JPH11178536A - Production of snack food of tuberous roots of beet or the like - Google Patents

Production of snack food of tuberous roots of beet or the like

Info

Publication number
JPH11178536A
JPH11178536A JP37004897A JP37004897A JPH11178536A JP H11178536 A JPH11178536 A JP H11178536A JP 37004897 A JP37004897 A JP 37004897A JP 37004897 A JP37004897 A JP 37004897A JP H11178536 A JPH11178536 A JP H11178536A
Authority
JP
Japan
Prior art keywords
beet
snack food
yacon
minutes
solution
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP37004897A
Other languages
Japanese (ja)
Other versions
JP3318864B2 (en
Inventor
Toshimitsu Kitamura
利光 北村
Kazuyuki Omori
一幸 大森
Toshimasa Kodama
年正 児玉
Koichi Ando
功一 安藤
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Individual
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Individual
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Priority to JP37004897A priority Critical patent/JP3318864B2/en
Publication of JPH11178536A publication Critical patent/JPH11178536A/en
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Publication of JP3318864B2 publication Critical patent/JP3318864B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Confectionery (AREA)
  • Preparation Of Fruits And Vegetables (AREA)
  • General Preparation And Processing Of Foods (AREA)
  • Storage Of Fruits Or Vegetables (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a method for producing a crispy, porous snack food of delicious flavor which has never existed in the world from a tuberous root such as beet and Polynnia sonchifolia containing a large amount of water and having tough fiber. SOLUTION: A tuberous root is cut into a necessary shape or is not cut and pretreated and immersed in a solution of a saccharide having 20-65 Brix degree for a required time. After taking out the tuberous root, it is frozen or is not frozen and fried under reduced pressure and dried.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、ビートやヤーコン
のように多量の水分を含み、且つ、強靭な繊維を持って
いる塊根類より、今まで世界になかったサクサクとポー
ラスな食感の美味なスナック食品を製造することに関す
るものである。ニンニクやチューリップの球根は、ビー
トやヤーコンのように多量の水分や糖類を含むものでは
ないが、本願発明の方法で、やはり優れたスナック菓子
を作ることができる。
TECHNICAL FIELD The present invention relates to a crispy and porous texture that has never been in the world before, compared to tuberous roots that contain a large amount of water and have strong fibers, such as beet and yacon. Related to the production of snack foods. Garlic and tulip bulbs do not contain a large amount of water or sugar like beet or yacon, but still excellent snacks can be made by the method of the present invention.

【0002】ビートは砂糖大根として有名であるが、ヤ
ーコンはわが国においては未だ栽培されて日も浅く、な
じみの薄い植物である。南アメリカ、アンデス地方の原
産のキク科の多年性植物で、サツマイモに似た塊根であ
り、生の食味は青果梨と同様な多汁質である。ビートも
ヤーコンも共に多量の水分を含み(75〜95重量パー
セント)、また、強靭な繊維を持っており、煮ても固く
て食すことは困難であり、いわんや、乾燥させて食用に
供しようとしても、堅く固まるだけで、食用には不向き
なものであった。従って、ビートからは砂糖を、ヤーコ
ンからは同じくジュースを取って、飲用に供する程度で
あった。
[0002] Beet is famous as sugar radish, but yacon is a plant that is still cultivated in Japan, is young, and has little familiarity. It is a perennial plant of the Asteraceae native to the Andes region of South America. It is a tuberous root similar to sweet potato, and has a raw taste similar to that of fruit and vegetables. Both beets and yacon contain a large amount of water (75-95% by weight), and have strong fibers that are hard to eat even when boiled. However, it only hardened and was unsuitable for edible use. Therefore, sugar was consumed from the beet and juice was also consumed from the yacon, which was then used for drinking.

【0003】[0003]

