JP2013135630A - Continuous food material-heating method and continuous heating device - Google Patents

Continuous food material-heating method and continuous heating device Download PDF

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JP2013135630A
JP2013135630A JP2011287880A JP2011287880A JP2013135630A JP 2013135630 A JP2013135630 A JP 2013135630A JP 2011287880 A JP2011287880 A JP 2011287880A JP 2011287880 A JP2011287880 A JP 2011287880A JP 2013135630 A JP2013135630 A JP 2013135630A
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pipe
food material
food
heating
conductive salt
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JP5734176B2 (en
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Tomokazu Shimada
朋和 島田
Yasuki Taguchi
靖希 田口
Kazuyuki Kudo
和幸 工藤
Hiroshi Hoshino
弘 星野
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Frontier Engineering Co Ltd
NH Foods Ltd
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Nippon Meat Packers Inc
Frontier Engineering Co Ltd
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23BPRESERVING, e.g. BY CANNING, MEAT, FISH, EGGS, FRUIT, VEGETABLES, EDIBLE SEEDS; CHEMICAL RIPENING OF FRUIT OR VEGETABLES; THE PRESERVED, RIPENED, OR CANNED PRODUCTS
    • A23B4/00General methods for preserving meat, sausages, fish or fish products
    • A23B4/005Preserving by heating
    • A23B4/0053Preserving by heating with gas or liquids, with or without shaping, e.g. in form of powder, granules or flakes
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23BPRESERVING, e.g. BY CANNING, MEAT, FISH, EGGS, FRUIT, VEGETABLES, EDIBLE SEEDS; CHEMICAL RIPENING OF FRUIT OR VEGETABLES; THE PRESERVED, RIPENED, OR CANNED PRODUCTS
    • A23B4/00General methods for preserving meat, sausages, fish or fish products
    • A23B4/005Preserving by heating
    • A23B4/01Preserving by heating by irradiation or electric treatment with or without shaping, e.g. in form of powder, granules or flakes
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L3/00Preservation of foods or foodstuffs, in general, e.g. pasteurising, sterilising, specially adapted for foods or foodstuffs
    • A23L3/005Preservation of foods or foodstuffs, in general, e.g. pasteurising, sterilising, specially adapted for foods or foodstuffs by heating using irradiation or electric treatment
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L3/00Preservation of foods or foodstuffs, in general, e.g. pasteurising, sterilising, specially adapted for foods or foodstuffs
    • A23L3/16Preservation of foods or foodstuffs, in general, e.g. pasteurising, sterilising, specially adapted for foods or foodstuffs by heating loose unpacked materials
    • A23L3/18Preservation of foods or foodstuffs, in general, e.g. pasteurising, sterilising, specially adapted for foods or foodstuffs by heating loose unpacked materials while they are progressively transported through the apparatus
    • A23L3/22Preservation of foods or foodstuffs, in general, e.g. pasteurising, sterilising, specially adapted for foods or foodstuffs by heating loose unpacked materials while they are progressively transported through the apparatus with transport through tubes

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Chemical & Material Sciences (AREA)
  • Zoology (AREA)
  • Wood Science & Technology (AREA)
  • Health & Medical Sciences (AREA)
  • Nutrition Science (AREA)
  • Meat, Egg Or Seafood Products (AREA)
  • Processing Of Meat And Fish (AREA)
  • Food Preservation Except Freezing, Refrigeration, And Drying (AREA)
  • General Preparation And Processing Of Foods (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a high efficiency continuous edible meat heating method and heating device that use joule heating, which can continuously heat an edible meat-containing food material, which has a tendency to accumulate and lose conveyability, do not easily generate scale in the conduit line during conveyance and are capable of heating continuously up to temperatures at which the protein in the edible meat denatures.SOLUTION: The continuous heating device is a device in which a conduit line 1 that conveys an edible-meat containing material A is obtained from a small diameter inner tube 3 held inside an outer tube 2 via pillar-shaped insulated spacers 4, the gap between the inner tube 3 and the outer tube 2 is filled with a conductive aqueous saline solution Ws supplied from a pipe arrangement 5, a portion of the outer tube 2 is provided by an insulated tube 6 and one or more pairs of circular electrodes 7 with the insulated tube 6 disposed therebetween, an alternating current source E is connected to the circular electrodes 7, and joule heating is generated in the food material A that is conveyed in contact with the conductive aqueous saline solution Ws and the inside of the inner tube 3. The inner tube 3 is formed from a material that is impermeable to the edible meat-containing food material and is water permeable.

Description

この発明は、ジュール加熱による食品材料の連続加熱方法、食用肉類加工食品の製造方法および食用肉類加工食品並びに食品材料の連続加熱装置に関するものである。   The present invention relates to a method for continuously heating food materials by Joule heating, a method for producing processed edible meat foods, processed edible meat foods, and a continuous heating apparatus for food materials.

一般に、食品材料を加熱する手段としてジュール加熱による加熱方法が周知である。
ジュール加熱は、食品材料を導電体として通電し、その際に食品材料の有する電気抵抗を利用して食品材料を発熱させて加熱する手段であり、例えばマヨネーズや飲料、ジャム類などの流動性食品材料の加熱工程に用いられている。
In general, a heating method by Joule heating is well known as means for heating food materials.
Joule heating is a means for heating a food material by energizing the food material as a conductor and using the electrical resistance of the food material at that time, for example, fluid food such as mayonnaise, beverages, jams, etc. It is used in the material heating process.

このような流動性食品材料のジュール加熱による加熱装置としては、流動性食品材料の移送される管路の内面の一部を構成するように環状の電極を複数設け、管路の上流側の電極と下流側の電極の間で電圧を加えて、その間で管路内の流動性のある食品材料に通電し、加熱するものが周知である。   As a heating device by Joule heating of such a fluid food material, a plurality of annular electrodes are provided so as to constitute a part of the inner surface of the pipeline through which the fluid food material is transferred, and an electrode on the upstream side of the pipeline It is well known that a voltage is applied between the electrode and the downstream electrode, and the fluid food material in the pipeline is energized and heated between them.

ところで、このようなジュール熱による加熱方法に利用される食品材料としては、液状の流動性を有するものばかりでなく、管路内で熱凝固して流動性のなくなる蛋白質を含むソーセージのような食品を用いる要望もあり、この場合には蛋白質と共に所定量の脂質を含有させて潤滑性や柔らかさを調整し、移送可能な状態を保つことが知られている(特許文献1)。   By the way, as a food material used in such a heating method by Joule heat, not only food having liquid fluidity but also food such as sausage containing proteins that become thermally coagulated in a pipe and lose fluidity In this case, it is known that a predetermined amount of lipid is contained together with the protein to adjust the lubricity and softness and maintain the transportable state (Patent Document 1).

