JPS6225932A - Gas sterilization apparatus for vacuum preservation apparatus - Google Patents
Gas sterilization apparatus for vacuum preservation apparatusInfo
- Publication number
- JPS6225932A JPS6225932A JP60162951A JP16295185A JPS6225932A JP S6225932 A JPS6225932 A JP S6225932A JP 60162951 A JP60162951 A JP 60162951A JP 16295185 A JP16295185 A JP 16295185A JP S6225932 A JPS6225932 A JP S6225932A
- Authority
- JP
- Japan
- Prior art keywords
- chamber
- outer chamber
- vacuum
- cooled air
- inner chamber
- 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
Links
Landscapes
- Storage Of Harvested Produce (AREA)
- Food Preservation Except Freezing, Refrigeration, And Drying (AREA)
- Storage Of Fruits Or Vegetables (AREA)
Abstract
Description
【発明の詳細な説明】
[産業上の利用分野]
本発明は、例えば果実起菜類のような生の食料品やその
他の生の物体を低温、低圧で貯蔵する真空貯蔵装置用の
ガス殺菌装置に関するものである。Detailed Description of the Invention [Industrial Application Field] The present invention is directed to gas sterilization for vacuum storage devices that store raw foodstuffs such as fruits and vegetables and other raw materials at low temperatures and low pressures. It is related to the device.
[従来の技術]
貯蔵物を減圧、低温、高湿度および成長を抑制する雰囲
気ガスの条件下で無風状態におく減圧貯蔵法として特願
昭59−38654号明細書には、添附図面の第2図に
示すように、保冷断熱性で真空に耐える構造の冷気循環
用の外容器A内に、周囲に冷気循環空所Bを残して貯蔵
物を収納する内容器Cを設け、外容器A内には冷凍機り
に連結した冷媒管Eおよび冷気循環用ファンFを配置し
、内容器Cが貯蔵物に応じて最適の圧力、濡面、侃度お
よび雰囲気ガス状態を維持できるようにすると共に内容
器C内を無風状態に維持するようにした二重式真空貯蔵
容器が提案されている。[Prior Art] Japanese Patent Application No. 59-38654 describes a vacuum storage method in which stored materials are left in a windless state under the conditions of reduced pressure, low temperature, high humidity, and atmospheric gas that suppresses growth. As shown in the figure, an inner container C for storing stored items is provided inside an outer container A for cold air circulation, which has a cold insulation property and a vacuum-resistant structure, leaving a cold air circulation space B around the outer container A. A refrigerant pipe E connected to a refrigerator and a cold air circulation fan F are arranged in the container C to maintain the optimal pressure, wet surface, temperature, and atmospheric gas condition in the inner container C depending on the stored material. A double vacuum storage container has been proposed in which the interior of the inner container C is maintained in a windless state.
[発明が解決しようとする問題点]
ところで、このような従来提案された真空貯蔵装置では
、減圧下にあるため、体積あたりの雑菌の数が少なく、
菌の成育が抑えられるという利点があるが、しかし容器
内へ漏洩してくる気体中に含まれている菌は除去できず
、また容器内表面に付着している菌も除去できないとい
う問題がある。[Problems to be Solved by the Invention] Incidentally, in such conventionally proposed vacuum storage devices, because they are under reduced pressure, the number of germs per volume is small.
It has the advantage of suppressing the growth of bacteria, but has the problem that it cannot remove bacteria contained in the gas leaking into the container, nor can it remove bacteria attached to the inner surface of the container. .
そのため、せっかく体積あたりの雑菌の数が少ないとし
ても、容器に付着していたり、容器内に侵大してくる菌
を除去でΔ゛・ないため、仮りに最適貯蔵状態を維持し
ていでも結果としてそれらの菌によって貯蔵物の腐敗が
促進されたり、貯蔵物中で好ましくない菌が繁殖するこ
とになり得る。Therefore, even if the number of bacteria per volume is small, it is not possible to remove bacteria that are attached to the container or that have invaded the container, so even if optimal storage conditions are maintained, as a result These bacteria can accelerate the spoilage of stored materials, and undesirable bacteria can grow in stored materials.
そこで、本発明の目的は、このような容器等に付着して
いたり、漏洩してくる気体中の菌を効果的に殺菌、また
は繁殖を抑制できる真空貯蔵装置用のガス殺菌装置を提
供づ”ることにある。Therefore, an object of the present invention is to provide a gas sterilizer for a vacuum storage device that can effectively sterilize or suppress the proliferation of bacteria in the gas that adheres to such containers or leaks. There are many things.