【従来の技術】従来もビートやヤーコンから、スナック
菓子のような食品を製造しようとする試みは存在した。
特に特開平8−332046は、3〜15mmの厚みに
スライス又は5〜15mmの棒状又はスティック状に切
断したビートやヤーコンを真空フライ乾燥させるもので
あるが、この方法では前述したように乾燥した繊維の固
まりができるだけで、食用に供し得るものはできなかっ
た。本願発明者らの研究によれば、ビートもヤーコンも
収穫後1〜1.5ケ月経過しないと糖分が15度以上に
はならず、この時期を逸せず処理しないと自然の甘味を
製品に期待することができないのであるが、仮に15度
程度の糖分があっても、乾燥させると前述のように繊維
の固まりになってしまって食用にならない。本願発明者
らが特開平8−332046の方法で実験したところ、
原料仕込量に対する製品の収率は、ビートは8%、ヤー
コンは7%程度であった。即ち、原料の水分が抜けて、
繊維とわずかな糖分が残留していることが数量的にも確
かめられ、これでは食品として不向きであることが判明
した。
2. Description of the Prior Art There have been attempts to produce foods such as snacks from beets and yacons.
In particular, Japanese Patent Application Laid-Open No. 8-33046 discloses vacuum-drying a beet or yacon sliced into a thickness of 3 to 15 mm or cut into a bar or stick of 5 to 15 mm, and in this method, the dried fiber is dried as described above. There was no mass that could only be eaten. According to the study of the present inventors, the sugar content of the beet and yacon does not increase to 15 degrees or more until 1 to 1.5 months after harvesting, and natural sweetness is imparted to the product unless it is processed without losing this time. Although it can not be expected, even if there is a sugar content of about 15 degrees, if dried, the fibers will be clumped as described above and will not be edible. When the inventors of the present application experimented with the method of JP-A-8-33046,
The yield of the product with respect to the raw material charge was about 8% for beet and about 7% for yacon. In other words, the moisture of the raw material escapes,
It was confirmed quantitatively that the fiber and a small amount of sugar remained, which proved to be unsuitable as food.

【0004】[0004]

【発明が解決しようとする課題】ビートやヤーコンも収
穫直後から品質が変化し始め、糖分は前述の如く、1〜
1.5ケ月経過後に最高となるが、その後減少に転ず
る。自家発酵し易く、糖の性質も変化する。また、酸化
されやすく容易に褐・黒変が生ずる。腐敗菌や白かびの
増殖等により、3ケ月以上の保存は極めて困難である。
したがって、ビートやヤーコンを原料素材として使用す
るうえから、この品質の変化を極力抑制し、長期の安定
した品質を保持しなければならない。本願発明者らは、
これらの長期保存法(本願と同時に別途出願中)の研究
過程で、その克服法を発見した。
The quality of beets and yacon also begins to change immediately after harvesting, and the sugar content is 1 to 4 as described above.
It reaches its maximum after 1.5 months, but then begins to decrease. It is easily fermented by itself and its sugar properties change. Further, it is easily oxidized and easily browns and darkens. Preservation for more than 3 months is extremely difficult due to the growth of spoilage bacteria and mildew.
Therefore, in using beet or yacon as a raw material, it is necessary to minimize this change in quality and maintain stable quality for a long period of time. The present inventors have:
In the course of studying these long-term preservation methods (a separate application was filed at the same time as the present application), a method for overcoming them was discovered.

【0005】[0005]

【課題を解決するための手段】本願発明者らは、ビート
やヤーコンの外部の腐敗菌、白かびなどによる変性に対
しては、殺菌・滅菌処理を、酸化に対しては酸化防止剤
を、自家発酵に対して、酵素の不活性化処理を、長期保
存のハード面は、冷凍保存をそれぞれ組合せた新方法を
案出したが、糖分の変化に対しては、外部からの糖分を
補給して、安定させることを考案したのである。この糖
分の外部からの供給が、スナック食品の製造に極めて重
要な役割を果たすことを発見したのである。
Means for Solving the Problems The present inventors use a sterilization / sterilization treatment for denaturation of beet and yacon by rot bacteria and mildew, an antioxidant for oxidation, For in-house fermentation, we devised a new method that combines enzyme inactivation treatment and long-term storage with frozen storage.However, for sugar changes, supplement external sugar. The idea was to stabilize. This extraneous supply of sugar has been found to play a crucial role in the production of snack foods.

【0006】[0006]