また、ハムやソーセージなどの畜肉加工用ケーシング(袋)として、ビスコース加工紙からなる筒状のファイブラスケーシングは充填後もスモーク加工を行なえるものとして周知であり、これでハムやソーセージを包む場合には、それらの両端部にアルミ製などのワイヤークリップを取り付けて個別に結紮している。   Also, as a casing (bag) for processing meat such as ham and sausage, a cylindrical fiber brass casing made of viscose-processed paper is well known to be able to be smoked after filling, and wraps ham and sausage in this. In some cases, wire clips made of aluminum or the like are attached to both end portions of the two ends and ligated individually.

このようなハム・ソーセージをジュール熱で加熱する方法としては、ハム・ソーセージの両端を結紮しているワイヤークリップにスパークが生じないように、環状(ドーナツ型)の電極を所定の圧力で押し当てて低周波数の交流電流を用いて加熱する方法が知られている(特許文献2)。   As a method of heating such ham and sausage with Joule heat, an annular (donut-shaped) electrode is pressed at a predetermined pressure so that no spark is generated in the wire clip ligating both ends of the ham and sausage. A method of heating using a low-frequency alternating current is known (Patent Document 2).

また、ジュール熱を用いた冷凍食品の解凍装置として、容器に入れた0.1〜4.5重量%の食塩水に冷凍食品を浸し、一対の電極板の間に食塩水を介して冷凍食品に交流電圧を印加して発熱させ、解凍することが知られている(特許文献3)。   Moreover, as a frozen food thawing device using Joule heat, the frozen food is immersed in 0.1-4.5 wt% saline in a container, and the frozen food is exchanged between the pair of electrode plates via the saline. It is known that a voltage is applied to generate heat and defrost (Patent Document 3).

特開2011−92102号公報JP 2011-92102 A 特開2005−27565号公報Japanese Patent Laid-Open No. 2005-27565 特開2005−65690号公報JP 2005-65690 A

しかし、上記した特許文献1に記載されるハム・ソーセージなどの食肉材料の連続加熱方法では、食品材料に所定量の脂肪量を調整する必要があって加熱対象に制約が多く、また食品材料が電極や絶縁部品など多くの部品に管路内で接触するので、スケールが多く発生しやすく、製造工程での作業の煩雑性や製造効率について問題がある。   However, in the continuous heating method of meat materials such as ham and sausage described in Patent Document 1 described above, it is necessary to adjust a predetermined amount of fat in the food material, there are many restrictions on the heating target, and the food material is Since many parts such as electrodes and insulating parts are brought into contact with each other in the pipeline, a large amount of scale is likely to occur, and there is a problem with the complexity of the work in the manufacturing process and the manufacturing efficiency.

また、特許文献2に記載されるようなハム・ソーセージをジュール熱で加熱する方法では、個別のハム・ソーセージに対してファイブラスケーシングの外部から電極を所定の圧力で両端部に押し付ける必要があるので、これでは多量の食材を連続的に加熱できないという問題点がある。   Further, in the method of heating ham and sausage as described in Patent Document 2 with Joule heat, it is necessary to press the electrodes against both ends of the ham and sausage from the outside of the fibrous casing with a predetermined pressure. Therefore, there is a problem that a large amount of ingredients cannot be continuously heated.

また、特許文献3に記載されるような加熱方法では、被解凍食品に交流電圧を与える際に、被加熱食材を個別に食塩水に沈めて静置しておく必要があるので、食塩水中に被加熱食材が流れ出さない程度の低温での解凍加熱しかできず、蛋白質が加熱変性されるような75〜85℃程度の加熱は困難であり、また食品材料を管路などで移送しながら連続的に加熱できるものではなかった。   In addition, in the heating method as described in Patent Document 3, when an AC voltage is applied to the food to be thawed, it is necessary to saturate the food to be heated separately in the saline solution, so that it is left in the saline solution. It can only be thawed at a low temperature so that the food to be heated does not flow out, it is difficult to heat at about 75 to 85 ° C. so that the protein is heat-denatured, and it is continuously transferred while the food material is transferred through a pipe or the like. Could not be heated.

そこで、この発明の課題は、上記した問題点を解決して、ジュール熱を利用して管路を移送しながら加熱する方法または装置について、滞留しやすく移送性の損なわれやすい食用肉類を含む食品材料を連続的に加熱でき、しかも移送中に管路にスケールを発生させ難く、食用肉類の蛋白質の変性する温度まで連続的に加熱できる効率の良いジュール加熱による食用肉類の連続加熱方法および加熱装置にすることである。   Then, the subject of this invention solves the above-mentioned problem, and the foodstuff containing the edible meat which is easy to stay and is easy to impair the transportability about the method or apparatus heated while transferring a pipe line using Joule heat A method and apparatus for continuously heating edible meat by Joule heating, which can continuously heat the material and is difficult to generate scale in the pipeline during transfer, and can be continuously heated to a temperature at which protein of the edible meat denatures. Is to do.

上記の課題を解決するために、この発明においては、食用肉類を含む食品材料を管路で移送しながら電圧を印加し、前記食品材料にジュール熱を発生させて、加熱された食品材料を前記管路から連続的に取り出すようにした連続加熱方法において、前記管路は、外管と、この外管より小径で前記食品材料に対する不透過性を有すると共に透水性を有する内管とからなり、前記内管と外管の間に導電性塩類水溶液を介在させて、前記食品材料を内管で移送する際に、移送の上流側および下流側の前記導電性塩類水溶液に電圧を印加することにより、前記内管を介して前記食品材料に通電しジュール加熱することを特徴とする食品材料の連続加熱方法としたのである。   In order to solve the above-described problems, in the present invention, a voltage is applied while a food material containing edible meat is transported through a conduit, Joule heat is generated in the food material, and the heated food material is In the continuous heating method for continuously taking out from the pipe, the pipe consists of an outer pipe and an inner pipe having a smaller diameter than the outer pipe and impervious to the food material and having water permeability. When a conductive salt aqueous solution is interposed between the inner tube and the outer tube and the food material is transferred by the inner tube, a voltage is applied to the conductive salt aqueous solution on the upstream side and the downstream side of the transfer. The method for continuous heating of food material is characterized in that the food material is energized via the inner tube and Joule heating is performed.

上記した工程からなるこの発明の食品材料の連続加熱方法によると、食品材料を移送する透水性の内管と外管の間に導電性塩類水溶液が介在しているから、この導電性塩類水溶液に印加された電圧は、導電性塩類水溶液をジュール加熱して内管を加熱し、さらに透水性の内管を介して導電性塩類水溶液の接触する食品材料にも電圧が印加されて、食品材料の全体をジュール加熱する。   According to the continuous heating method of the food material of the present invention comprising the steps described above, the conductive salt aqueous solution is interposed between the water-permeable inner tube and the outer tube for transferring the food material. The applied voltage is applied to the food material in contact with the aqueous conductive salt solution through Joule heating of the aqueous conductive salt solution to heat the inner tube, and to the food material in contact with the aqueous conductive salt solution. Heat the whole joule.