1問題点を解決−づるための手段]
上記の目的を達成するために、本発明による真空貯蔵装
置用のガス殺菌装置は、保冷断熱性で真空に耐える構造
の外室と、上記外室内に配置され、上記外室との貯蔵条
イ′1での差圧に耐え、伝熱性のよい少なくとも一つの
真空貯蔵用の内室どの間に、減圧下で循環している冷気
中の酸素の一部をオゾン化させる放電装置を設りたこと
を特徴としている。1. Means for Solving Problem 1] In order to achieve the above object, the gas sterilizer for a vacuum storage device according to the present invention has an outer chamber having a structure that is cold and insulating and can withstand vacuum; At least one vacuum storage inner chamber which is arranged to withstand the pressure difference between the outer chamber and the storage strip '1 and has good heat conductivity, and between which part of the oxygen in the cold air circulating under reduced pressure is stored. It is characterized by the installation of a discharge device that turns the area into ozone.
[作 用]
このように構成した本発明による真空貯蔵装置用のガス
殺菌装置においては、次のように作用する。真空貯蔵装
量の真空貯蔵時の圧力は、2.7×10 pa〜・2
.7x10’ Pa稈度ぐあり、このような状態におい
て、オゾン発生装置を作動さけると、外室内を循環して
いる雰囲気ガス中の酸素にエネルギが加えられ、オゾン
が形成され、このオゾンにより殺菌作用が生じられる。[Function] The gas sterilizer for a vacuum storage device according to the present invention configured as described above functions as follows. The pressure during vacuum storage of the vacuum storage capacity is 2.7×10 pa~・2
.. If the ozone generator is not operated under such conditions, energy is added to the oxygen in the atmospheric gas circulating in the outer chamber, forming ozone, which has a sterilizing effect. is generated.
オゾンの発生量は、冷気循環通路内のオゾン濃度を検出
し、オゾン発生装置への入ツノを調整することによって
制御することができる。The amount of ozone generated can be controlled by detecting the ozone concentration in the cold air circulation passage and adjusting the entrance to the ozone generator.
[実 施 例]
以下、添ptt図面の第1図を参照して本発明の実施例
について説明り−る。[Embodiments] Hereinafter, embodiments of the present invention will be described with reference to FIG. 1 of the attached PTT drawings.
第1図には本発明の真空貯蔵装置用ガス殺菌装置の一実
施例を歇略的に示し、1は保冷断熱性で耐真空性の月利
、例えば1ンクリ−1〜や外周を保冷断熱々Aで覆った
釦1材から成る外室で、この中に周囲に冷気循環通路2
を残して貯蔵物を収容する内室3が設けられている。冷
気循環通路2内にはまた、適当な冷凍1幾4に連結され
た冷媒管5および冷気循環用ファン6が配置されている
。内室3は、伝熱性のよい材料で構成され、貯蔵の平衡
状態下で外室1内の圧力と内室3内の圧力との差圧に耐
え得るようにされ、また貯蔵物の種類や装置の規模に応
じて一つまたは複数個設【プたり、あるいは内部を多室
Ml造にしてもよい。7はオゾン発生装置で、例えば図
示のように外室1内の冷気循環通路2に突設した放電電
極8を備えている。或いは、紫外光発生用放電管を備え
たオゾン発生装置などでもよい。放電電極8は図示実施
例では冷媒管5に隣接した位置に配置されているが、必
要により冷気循環通路2の任意の位置に設けることがで
き、またその数についても必要により複数個設けてもよ
い。9はオゾン濃度検出器で、貯蔵物に悪い影響が生じ
ないようにオゾン発生伍を制御するのに用いられる。FIG. 1 schematically shows an embodiment of the gas sterilization device for vacuum storage equipment of the present invention, where 1 is a cold-insulating and vacuum-resistant monthly charger, for example, 1 tank - 1~ and the outer periphery is cold-insulating. This is an outer chamber made of 1 material covered with A, and there is a cold air circulation passage 2 around it.