【本願発明の構成】本願発明の構成は次のとおりであ
る。 (1) まず、前述のように前処理を施した原材料をB
rix度20〜65度の糖液に浸漬させる。糖はマルト
ース、ラクトース、フラクトース、ビートオリゴ糖、フ
ラクトオリゴ糖、その他の単糖類、オリゴ糖類、または
その組合せを任意に行えば良い。しかし、スナック食品
の性質上、吸湿性の高い単糖類よりは、これの少ないマ
ルトースの如き寡糖類が好ましい。浸漬時間は、対象物
の品質、製品の品質を考慮しながら、糖度と関連して決
めるべきである。 (2) 次に、浸漬の終了した原材料を−20℃以下に
凍結させる。このようにすると長期の保存が可能である
と同時に、一部脱水の効果もあり、また、次の真空フラ
イ乾燥時に素材をポーラスにする作用もある。 (3) 最後に素材を減圧フライ乾燥処理をする。この
減圧フライ乾燥法は、通常の方法によってもよいが、本
願発明者の一人が発明した特許第1887862号の方
法が最も望ましい。この方法は、オートクレーブ中の圧
力を2気圧位から急激に5Torr位まで減圧し、必要
に応じてこれを繰り返しながら油(温度は比較的低温)
で、フライ処理するものである。 このようにして得られた製品は、原料仕込量に対して、
ビートもヤーコンも30%近い収率であった。即ち、従
来法の収率7〜8%に比して、4倍の収率であり、従来
法の製品がほとんど繊維の固まりであるのに対し、本発
明は充分な糖分を含む原料素材の自然の栄養を保ちなが
ら、サクサクとポーラスな食感の優れた製品となったの
である。
The structure of the present invention is as follows. (1) First, the raw material subjected to the pretreatment as described above is referred to as B
It is immersed in a sugar solution having a rix degree of 20 to 65 degrees. The sugar may be maltose, lactose, fructose, beet oligosaccharide, fructooligosaccharide, other monosaccharides, oligosaccharides, or any combination thereof. However, due to the nature of snack foods, oligosaccharides such as maltose, which are low in this, are preferable to monosaccharides having high hygroscopicity. The immersion time should be determined in relation to the sugar content, taking into account the quality of the object and the quality of the product. (2) Next, the raw material having been immersed is frozen at -20 ° C or lower. In this way, long-term storage is possible, and at the same time, there is an effect of partial dehydration, and there is also an effect of making the material porous during the next vacuum fry drying. (3) Finally, the material is subjected to reduced pressure fly drying. This reduced-pressure fly-drying method may be a conventional method, but the method of Japanese Patent No. 1888786 invented by one of the present inventors is most desirable. In this method, the pressure in the autoclave is rapidly reduced from about 2 atm to about 5 Torr, and this is repeated as necessary, while the oil (the temperature is relatively low).
And fry processing. The product obtained in this way is
Both the beet and the yacon yielded close to 30%. That is, the yield is 4 times as high as the yield of the conventional method of 7 to 8%, and the product of the conventional method is almost a lump of fibers. While maintaining the natural nutrition, it became a product with excellent crispy and porous texture.

【0007】[0007]

【発明の実施の形態】以下に本発明の実施の態様を実施
例を挙げて更に詳述する。なお、本願発明の前処理を含
めた全工程は表1の通りである。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The embodiments of the present invention will be described below in more detail by way of examples. Table 1 shows all the steps including the pretreatment of the present invention.

【表1】 [Table 1]

【0008】[0008]