これによって、食品材料は、移送されながら内部からも表面からも同時に加熱される。
また、この加熱において、食用肉類の蛋白変性温度を超えるように加熱された場合、食用肉類を含む食品材料は硬くなって流動性は低下するが、通常、内管には電極も継ぎ目もない状態のものが採用できるので、食品材料の移送中に管路にスケールを発生させ難く、食用肉類の蛋白質の変性する温度までも連続的に加熱できる方法になる。
As a result, the food material is simultaneously heated from the inside and from the surface while being transported.
In addition, in this heating, when heated to exceed the protein denaturation temperature of edible meat, the food material containing edible meat becomes hard and fluidity is lowered, but usually the inner tube has no electrodes or seams Therefore, it is difficult to generate scale in the pipeline during the transfer of the food material, and the method can be continuously heated up to the temperature at which the protein of the edible meat is denatured.

また、上記導電性塩類水溶液が、塩類濃度の調整された導電性塩類水溶液である場合には、濃い塩類濃度で発生するジュール熱量よりも薄い塩類濃度で発生するジュール熱量の方が電気抵抗の増加によって大きいことから、ジュール熱による加熱温度を塩類濃度の調整によって加減することができる。   In addition, when the conductive salt aqueous solution is a conductive salt aqueous solution whose salt concentration is adjusted, the Joule heat generated at a lower salt concentration than the Joule heat generated at a thick salt concentration has an increased electrical resistance. Therefore, the heating temperature by Joule heat can be adjusted by adjusting the salt concentration.

また、ジュール熱の発生量の調整は、上記内管と外管の間に導電性塩類水溶液を介在させる手段として、管路外で調製された導電性塩類水溶液の所定流量を内管と外管の間に導入して流通させてから管路外に排出する流通手段を採用することによっても可能である。   In addition, the amount of Joule heat generated can be adjusted by using a predetermined flow rate of the conductive salt aqueous solution prepared outside the pipe as a means for interposing the conductive salt aqueous solution between the inner tube and the outer tube. It is also possible to adopt a distribution means that introduces and distributes between the two and discharges them outside the pipeline.

この場合、管路外で導電性塩類水溶液の濃度調整が可能であると共に、導電性塩類が低濃度である場合には流通する流量を少なくし、高濃度である場合には流量を多くすることにより、一定のジュール熱の発生量を維持することができ、さらには流量調整によって発熱量を増減させて調整することができる。   In this case, it is possible to adjust the concentration of the aqueous conductive salt solution outside the pipeline, and reduce the flow rate when the conductive salt concentration is low, and increase the flow rate when the conductive salt concentration is high. Thus, it is possible to maintain a constant generation amount of Joule heat, and furthermore, it is possible to adjust by increasing or decreasing the calorific value by adjusting the flow rate.

そして、上記したような食品材料の連続加熱方法を用いる際、食用肉類を含む食品材料の移送される量を圧送ポンプで調整して、食品材料を内管内に適度の圧力で圧送させると共に食用肉類の蛋白質の適度に変性する温度まで加熱し、食用肉類などに対する周知の押し出し成形方法を採用することにより、上記の連続加熱方法を用いて食用肉類加工食品を加熱押出成形によって製造することができる。   And when using the continuous heating method of food materials as described above, the amount of food materials containing edible meat is adjusted with a pressure pump to feed the food material into the inner tube at an appropriate pressure and edible meat By heating to a temperature at which the protein is moderately denatured and adopting a well-known extrusion molding method for edible meat, the processed edible meat food can be produced by heat extrusion molding using the continuous heating method described above.

このように上記の連続加熱方法を用いると、内管の形状で移送されながら成形されるので、加熱押出成形された食用肉類加工食品を得ることができる。   When the above continuous heating method is used in this way, since it is molded while being transferred in the shape of the inner tube, a processed edible meat processed food that has been heat-extruded can be obtained.

また、上述した食品材料の連続加熱方法を採用した連続加熱装置として、食用肉類を含む食品材料を移送する管路を設け、この管路は非透水性の外管の内側に絶縁性スペーサを介して前記外管より小径で前記食品材料に対する不透過性を有すると共に透水性を有する内管を保持したものからなり、前記内管と外管の間隙に別途設けた管路から供給される導電性塩類水溶液を満たし、前記外管はその一部を絶縁筒で設けると共にこの絶縁筒を挟んで環状電極を1対以上設け、前記環状電極に交流電源を接続して前記導電性塩類水溶液および前記内管中を移送される食品材料にジュール熱を発生させる食品材料の連続加熱装置とすることが好ましい。   In addition, as a continuous heating apparatus that employs the above-described continuous heating method for food materials, a pipe for transferring food material containing edible meat is provided, and this pipe is provided with an insulating spacer inside a non-permeable outer pipe. The inner tube having a smaller diameter than the outer tube and impermeable to the food material and having water permeability, and is supplied from a conduit separately provided in the gap between the inner tube and the outer tube. The outer tube is filled with an aqueous salt solution, and a part of the outer tube is provided with an insulating tube, and at least one pair of annular electrodes is provided across the insulating tube, and an AC power source is connected to the annular electrode to connect the aqueous conductive salt solution and the inner tube. It is preferable to use a continuous heating apparatus for food material that generates Joule heat in the food material transferred through the pipe.

このような連続加熱装置の外管は、その一部を絶縁筒で設け、この絶縁筒を挟んで環状電極を1対以上設けたものからなり、前記環状電極には交流電源が接続されるので、外管の内側に接する導電性塩類水溶液はジュール加熱され、さらに環状電極が導電性塩類水溶液を介して内管中を移送される食品材料にも電圧が印加されてジュール加熱により加熱される。   An outer tube of such a continuous heating device is provided with a part of an insulating cylinder and one or more annular electrodes provided between the insulating cylinders, and an AC power source is connected to the annular electrode. The aqueous conductive salt solution in contact with the inner side of the outer tube is Joule-heated, and the annular electrode is heated by Joule heating by applying a voltage to the food material transferred through the inner aqueous tube through the aqueous conductive salt solution.

また、ジュール加熱された導電性塩類水溶液は内管を加熱するから、食品材料は、移送されながら内部からも表面からも同時に加熱される。   In addition, since the Joule-heated aqueous conductive salt solution heats the inner tube, the food material is simultaneously heated from the inside and from the surface while being transferred.

また、通常、内管には電極も継ぎ目もない状態のものが採用されるので、食品材料の移送中に管路にスケールを発生させ難く、食用肉類の蛋白質の変性する温度までも連続的に加熱できる装置になる。   In addition, since the inner tube is usually used with no electrodes or seams, it is difficult to generate scale in the pipeline during the transfer of the food material, and even the temperature at which the protein of the edible meat is denatured continuously. It becomes a device that can be heated.

また、ジュール加熱量の調整可能な加熱装置とするためには、上記内管と外管の間隙に、導電性塩類水溶液の供給路と排出路を接続し、前記供給路には導電性塩類水溶液の塩類濃度の調整装置もしくは流量調整弁またはこれら両方を設けた食品材料の連続加熱装置とすることが好ましい。   In order to obtain a heating device capable of adjusting the Joule heating amount, a supply path and a discharge path for the conductive salt aqueous solution are connected to the gap between the inner pipe and the outer pipe, and the conductive salt aqueous solution is connected to the supply path. It is preferable to use a food material continuous heating device provided with a salt concentration adjusting device, a flow rate adjusting valve, or both.