An interior chamber 3 is provided for accommodating storage items. Also arranged in the cold air circulation passage 2 are a refrigerant pipe 5 connected to a suitable refrigeration unit 1 or 4 and a cold air circulation fan 6. The inner chamber 3 is made of a material with good heat conductivity, is designed to withstand the pressure difference between the pressure in the outer chamber 1 and the pressure in the inner chamber 3 under equilibrium conditions of storage, and is designed to withstand the pressure difference between the pressure in the outer chamber 1 and the pressure in the inner chamber 3, and to Depending on the scale of the device, one or more may be installed, or the interior may be multi-chambered. Reference numeral 7 denotes an ozone generator, which includes, for example, a discharge electrode 8 projecting into the cold air circulation passage 2 in the outer room 1 as shown in the figure. Alternatively, an ozone generator equipped with a discharge tube for generating ultraviolet light may be used. In the illustrated embodiment, the discharge electrode 8 is arranged at a position adjacent to the refrigerant pipe 5, but it can be provided at any position in the cold air circulation passage 2 if necessary, and more than one may be provided if necessary. good. Reference numeral 9 denotes an ozone concentration detector, which is used to control ozone generation so as not to adversely affect stored materials.
また、図面には示してはないが、外室1は減圧用ポンプ
に接続され、内室3には水蒸気発生装置(例えば加湿器
)、貯蔵雰囲気を所望の状態に維持するためのガス導入
装置や真空ポンプ用の排気口が組合される。当然、外室
1および内室3は貯織物搬入、搬出用開閉部が;9りら
れ、また外室1内の冷気循環や圧力調整等の貯蔵条件に
関する制御は適当な制御手段によって自動的にあるいは
手動で行なうことができる。Although not shown in the drawings, the outer chamber 1 is connected to a decompression pump, and the inner chamber 3 includes a steam generator (e.g. humidifier) and a gas introduction device for maintaining the storage atmosphere in a desired state. It is also combined with an exhaust port for a vacuum pump. Naturally, the outer chamber 1 and the inner chamber 3 have an opening/closing section for loading and unloading stored fabrics, and storage conditions such as cold air circulation and pressure adjustment in the outer chamber 1 are automatically controlled by appropriate control means. Alternatively, it can be done manually.
このように構成しIC図示実施例の装置の動作において
、装置は、貯蔵物をその貯蔵物に適した減圧、低温、高
湿度および成長を抑制する雰囲気ガスの条件下で貯蔵す
るように運転制御される。外室1および内室3の間に形
成された冷気循環通路2内は2.7X10 Pa 〜
2.7X104Pa程度の圧力に維持され、冷媒管5お
よび冷気循環用ファン6の作用によって、冷気が循環さ
れ、この循環する冷気が放電装置7の放電電極8を通過
する際に冷気中の酸素にエネルギが加えられ、オゾンが
形成される。こうして形成されたオゾンは外室1および
内室3の壁面に付着していたり、漏洩しでくる気体中の
菌類を殺潤する。なお、オーシン発生装置7への入力は
、オゾン濃度検出器9により検出されるオゾン濃度が貯
蔵物に影響を与えないような値となるように適当に制御
され得る。In operation of the apparatus of the IC illustrated embodiment constructed in this manner, the apparatus is operated to store the stored material under conditions of reduced pressure, low temperature, high humidity, and growth-inhibiting atmospheric gas suitable for the stored material. be done. The inside of the cold air circulation passage 2 formed between the outer chamber 1 and the inner chamber 3 is 2.7×10 Pa ~
The pressure is maintained at approximately 2.7 x 104 Pa, and the cold air is circulated by the action of the refrigerant pipe 5 and the cold air circulation fan 6. When this circulating cold air passes through the discharge electrode 8 of the discharge device 7, it is converted to oxygen in the cold air. Energy is added and ozone is formed. The ozone thus formed kills fungi adhering to the walls of the outer chamber 1 and the inner chamber 3 or in the leaking gas. Note that the input to the osin generator 7 can be appropriately controlled so that the ozone concentration detected by the ozone concentration detector 9 has a value that does not affect the stored material.
[発明の効果]
以上説明してきたように、本発明による真空貯蔵装置用
ガス殺菌装置においCは、保冷断熱性で真空に耐える構
造の外室と、上記外室内に配置され、上記外室との貯蔵
条件での差圧に耐え、伝熱性のよい少なくとも一つの真
空貯蔵用の内室との間に、減圧下で循環している冷気中
の酸素の一部をオゾン化させるオゾン発生装置を設けて
いるので、外の大気より漏洩してくる気体に含まれてい
る菌や貯蔵室の壁面に付着している菌などを効果的に除
去することができ、貯蔵室内を清潔に保つことができる
だけでなく、貯蔵物の雑菌による汚染や腐敗の促進等を
防止することができる。[Effects of the Invention] As explained above, in the gas sterilizer for vacuum storage device according to the present invention, C is arranged in an outer chamber having a structure that is cold and insulating and can withstand vacuum, and is arranged in the outer chamber, and is arranged in the outer chamber. and at least one vacuum storage chamber that can withstand the differential pressure under the storage conditions of This makes it possible to effectively remove bacteria contained in the gas leaking from the outside atmosphere and bacteria adhering to the walls of the storage room, making it possible to keep the inside of the storage room clean. Not only this, but also it is possible to prevent contamination of stored materials by bacteria and acceleration of spoilage.