【実施例】【Example】

【0009】実施例1 ヤーコン収穫後、塩素濃度0.3%、または、過酸化水
素2%添加の洗浄液(以下、第1液という)を用いて高
圧洗浄機にて洗浄後、第1液に漬けながら脱皮機にて脱
皮を行い、スティック(15mm角、長さ120mm)
にカット処理する。その後、海塩または粗塩の濃度を
1.5%とした水溶液にアスコルビン酸を加えpH5〜
6とした水溶液(以下、第2液という)にヤーコンを浸
漬し、1%重炭酸ソーダ水溶液を数回に分けて、ヤーコ
ンを浸漬したものに添加した後、温度95℃で5分間ブ
ランチング処理し、取り出し急冷する。ブランチング処
理後、Brix度50度になるようマルトース液および
ビートオリゴ糖で調製した溶液(以下、第3液という)
にビタミンEを添加したものにヤーコンを4.5時間浸
漬する。このときのBrix度は30度となった。その
後、急冷する(−40℃)。加圧減圧可能な回転カゴ体
付のオートクレーブを用い、フライ油はライス油40
%、綿実油20%、ゴマ油7%、フラワー油13%、パ
ーム油10%、サラダ油10%の混合油とする。圧力5
Torrで、ヤーコン投入当初は135℃で6分間、そ
の後、105℃にて44分間、計50分間フライ処理す
る。フライ処理後、カゴ体を450rpmで30分間回
転させ油分を遠心分離した。こうして得られた製品は収
率27%、残油分15%、残水分1.5%、ポーラスで
クリスプの、また、黄白色の鮮やかな色調と香味を有す
る優れたスナック乾燥製品であった。
Example 1 After harvesting yacon, washing with a high-pressure washing machine using a washing solution containing 0.3% chlorine or 2% hydrogen peroxide (hereinafter referred to as a first solution), the first solution Peel off with a moulting machine while pickling, stick (15mm square, length 120mm)
Cut processing. Thereafter, ascorbic acid was added to an aqueous solution having a sea salt or crude salt concentration of 1.5% to adjust the pH to 5 to 5.
6, the yacon was immersed in an aqueous solution (hereinafter referred to as a second liquid), and a 1% aqueous sodium bicarbonate solution was divided into several portions and added to the immersed yacon, followed by blanching at a temperature of 95 ° C for 5 minutes. Remove and quench. After blanching, a solution prepared with maltose solution and beet oligosaccharide so as to have a Brix degree of 50 degrees (hereinafter, referred to as a third liquid)
The yacon is immersed for 4.5 hours in a solution obtained by adding vitamin E to the mixture. The Brix degree at this time was 30 degrees. Thereafter, it is rapidly cooled (-40 ° C). Use an autoclave with a rotating basket body that can be pressurized and depressurized.
%, Cottonseed oil 20%, sesame oil 7%, flower oil 13%, palm oil 10% and salad oil 10%. Pressure 5
At Torr, fry at 135 ° C. for 6 minutes at the beginning of the feeding of yacon, and then at 105 ° C. for 44 minutes, for a total of 50 minutes. After frying, the cage was rotated at 450 rpm for 30 minutes to centrifuge the oil. The product thus obtained was an excellent snack dried product having a yield of 27%, a residual oil content of 15%, a residual water content of 1.5%, a porous and crisp color, and a vivid yellow-white color and flavor.

【0010】実施例2 ビート塊根を第1液を使用して高圧洗浄後、脱皮し、第
1液に漬けながら15mm角、長さ120mmのスティ
ック状にカット処理する。次に第2液をブランチング液
として95℃、10分間ブランチング処理し、取出し急
冷する。その後、第3液にこれを浸漬し、Brix度が
30度になったら取り出し、急冷する(−40℃)。フ
ライ油およびオートクレーブは実施例1と同様とし、圧
力5Torrで、原料投入当初は135℃で6分間、そ
の後、125℃にて49分間、計55分間フライ処理
し、カゴ体を450rpmで30分間回転させ油分を遠
心分離した。得られた製品は、収率28.5%と高収率
であり、残油分17%、残水分0.8%、ポーラスでク
リスプの、また、黄白色の鮮やかな色調と香味を有し、
また、美しい年輪紋様を有する優れたスナック乾燥製品
が得られた。
Example 2 A beet root is washed with a first liquid under high pressure, then peeled, and cut into a 15 mm square, 120 mm long stick while dipping in the first liquid. Next, the second liquid is used as a blanching liquid, blanched at 95 ° C. for 10 minutes, taken out and rapidly cooled. Then, this is immersed in the third liquid, taken out when the Brix degree reaches 30 degrees, and rapidly cooled (−40 ° C.). The frying oil and the autoclave were the same as in Example 1, and the pressure was 5 Torr, and the raw material was initially charged at 135 ° C. for 6 minutes, and then at 125 ° C. for 49 minutes, followed by frying for a total of 55 minutes, and the basket was rotated at 450 rpm for 30 minutes. The oil was centrifuged. The obtained product has a high yield of 28.5%, having a residual oil content of 17%, a residual water content of 0.8%, a porous and crisp color and a vivid yellow-white color and flavor,
In addition, an excellent snack dried product having a beautiful annual ring pattern was obtained.