このようにすると、ジュール熱の発生量の調整は、導電性塩類水溶液の塩類濃度の調整装置もしくは流量調整弁またはこれら両方を用いて行なうことができる。   In this way, the amount of Joule heat generated can be adjusted using a salt concentration adjusting device or a flow rate adjusting valve of the conductive salt aqueous solution or both of them.

また、押出して移送される食品材料を所定形状に成形できる連続加熱装置とするためには、上記した装置において、上記管路が、外管の内側に管路に沿って延びる複数の柱状絶縁性スペーサを配置して前記内管を所定形状に整える。これにより前記内管を通過して加熱されかつ押出される食品材料を前記所定形状に成形することができる食品材料の連続加熱装置になる。   Further, in order to obtain a continuous heating apparatus capable of forming the food material to be extruded and transferred into a predetermined shape, in the above-described apparatus, the pipe line has a plurality of columnar insulating properties extending along the pipe line inside the outer pipe. A spacer is arranged to arrange the inner tube into a predetermined shape. Thereby, it becomes a continuous heating apparatus of the food material which can shape | mold the food material heated and extruded through the said inner pipe | tube in the said predetermined shape.

以上のようにこの発明のジュール加熱による食品材料の連続加熱方法、食用肉類加工食品の製造方法および食用肉類加工食品並びに食品材料の連続加熱装置は、食品材料を従来のように燃焼ガスから発生する赤外線などを利用する外部加熱に頼ることなく、ジュール加熱によって食品材料の内部から表面まで均一に通電して加熱することにより、食品加工に要するエネルギーの効率を向上させる省エネルギー効果があり、また加熱用の燃焼ガスの不使用による二酸化炭素の排出抑制効果、すなわち環境負荷低減効果を有するものである。   As described above, the continuous heating method of food material by Joule heating, the manufacturing method of processed edible meat food, the processed edible meat food, and the continuous heating device of food material according to the present invention generate food material from combustion gas as in the past. There is an energy-saving effect that improves the energy efficiency required for food processing by heating uniformly by heating from the inside of the food material to the surface by Joule heating without relying on external heating using infrared rays, etc. It has the effect of suppressing the emission of carbon dioxide by not using any combustion gas, that is, the effect of reducing the environmental load.

この発明は、ジュール熱を利用して管路を移送しながら食用肉類を含む食品材料を加熱する方法または装置について、管路を外管と、これより小径で前記食品材料に対する不透過性を有すると共に透水性を有する内管とから構成し、前記内管と外管の間に導電性塩類水溶液を介在させて、移送の上流側および下流側の前記水溶液に電圧を印加して、前記内管を介して前記食品材料をジュール加熱したので、滞留しやすく移送性の損なわれやすい食用肉類を含む食品材料を連続的に加熱でき、しかも移送中に内管にスケールを発生させ難く、食用肉類の蛋白質の変性する温度まで連続的に加熱できる効率の良いジュール加熱による食用肉類の連続加熱方法および加熱装置になるという利点がある。   The present invention relates to a method or apparatus for heating a food material containing edible meat while transferring the pipe using Joule heat, the pipe having an outer pipe and a diameter smaller than this, and being impervious to the food material. And an inner pipe having water permeability, a conductive salt aqueous solution is interposed between the inner pipe and the outer pipe, and a voltage is applied to the aqueous solution on the upstream side and the downstream side of the transfer, and the inner pipe Since the food material is Joule-heated via the food material, it is possible to continuously heat the food material including the edible meat that is liable to stay and the transferability to be impaired, and it is difficult to generate scale in the inner tube during the transfer. There is an advantage that a method and apparatus for continuously heating edible meat by efficient Joule heating that can be continuously heated to a temperature at which protein is denatured.

また、このような加熱方法および装置を用いて、所定のサイズで均質な食用肉類加工食品を得ることができる利点もある。   In addition, there is an advantage that a uniform processed edible meat food can be obtained with a predetermined size using such a heating method and apparatus.

実施形態の連続加熱装置を説明する管路の一部断面側面図Partial cross-sectional side view of a conduit for explaining a continuous heating device of an embodiment 図1のII−II線断面図II-II sectional view of FIG. 他の実施形態を示す管路の断面図Sectional drawing of the pipe line which shows other embodiment

この発明の実施形態を以下に添付図面に基づいて説明する。
図1、2に示すようにこの発明の食品材料の連続加熱方法およびそれを実施するための装置は、食用肉類を含む食品材料Aを管路1で移送しながら交流電源Eより電圧を印加し、食品材料Aにジュール熱を発生させて、加熱された食品材料A´を管路1から連続的に取り出すようにした連続加熱方法である。
Embodiments of the present invention will be described below with reference to the accompanying drawings.
As shown in FIGS. 1 and 2, the food material continuous heating method and the apparatus for carrying out the method of the present invention apply a voltage from an AC power source E while transferring the food material A containing edible meat through the conduit 1. This is a continuous heating method in which Joule heat is generated in the food material A and the heated food material A ′ is continuously taken out from the pipe 1.

管路1は、外管2と、これより小径で食品材料Aに対する不透過性を有すると共に透水性を有する内管3とからなり、外管2と内管3の間には導電性塩類水溶液Ws(図2)を介在させ、食品材料Aを内管で移送する際に、移送の上流側および下流側の塩類水溶液Wsに交流電源Eから電圧を印加することにより、導電性塩類水溶液Wsを含浸した透水性の内管3を介して食品材料Aに通電してジュール加熱する連続加熱方法である。   The pipe line 1 comprises an outer tube 2 and an inner tube 3 having a smaller diameter and impervious to the food material A and having water permeability. Between the outer tube 2 and the inner tube 3, an aqueous conductive salt solution is provided. When the food material A is transferred by the inner pipe with the Ws (FIG. 2) interposed, by applying a voltage from the AC power source E to the salt aqueous solution Ws on the upstream side and downstream side of the transfer, the conductive salt aqueous solution Ws is obtained. This is a continuous heating method in which the food material A is energized via the impregnated water-permeable inner tube 3 and Joule-heated.