第1図は本発明の一実施例を示す概略断面図、第2図は
従来の減圧貯蔵法による二重式真空貯蔵装置の一例を示
す概略断面図である。
図中、1:外室、2:冷気循環通路、3:内室、4:冷
凍機、5:冷媒管、6:冷気循環用ファン、7:オゾン
発生装置、8:放電電極、9ニオシン濃度検出器。FIG. 1 is a schematic sectional view showing an embodiment of the present invention, and FIG. 2 is a schematic sectional view showing an example of a dual vacuum storage device using a conventional reduced pressure storage method. In the figure, 1: outer room, 2: cold air circulation passage, 3: inner room, 4: refrigerator, 5: refrigerant pipe, 6: cold air circulation fan, 7: ozone generator, 8: discharge electrode, 9 niosine concentration Detector.
Claims (1)
配置され、上記外室との貯蔵条件での差圧に耐え、伝熱
性のよい少なくとも一つの真空貯蔵用の内室とを有し、
上記外室内で冷気を減圧下で循環させるようにした真空
貯蔵装置において、上記外室と内室との間に、循環して
いる貯蔵用雰囲気ガス中の酸素の一部をオゾン化させる
オゾン発生装置を設けたことを特徴とする真空貯蔵装置
用ガス殺菌装置。It has an outer chamber having a structure that is cold and insulating and can withstand vacuum, and at least one inner chamber for vacuum storage that is placed within the outer chamber and has good heat conductivity and can withstand differential pressure under storage conditions with the outer chamber. death,
In a vacuum storage device in which cold air is circulated under reduced pressure in the outer chamber, ozone is generated between the outer chamber and the inner chamber by converting a part of the oxygen in the circulating storage atmosphere gas into ozone. A gas sterilization device for a vacuum storage device, characterized in that the device is provided with a gas sterilization device.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP60162951A JPS6225932A (en) | 1985-07-25 | 1985-07-25 | Gas sterilization apparatus for vacuum preservation apparatus |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP60162951A JPS6225932A (en) | 1985-07-25 | 1985-07-25 | Gas sterilization apparatus for vacuum preservation apparatus |
Publications (2)
Publication Number | Publication Date |
---|---|
JPS6225932A true JPS6225932A (en) | 1987-02-03 |
JPH0365133B2 JPH0365133B2 (en) | 1991-10-09 |
Family
ID=15764362
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP60162951A Granted JPS6225932A (en) | 1985-07-25 | 1985-07-25 | Gas sterilization apparatus for vacuum preservation apparatus |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS6225932A (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5691886A (en) * | 1991-04-30 | 1997-11-25 | Vari-Lite, Inc. | Programmable rotatable gobo system |
US5758956A (en) * | 1991-04-30 | 1998-06-02 | Vari-Lite, Inc. | High intensity lighting projectors |
US6769792B1 (en) | 1991-04-30 | 2004-08-03 | Genlyte Thomas Group Llc | High intensity lighting projectors |
JP2009053517A (en) * | 2007-08-28 | 2009-03-12 | Denso Corp | Virtual image display device |
-
1985
- 1985-07-25 JP JP60162951A patent/JPS6225932A/en active Granted
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5691886A (en) * | 1991-04-30 | 1997-11-25 | Vari-Lite, Inc. | Programmable rotatable gobo system |
US5758956A (en) * | 1991-04-30 | 1998-06-02 | Vari-Lite, Inc. | High intensity lighting projectors |
US5829868A (en) * | 1991-04-30 | 1998-11-03 | Vari-Lite, Inc. | High intensity lighting projectors |
US6011640A (en) * | 1991-04-30 | 2000-01-04 | Vari-Lite, Inc. | High intensity lighting projectors |
US6769792B1 (en) | 1991-04-30 | 2004-08-03 | Genlyte Thomas Group Llc | High intensity lighting projectors |
JP2009053517A (en) * | 2007-08-28 | 2009-03-12 | Denso Corp | Virtual image display device |
Also Published As
Publication number | Publication date |
---|---|
JPH0365133B2 (en) | 1991-10-09 |
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Legal Events
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Free format text: JAPANESE INTERMEDIATE CODE: R250 |
|
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