【0011】実施例3 チューリップ球根を第1液を使用して高圧洗浄を行う。
脱皮後、厚さ5mmのフレーク状にカット処理する。ブ
ランチングに第2液を使用し、95℃、2分間ブランチ
ング処理し、取出し急冷する。その後、第3液に24時
間浸漬した後、急冷する(−20℃)。フライ油および
オートクレーブは実施例1と同様とし、圧力5Torr
で、原料投入当初は130℃で6分間、その後、115
℃にて39分間、計45分間フライ処理し、カゴ体を4
50rpmで30分間回転させ油分を遠心分離した。得
れた製品は、収率27%、残油分18%、残水分1.2
%、ポーラスでクリスプの、また、白色の鮮やかな色調
と香味を有する優れたスナック乾燥製品であった。
Example 3 Tulip bulbs are subjected to high pressure washing using the first liquid.
After moulting, cut into flakes having a thickness of 5 mm. Using the second liquid for blanching, blanching is performed at 95 ° C. for 2 minutes, taken out and quenched. Then, after immersing in the 3rd liquid for 24 hours, it cools rapidly (-20 degreeC). The frying oil and the autoclave were the same as in Example 1, and the pressure was 5 Torr.
The raw material was initially charged at 130 ° C. for 6 minutes, and then 115
At 39 ° C for a total of 45 minutes.
The oil was centrifuged at 50 rpm for 30 minutes. The obtained product had a yield of 27%, a residual oil content of 18%, and a residual moisture of 1.2%.
%, Excellent dry snack product with a vivid color tone and flavor of porous, crisp and white.

【0012】実施例4 ニンニク球根を脱核機にて原形粒状にしたものを、脱皮
機にて脱皮処理し、第1液を使用し高圧殺菌洗浄する。
第2液に重炭酸ソーダ水溶液1%を添加したものをブラ
ンチング液とし、95℃、8分間ブランチング処理し、
取出し急冷する。その後、第3液に分解酵素(セルラー
ゼ)を微量添加したものにこれを浸漬した後、急冷する
(−35℃)。フライ油及びオートクレーブは実施例1
と同様とし、圧力5Torrで、原料投入当初は135
℃で6分間、その後、125℃にて54分間、計60分
間フライ処理する。フライ終了後、カゴ体を450rp
mで30分間回転させ油分を遠心分離した。得られた製
品は、収率35%と大変高収率であり、残油分16%、
残水分0.5%、ポーラスでクリスプの、また、黄褐色
の鮮やかな色調を有する優れたスナック乾燥製品であっ
た。
Example 4 Garlic bulbs made into original granules by a denucleator are dehulled by a dehuller and subjected to high-pressure sterilization washing using the first liquid.
A solution obtained by adding 1% aqueous sodium bicarbonate solution to the second solution is used as a blanching solution, and blanching treatment is performed at 95 ° C. for 8 minutes.
Remove and quench. Thereafter, the resultant is immersed in a solution obtained by adding a small amount of a decomposing enzyme (cellulase) to the third liquid, and then rapidly cooled (-35 ° C). Frying oil and autoclave were used in Example 1.
At a pressure of 5 Torr, and 135
Fry at 6 ° C for 6 minutes, then at 125 ° C for 54 minutes for a total of 60 minutes. After the fry, the cage body is 450rpm
and the oil was centrifuged. The obtained product has a very high yield of 35%, a residual oil content of 16%,
It was an excellent snack-dried product with a residual moisture of 0.5%, a porous, crisp and vivid tan color.

【0013】比較例1 特開平8−332046の方法により、ヤーコンからス
ナック菓子を製造してみた。ヤーコン収穫後、水洗い
し、10mm角、長さ120mmにカットする。これを
沸騰塩水(90℃)中にて数分ブランチング後、急冷す
る。乾燥・凍結後、圧力10Torr、フライ油はパー
ム油を使用し、フライ温度100℃にて50分間フライ
処理した。こうして得られた製品は収率7.0%、残油
分23%、水分2.0%であった。また、褐色で、ほと
んど繊維の固まりの状態であり、固くてとても食するこ
とができないものであった。
Comparative Example 1 A snack was produced from Yacon by the method disclosed in JP-A-8-33046. After harvesting the yacon, it is washed with water and cut into 10 mm square and 120 mm long. After blanching for several minutes in boiling salt water (90 ° C.), the mixture is rapidly cooled. After drying and freezing, frying was performed at a frying temperature of 100 ° C. for 50 minutes using palm oil as the frying oil at a pressure of 10 Torr. The product thus obtained had a yield of 7.0%, a residual oil content of 23% and a water content of 2.0%. Further, it was brown, almost in a state of a mass of fibers, and was hard and could not be eaten very much.

【0014】[0014]

【発明の効果】本願発明は、特に水分が多く、繊維質の
強靭な塊根類を対象としたものではあるが、外部から糖
類を浸透させるという本願の中心をなす思想は、他の対
象物のスナック製品にも広く応用可能であり、チューリ
ップ球根、ニンニクに止まらず、他の種々の野菜類、根
菜類にも適用し得る有用な発明である。
The invention of the present application is particularly intended for fibrous tough tuberous roots having a large amount of water, but the idea of penetrating sugars from the outside, which is the central idea of the present invention, is that of other objects. The present invention can be widely applied to snack products, and is a useful invention applicable not only to tulip bulbs and garlic, but also to various other vegetables and root vegetables.