このような加熱方法に好ましく採用される連続加熱装置は、食用肉類を含む食品材料Aを移送する管路1を、樹脂や金属などからなる非透水性の外管2の内側にその長手方向に延びるように配置された柱状の絶縁性スペーサ4を介して小径の内管3を保持したものからなり、内管3と外管2の間隙には配管5から供給される導電性の塩類水溶液Wsを満たし、外管2はその一部を絶縁筒6で設けると共に、この絶縁筒6を軸方向に挟んで環状電極7を1対以上(図示では2対)設けたものであり、環状電極7には交流電源Eを接続し、導電性塩類水溶液Wsおよび内管3の内側に接して移送される食品材料Aにジュール熱を発生させるようにした食品材料の連続加熱装置である。上記した内管3は、食用肉類を含む食品材料に対する不透過性を有すると共に透水性を有する材質の筒状素材で形成されている。   The continuous heating apparatus preferably employed in such a heating method is such that the pipe line 1 for transferring the food material A containing edible meat is disposed in the longitudinal direction inside the non-permeable outer pipe 2 made of resin, metal, or the like. A conductive salt aqueous solution Ws supplied from a pipe 5 is provided in the gap between the inner pipe 3 and the outer pipe 2 by holding a small-diameter inner pipe 3 via columnar insulating spacers 4 arranged to extend. A part of the outer tube 2 is provided with an insulating cylinder 6 and one or more pairs (two pairs in the figure) of the annular electrodes 7 are provided with the insulating cylinder 6 sandwiched in the axial direction. Is a continuous heating device for food material that is connected to an AC power source E and generates Joule heat in the conductive salt aqueous solution Ws and the food material A transferred in contact with the inside of the inner tube 3. The above-described inner tube 3 is formed of a cylindrical material that is impermeable to food materials including edible meat and has water permeability.

この発明に用いられる食用肉類を含む食品材料Aは、ハムやソーセージを代表例とする食品材料であるが、この発明でいう食用肉類は、人間が食用に供する動物組織であり、いわゆる食肉としての豚肉、牛肉、馬肉、めん羊肉、山羊肉、家と肉または家きん肉の他、魚肉、鯨肉、甲殻類の肉、軟体動物その他、いわゆる魚以外の水産動物の肉を含めていう。   The food material A containing edible meat used in the present invention is a food material typified by ham and sausage, but the edible meat referred to in the present invention is an animal tissue that humans use for food, and so-called meat In addition to pork, beef, horse meat, sheep meat, goat meat, house and meat or poultry meat, fish meat, whale meat, crustacean meat, mollusc and other marine animals other than fish.

また、食用肉類以外に含まれてもよい食材としては、例えば野菜やチーズなどの乳製品、香草やきのこ類、海藻類、調味料などの周知の食材が挙げられ、特に限定なく周知の食材を利用できる。   Examples of ingredients that may be included in addition to edible meats include well-known ingredients such as dairy products such as vegetables and cheese, herbs and mushrooms, seaweeds, seasonings, and the like. Available.

管路1を構成する外管2は、樹脂などの絶縁性素材からなる円筒形状の絶縁筒6と、チタンなどの導電性材料からなる環(リング)状電極7を交互に配置して熱接着などにより一体に接続されたジュール加熱ユニット8を採用できる。   The outer pipe 2 constituting the pipe 1 is thermally bonded by alternately arranging cylindrical insulating cylinders 6 made of an insulating material such as resin and ring-shaped electrodes 7 made of a conductive material such as titanium. The joule heating unit 8 connected integrally by the above can be adopted.

一方、内管3の素材としては、ハムやソーセージ食材が透過しない程度の細孔を有する多孔質性の透水性素材を採用することができる。多孔質性の透水性素材としては、繊維材料からなる紙状または不織布状、編織布状のもの、樹脂シートやゴムシートまたはセラミックスなどからなるスポンジ状の連続気泡を有するものなどをチューブ状に成形加工して採用することができる。   On the other hand, as the material of the inner tube 3, a porous water-permeable material having pores that do not allow ham or sausage food to permeate can be employed. As the porous water-permeable material, paper-like or non-woven fabric made of fiber material, knitted fabric-like material, and sponge-like open cells made of resin sheet, rubber sheet, ceramics, etc. are formed into a tube shape. Can be used after processing.

繊維材料からなる紙状の内管素材としては、ビスコース加工紙材であるファイブラスケーシングが挙げられる。このものは、麻原紙に木材パルプから得られる再生セルロース(ビスコース)を含浸し、植物油などで柔軟性を持たせたものであり、一般にハムやソーセージなどの畜肉加工用の袋として周知なものであって、水分を蒸散可能な透水性または透湿性を有している。   Examples of the paper-like inner tube material made of a fiber material include a fiber casing which is a viscose-processed paper material. This product is made by impregnating hemp base paper with regenerated cellulose (viscose) obtained from wood pulp and making it flexible with vegetable oil, etc., and is generally known as a bag for processing meat such as ham and sausage And it has the water permeability or moisture permeability which can evaporate a water | moisture content.

その他の周知の透水性素材としては、織布(濾し布)、不織布、オイルリムーブや溶剤抽出によって製造される多孔性シートまたはフィルムの積層体、ポリテトラフルオロエチレンや超高分子量ポリエチレンの焼結体からなる多孔性素材、超高分子量ポリエチレンやポリアミド系樹脂を延伸しフィブリル化させた多孔質フィルムの積層体、物理発泡シート、化学発泡により連続気泡を形成したスポンジ状の素材、微細な目合いの金網などが挙げられる。   Other known water-permeable materials include woven fabrics (filtered fabrics), non-woven fabrics, laminates of porous sheets or films produced by oil removal or solvent extraction, sintered bodies of polytetrafluoroethylene or ultrahigh molecular weight polyethylene Porous material composed of ultra-high-molecular-weight polyethylene or polyamide-based porous film laminate, physical foam sheet, sponge-like material with open cells formed by chemical foaming, fine texture For example, a wire mesh.

図2に示すように、このような透水性素材からなる内管3と非透水性の外管2の間隙に導電性塩類水溶液Wsを満たし、その際に内管3を安定した成形のできる形状に保つためには、外管2の内側に管路に沿って長手方向を並列に揃えて複数の柱状の絶縁性スペーサ4を周方向に所定間隔で配置し、内管3の外側を所定形状に整えることが好ましい。   As shown in FIG. 2, a conductive salt aqueous solution Ws is filled in the gap between the inner tube 3 made of such a water-permeable material and the non-water-permeable outer tube 2, and the inner tube 3 can be stably molded at that time. In order to keep the inner tube 3 in the outer tube 2, a plurality of columnar insulating spacers 4 are arranged at predetermined intervals in the circumferential direction with the longitudinal direction aligned in parallel along the pipeline, and the outer side of the inner tube 3 has a predetermined shape. It is preferable to arrange them in the same manner.

図3に示すように、外管2の内側に軸方向に沿って径の異なる複数の柱状絶縁性スペーサ9を配置して内管を楕円形状その他の円形状、または多角形状その他の方形状などの周知形状に整えておけば、内管3を通過しながら加熱されて、そのまま押出される食品材料Aを所定形状に押出成形することができる。   As shown in FIG. 3, a plurality of columnar insulating spacers 9 having different diameters along the axial direction are arranged inside the outer tube 2 so that the inner tube has an elliptical shape or other circular shape, or a polygonal shape or other rectangular shape. If it arranges in this well-known shape, the food material A heated while passing through the inner tube 3 and extruded as it is can be extruded into a predetermined shape.

