を改善する方法。 The vinegar is processed by adding the processed vinegar while suppressing the rise in the liquid temperature using a wet- type fine pulverizer of the type in which the vinegar, which is the raw material, is stored in a container together with a spherical inorganic grinding medium and rotated. The method of improving the flavor of the whole food / beverage products containing.
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