───────────────────────────────────────────────────── フロントページの続き (72)発明者 安藤 功一 北海道江別市文京台緑町582番地1 酪農 学園大学乳製品製造学研究室 ────────────────────────────────────────────────── ─── Continuing on the front page (72) Inventor Koichi Ando 582-1, Midoricho, Bunkyodai, Ebetsu, Hokkaido Dairy Gakuen University Dairy Manufacturing Laboratory

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 塊根類を必要な形態に切断し、又は切断
せずして、前処理を施し、これをBrix度20乃至6
5度の糖液に必要時間浸漬し、取出した後凍結し、又は
凍結せずに、減圧フライ乾燥することを特長とする塊根
類のスナック食品の製法
1. A pretreatment is carried out by cutting or not cutting tuberous roots into a required form, and this is subjected to a Brix degree of 20 to 6
A method for producing a tuberous root snack food characterized by being immersed in a sugar solution at a required temperature for 5 hours, taken out, frozen, or not dried, and fried under reduced pressure.
【請求項2】 前記糖液が、マルトース、水あめ、ラク
トース、フラクトース、ビートオリゴ糖、フラクトオリ
ゴ糖、その他の単糖類又はオリゴ糖類である請求項1記
載のスナック食品の製法
2. The method for producing a snack food according to claim 1, wherein the sugar solution is maltose, starch syrup, lactose, fructose, beet oligosaccharide, fructooligosaccharide, other monosaccharides or oligosaccharides.
【請求項3】 前記塊根類がビート、ヤーコン、ニンニ
クまたはチューリップの球根である請求項1記載のスナ
ック食品の製法
3. A method for producing a snack food according to claim 1, wherein said tubers are beet, yacon, garlic or tulip bulbs.
JP37004897A 1997-12-22 1997-12-22 How to make tuber and other tuberculous snack foods Expired - Fee Related JP3318864B2 (en)

Priority Applications (1)

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JP37004897A JP3318864B2 (en) 1997-12-22 1997-12-22 How to make tuber and other tuberculous snack foods

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Application Number Priority Date Filing Date Title
JP37004897A JP3318864B2 (en) 1997-12-22 1997-12-22 How to make tuber and other tuberculous snack foods

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JPH11178536A true JPH11178536A (en) 1999-07-06
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010200726A (en) * 2009-03-06 2010-09-16 Ueda Oils & Fats Mfg Co Ltd Method for producing fried food preservable for long time
JP2010531152A (en) * 2007-06-26 2010-09-24 ヒート アンド コントロール インコーポレイテッド Method and apparatus for separating cooking oil from snack foods by the action of a quasi-continuous centrifuge
WO2013151176A1 (en) * 2012-04-07 2013-10-10 株式会社カルロバ Method for manufacturing vegetable or fruit snack food
US9095145B2 (en) 2008-09-05 2015-08-04 Frito-Lay North America, Inc. Method and system for the direct injection of asparaginase into a food process
US9215886B2 (en) 2008-12-05 2015-12-22 Frito-Lay North America, Inc. Method for making a low-acrylamide content snack with desired organoleptical properties
JP2020162541A (en) * 2019-03-29 2020-10-08 三菱商事ライフサイエンス株式会社 Manufacturing method of fried potato

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010531152A (en) * 2007-06-26 2010-09-24 ヒート アンド コントロール インコーポレイテッド Method and apparatus for separating cooking oil from snack foods by the action of a quasi-continuous centrifuge
US9095145B2 (en) 2008-09-05 2015-08-04 Frito-Lay North America, Inc. Method and system for the direct injection of asparaginase into a food process
US9215886B2 (en) 2008-12-05 2015-12-22 Frito-Lay North America, Inc. Method for making a low-acrylamide content snack with desired organoleptical properties
JP2010200726A (en) * 2009-03-06 2010-09-16 Ueda Oils & Fats Mfg Co Ltd Method for producing fried food preservable for long time
WO2013151176A1 (en) * 2012-04-07 2013-10-10 株式会社カルロバ Method for manufacturing vegetable or fruit snack food
JP2020162541A (en) * 2019-03-29 2020-10-08 三菱商事ライフサイエンス株式会社 Manufacturing method of fried potato

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