このような内管3と外管2の間隙に介在させる導電性塩類水溶液Wsとしては、食品または食品添加物として採用できる電解質性の塩類を採用でき、例えば塩化ナトリウムを主成分とする食塩が挙げられ、これには微量成分として塩化マグネシウム、硫酸マグネシウム、硫酸カルシウム、塩化カリウムなどが含まれている。このような塩の成分は、いずれも水溶液中にイオン状態で存在し、塩濃度が高いほど導電性(電気伝導度)を大きくする。   As the conductive salt aqueous solution Ws interposed in the gap between the inner tube 3 and the outer tube 2, electrolyte salts that can be employed as food or food additives can be employed, for example, sodium chloride as a main component. This contains magnesium chloride, magnesium sulfate, calcium sulfate, potassium chloride and the like as trace components. Such salt components are all present in an ionic state in the aqueous solution, and the higher the salt concentration, the greater the conductivity (electrical conductivity).

このような導電性塩類水溶液Wsの濃度調整は、例えば食塩水溶液の場合は、0.1〜4.5質量%、好ましくは0.2〜4.0質量%、より好ましくは0.5〜1.5質量%に調整すればよく、通常は1質量%程度を目安に採用して好ましい結果を得ている。   Such concentration adjustment of the aqueous conductive salt solution Ws is, for example, 0.1 to 4.5% by mass, preferably 0.2 to 4.0% by mass, more preferably 0.5 to 1 in the case of a saline solution. It may be adjusted to .5% by mass, and usually about 1% by mass is adopted as a guideline to obtain preferable results.

図1に示すように、内管3と外管2の間に調整された導電性塩類水溶液Wsを適量介在させる手段としては、管路外の混合調製器10などで水Wと塩類Sを配合して調製された導電性塩類水溶液Wsを、ポンプPで単位時間当たり所定流量として流量計を備えた流量調整弁11を経由して内管3と外管2の筒状の間隙の一端に設けた供給口12から導入して間隙内を流通させ、他端の排出口13から管路外に排出する流通手段としては、必要に応じて循環路(図示せず)を設けることが導電性塩類水溶液Wsの塩類濃度の調整および流量調整を行なうために好ましい。   As shown in FIG. 1, as a means for interposing an appropriate amount of the conductive saline aqueous solution Ws adjusted between the inner tube 3 and the outer tube 2, water W and salts S are blended in a mixing preparation device 10 outside the pipeline. The conductive salt aqueous solution Ws prepared in this manner is provided at one end of a cylindrical gap between the inner tube 3 and the outer tube 2 via a flow rate adjusting valve 11 having a flow meter as a predetermined flow rate per unit time by a pump P. As a circulation means for introducing from the supply port 12 to circulate in the gap and discharging from the discharge port 13 at the other end to the outside of the pipe line, it is possible to provide a circulation path (not shown) if necessary. This is preferable for adjusting the salt concentration and flow rate of the aqueous solution Ws.

この発明に用いる交流電源Eは、導電性塩類水溶液Wsが電気分解されないように所要の周波数の交流を採用するが、電圧や周波数は塩類水溶液の濃度や食品材料の加熱変性の特性に合わせて調整して採用すればよく、50Hzや60Hzまたはそれ以下の低周波数に調整してもよく、例えば20KHzのような高周波を採用する場合には、パワーユニットを採用して調整すればよい。   The AC power source E used in the present invention employs an alternating current of a required frequency so that the conductive salt aqueous solution Ws is not electrolyzed, but the voltage and frequency are adjusted in accordance with the concentration of the salt aqueous solution and the heat denaturation characteristics of the food material. May be adopted, and may be adjusted to a low frequency of 50 Hz, 60 Hz, or lower. For example, when a high frequency such as 20 KHz is adopted, the power unit may be adopted for adjustment.

このように構成した食品材料の連続加熱装置を使用するには、ホッパーおよび送り出しポンプ付の充填機14から食用肉類を含む食品材料Aを、原料供給管15を経由して管路1の内管3に加圧状態で送り出し、その際に原料供給管15にも予備加熱用の周知のジュール加熱ユニット8´を任意数だけ設けて予備加熱しておくことが加熱効率の点で好ましい。   In order to use the food material continuous heating apparatus configured as described above, the food material A containing edible meat is fed from the filling machine 14 with a hopper and a feed pump through the raw material supply pipe 15 to the inner pipe of the pipe 1. It is preferable from the viewpoint of heating efficiency that an arbitrary number of well-known joule heating units 8 ′ for preheating are provided in the raw material supply pipe 15 and preheated.

そして、所定濃度(例えば1質量%程度)の食塩水となるように水Wおよび塩類Sを適量ずつ配合し混合調製器10で混合調製し、得られた導電性塩類水溶液WsをポンプPで供給路(配管5)に送り出し、さらに流量計を備えた流量調整弁11を経由して内管3と外管2の間隙の一端に設けた供給口12から導入し、間隙内を満たして流通させた後、他端の排出口13から管路外に排出する。   Then, an appropriate amount of water W and salts S are mixed so as to be a predetermined concentration (for example, about 1% by mass), mixed and prepared by the mixing preparation device 10, and the obtained conductive salt aqueous solution Ws is supplied by the pump P. It is fed to the passage (pipe 5) and introduced from a supply port 12 provided at one end of the gap between the inner pipe 3 and the outer pipe 2 via a flow rate adjusting valve 11 equipped with a flow meter, and the gap is filled and circulated. Then, it is discharged out of the pipe line from the discharge port 13 at the other end.

一方、管路1は、外管2に設けたジュール加熱ユニット8で間隙内の導電性塩類水溶液Wsおよび内管3を加熱すると共に、導電性塩類水溶液Wsの染透った内管3から食品材料Aに電圧を印加してジュール加熱する。   On the other hand, the pipe line 1 heats the conductive salt aqueous solution Ws and the inner pipe 3 in the gap by the joule heating unit 8 provided in the outer pipe 2 and also feeds the food from the inner pipe 3 through which the conductive salt aqueous solution Ws is dyed. A voltage is applied to the material A and Joule heating is performed.

これによって、継ぎ目のない内管3内を加圧状態で加熱されながら食用肉類を含む食品材料Aが移送され、管路1の末端から内管3の端面形状に成形されて押し出される。   As a result, the food material A containing edible meat is transferred while being heated in a pressurized state within the seamless inner pipe 3, and is formed into an end face shape of the inner pipe 3 from the end of the pipe 1 and extruded.

このように構成される食品材料の連続加熱装置または食品材料の連続加熱方法とすることにより、加熱されると滞留しやすく移送性の損なわれやすかった食用肉類を含む食品材料Aを連続的に加熱でき、しかも移送中に内管にスケールを発生させ難く、食用肉類の蛋白質の変性する温度まで連続的に加熱できる効率の良いジュール加熱によって連続加熱を行なうことができる。   By using the food material continuous heating apparatus or the food material continuous heating method configured as described above, the food material A containing edible meat that is likely to stay and be easily damaged when heated is continuously heated. In addition, it is difficult to generate scale in the inner tube during transfer, and continuous heating can be performed by efficient Joule heating that can be continuously heated to a temperature at which the protein of the edible meat is denatured.

[実施例1:食肉加工食品(ハム用素材)の製造]
豚肉を主材料とするハム用食肉を用い、実施形態の連続加熱装置を用いて予備加熱用の原料供給管に同径のファイブラス配管(楕円筒状、軸直交断面の内径における長径42mm、短径35mm)を接続し、これを連続加熱装置の管路の内管として前記したハム用素材(原木)を製造した。
[Example 1: Production of processed meat food (ham material)]
Using ham meat mainly made of pork, using the continuous heating device of the embodiment, the same diameter of the pipe pipe (elliptical cylinder, major axis 42 mm, inner diameter of the axis perpendicular to the axis is short) The above-mentioned raw material for ham (raw wood) was manufactured using this as an inner pipe of a pipe line of a continuous heating device.

その際のジュール加熱における連続加熱条件は、1質量%の食塩水を導電性塩類水溶液として用い、電圧200V、交流電流30Aを印加し、食肉を押出し、加熱時間を約2分として中心部分が70〜85℃に至るように加熱した。その際に導電性塩類水溶液を流通させて前記温度を調整し、押出成形してハム用素材(原木)を連続的に得た。   The continuous heating conditions in the Joule heating at that time are as follows. 1% by weight saline is used as a conductive salt aqueous solution, a voltage of 200 V and an alternating current of 30 A are applied, meat is extruded, the heating time is about 2 minutes, and the central portion is 70 Heated to ~ 85 ° C. At that time, an aqueous conductive salt solution was circulated to adjust the temperature, and extrusion molding was performed to continuously obtain a raw material for ham (raw wood).

略楕円柱状に押出成形された実施例のハム用素材は、長径40〜42mm、短径33〜35mmの断面が楕円形状であって、加熱前原料に比べて90%以上の歩留まりのものであり、このものは効率の良い加熱方法によって得られたことが確認できた。   The material for ham of the embodiment extruded into a substantially elliptical column shape has an elliptical cross section with a major axis of 40 to 42 mm and a minor axis of 33 to 35 mm, and has a yield of 90% or more compared to the raw material before heating. It was confirmed that this product was obtained by an efficient heating method.

このように実施例のハム用素材(原木)は、軸直交断面の縮み量ばかりでなく、軸方向の単位長さ当たりの縮み量も極めて小さくなっていることは勿論であり、極めて良好な食品素材を製造できた。   Thus, the raw material for ham (raw wood) of the example has not only the amount of shrinkage of the cross section perpendicular to the axis, but also the amount of shrinkage per unit length in the axial direction is extremely small, and extremely good food. The material could be manufactured.

[実施例2:魚肉類加工食品の製造]
魚肉類(固形エビ肉)を実施形態の連続加熱装置を用いて予備加熱用の原料供給管に同径のファイブラス配管(楕円筒状、軸直交断面の内径における長径42mm、短径35mm)を接続し、これを連続加熱装置の管路の内管とし、魚肉類加工食品用素材を製造した。
[Example 2: Production of processed fish food]
Using a continuous heating device of the embodiment for fish meat (solid shrimp meat), a fiber pipe of the same diameter (elliptical cylindrical shape, major axis 42 mm, minor axis 35 mm in the inner diameter of the axis perpendicular to the axis) is used for the raw material supply pipe. Connected, this was used as the inner pipe of the pipeline of the continuous heating device, and the raw material for processed fish meat food was produced.

その際のジュール加熱における連続加熱条件は、1質量%の食塩水を導電性塩類水溶液として用い、電圧100V、交流電流20Aを印加し、前記魚肉類を押出し、加熱時間を100秒として中心部分が70〜80℃に至るように加熱した。その際に導電性塩類水溶液を流通させて前記温度を調整し、押出成形して柱状の魚肉類加工食品用素材を連続的に得た。   The continuous heating conditions in the Joule heating at that time are as follows: 1% by mass saline solution is used as a conductive salt aqueous solution, a voltage of 100 V and an alternating current of 20 A are applied, the fish meat is extruded, and the heating time is 100 seconds. Heated to 70-80 ° C. At that time, an aqueous conductive salt solution was circulated to adjust the temperature, and extrusion molding was performed to continuously obtain a columnar processed fish meat material.

略楕円柱状に押出成形された実施例2の魚肉類加工食品は、長径40〜42mm、短径33〜35mmの断面が楕円形状であって、加熱前原料に比べて90%以上の歩留まりのものであり、このものは効率の良い加熱方法によって得られたことが確認できた。   The processed fish meat food of Example 2 extruded into a substantially elliptic cylinder has an elliptical cross section with a major axis of 40 to 42 mm and a minor axis of 33 to 35 mm, and has a yield of 90% or more compared to the raw material before heating. It was confirmed that this product was obtained by an efficient heating method.

[実施例3:魚肉類加工食品の製造]
魚肉類(エビ肉すり身)を実施形態の連続加熱装置を用いて予備加熱用の原料供給管に同径のファイブラス配管(楕円筒状、軸直交断面の内径における長径42mm、短径35mm)を接続し、これを連続加熱装置の管路の内管とし、魚肉類加工食品用素材を製造した。
[Example 3: Production of processed fish meat food]
Using a continuous heating apparatus of the embodiment for fish meat (shrimp meat surimi), a pre-heating raw material supply pipe having the same diameter fiber pipe (elliptical cylinder, major axis 42 mm, minor axis 35 mm in the inner diameter of the axis perpendicular to the axis) Connected, this was used as the inner pipe of the pipeline of the continuous heating device, and the raw material for processed fish meat food was produced.

その際のジュール加熱における連続加熱条件は、1質量%の食塩水を導電性塩類水溶液として用い、電圧100V、交流電流25Aを印加し、前記魚肉類を押出し、加熱時間を80秒として中心部分が65〜75℃に至るように加熱した。その際に導電性塩類水溶液を流通させて前記温度を調整し、押出成形して柱状の魚肉類加工食品用素材を連続的に得た。   The continuous heating conditions in Joule heating at that time are as follows. 1% by weight saline is used as an aqueous conductive salt solution, a voltage of 100 V and an alternating current of 25 A are applied, the fish meat is extruded, and the heating time is 80 seconds. Heated to 65-75 ° C. At that time, an aqueous conductive salt solution was circulated to adjust the temperature, and extrusion molding was performed to continuously obtain a columnar processed fish meat material.

略楕円柱状に押出成形された実施例3の魚肉類加工食品は、長径40〜42mm、短径33〜35mmの断面が楕円形状であって、加熱前原料に比べて90%以上の歩留まりのものであり、このものは効率の良い加熱方法によって得られたことが確認できた。   The processed fish food of Example 3 extruded into a substantially elliptical column has an elliptical cross section with a major axis of 40 to 42 mm and a minor axis of 33 to 35 mm, and has a yield of 90% or more compared to the raw material before heating. It was confirmed that this product was obtained by an efficient heating method.

[比較例1]
実施例1において、実施形態の連続加熱装置(ファイブラス配管使用)に代えて、蒸煮および赤外線加熱により、加熱されるステンレス配管(楕円筒状、長径42mm、短径35mm)を用いたこと以外は同様にして、原料供給管から供給される食肉を連続して加熱し、中心部分が70〜85℃に至るように30分間加熱した後、押出成形してハム用素材(原木)を得た。
[Comparative Example 1]
In Example 1, in place of the continuous heating device (using the fibrous pipe) of the embodiment, a stainless steel pipe (elliptical cylinder, major axis 42 mm, minor axis 35 mm) heated by steaming and infrared heating was used. Similarly, the meat supplied from the raw material supply pipe was continuously heated, heated for 30 minutes so that the central portion reached 70 to 85 ° C., and then extruded to obtain a raw material for ham (raw wood).

略楕円柱状に押出成形された状態で得られた比較例1のハム用素材は、長径33〜35mm、短径27〜29mmの断面寸法であって歩留まりが70〜80%であり、実施例に比べて歩留まりの低いものであった。   The ham material of Comparative Example 1 obtained in a state of being extruded into a substantially elliptical column has a cross-sectional dimension of a major axis of 33 to 35 mm and a minor axis of 27 to 29 mm, and a yield of 70 to 80%. Compared with the low yield.

1 管路
2 外管
3 内管
4、9 絶縁性スペーサ
5 配管
6 絶縁筒
7 環状電極
8、8´ ジュール加熱ユニット
10 混合調製器
11 流量調整弁
12 供給口
13 排出口
14 充填機
15 原料供給管
E 交流電源
A 食品材料
W 水
S 塩類
Ws 導電性塩類水溶液
DESCRIPTION OF SYMBOLS 1 Pipe line 2 Outer tube 3 Inner tube 4, 9 Insulating spacer 5 Pipe 6 Insulating cylinder 7 Annular electrode 8, 8 'Joule heating unit 10 Mixing preparation device 11 Flow control valve 12 Supply port 13 Discharge port 14 Filling machine 15 Feeding material Tube E AC power source A Food material W Water S Salt Ws Conductive salt aqueous solution

Claims (8)

食用肉類を含む食品材料を管路で移送しながら電圧を印加し、前記食品材料にジュール熱を発生させて、加熱された食品材料を前記管路から連続的に取り出すようにした連続加熱方法において、
前記管路は、外管と、この外管より小径で前記食品材料に対する不透過性を有すると共に透水性を有する内管とからなり、前記内管と外管の間に導電性塩類水溶液を介在させて、前記食品材料を内管で移送する際に、移送の上流側および下流側の前記導電性塩類水溶液に電圧を印加することにより、前記内管を介して前記食品材料に通電しジュール加熱することを特徴とする食品材料の連続加熱方法。
In a continuous heating method in which a voltage is applied while food materials including edible meat are transferred through a pipeline, Joule heat is generated in the food materials, and the heated food material is continuously removed from the pipeline. ,
The conduit comprises an outer tube and an inner tube having a smaller diameter than the outer tube and impervious to the food material and having water permeability, and an aqueous conductive salt solution is interposed between the inner tube and the outer tube. When the food material is transferred by the inner tube, the food material is energized through the inner tube by applying a voltage to the aqueous conductive salt solution on the upstream side and downstream side of the transfer, and Joule heating is performed. A method for continuously heating food materials.
上記導電性塩類水溶液が、塩類濃度の調整された導電性塩類水溶液である請求項1に記載の食品材料の連続加熱方法。   The method for continuously heating food materials according to claim 1, wherein the aqueous conductive salt solution is a conductive salt aqueous solution having a adjusted salt concentration. 上記内管と外管の間に導電性塩類水溶液を介在させる手段が、管路外で調製された導電性塩類水溶液の所定流量を内管と外管の間に導入して流通させてから管路外に排出する流通手段である請求項1または2に記載の食品材料の連続加熱方法。   The means for interposing the conductive salt aqueous solution between the inner pipe and the outer pipe introduces a predetermined flow rate of the conductive salt aqueous solution prepared outside the pipe line between the inner pipe and the outer pipe and then circulates the pipe. The continuous heating method for food materials according to claim 1, wherein the food material is a circulation means for discharging outside the road. 請求項1〜3のいずれかに記載の連続加熱方法を用いて加熱押出成形する食用肉類加工食品の製造方法。   The manufacturing method of the edible meat processed food which heat-extrusion-molds using the continuous heating method in any one of Claims 1-3. 請求項1〜3のいずれかに記載の連続加熱方法を用いて加熱押出成形された食用肉類加工食品。   An edible meat processed food that has been heat-extruded using the continuous heating method according to claim 1. 食用肉類を含む食品材料を移送する管路を設け、この管路は非透水性の外管の内側に絶縁性スペーサを介して前記外管より小径で前記食品材料に対する不透過性を有すると共に透水性を有する内管を保持したものからなり、前記内管と外管の間隙に別途設けた管路から供給される導電性塩類水溶液を満たし、前記外管はその一部を絶縁筒で設けると共にこの絶縁筒を挟んで環状電極を1対以上設けたものからなり、前記環状電極に交流電源を接続して前記導電性塩類水溶液および前記内管中を移送される食品材料にジュール熱を発生させる食品材料の連続加熱装置。   A conduit for transferring food material including edible meat is provided, and this conduit is smaller in diameter than the outer tube and has an impermeability to the food material through an insulating spacer inside the non-permeable outer tube and is permeable to water. The inner pipe having a property is filled with a conductive salt aqueous solution supplied from a pipe provided separately in the gap between the inner pipe and the outer pipe, and the outer pipe is provided with a part of the insulating pipe. It consists of one or more pairs of annular electrodes provided between the insulating cylinders, and an AC power source is connected to the annular electrodes to generate Joule heat in the conductive salt aqueous solution and the food material transferred through the inner tube. Continuous heating equipment for food materials. 上記内管と外管の間隙に、導電性の塩類水溶液の供給路と排出路を接続し、前記供給路には導電性の塩類水溶液の塩類濃度の調整装置もしくは流量調整弁またはこれら両方を設けた請求項6に記載の食品材料の連続加熱装置。   A supply path and a discharge path for the conductive salt aqueous solution are connected to the gap between the inner pipe and the outer pipe, and the supply path is provided with a device for adjusting the salt concentration of the conductive salt aqueous solution and / or a flow rate adjusting valve. The continuous heating apparatus for food material according to claim 6. 上記管路が、外管の内側に管路に沿って径の異なる複数の柱状絶縁性スペーサを配置して前記内管を所定形状に整えることにより、前記内管を通過して加熱されかつ押出される食品材料を前記所定形状に成形可能とする請求項6または7に記載の食品材料の連続加熱装置。   The pipe is heated and extruded through the inner pipe by arranging a plurality of columnar insulating spacers having different diameters along the pipe inside the outer pipe to arrange the inner pipe into a predetermined shape. The continuous heating apparatus for food material according to claim 6 or 7, wherein the food material to be processed can be formed into the predetermined shape.
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