WO2018186333A1 - 二重容器詰め飲食品組成物 - Google Patents
二重容器詰め飲食品組成物 Download PDFInfo
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- WO2018186333A1 WO2018186333A1 PCT/JP2018/014072 JP2018014072W WO2018186333A1 WO 2018186333 A1 WO2018186333 A1 WO 2018186333A1 JP 2018014072 W JP2018014072 W JP 2018014072W WO 2018186333 A1 WO2018186333 A1 WO 2018186333A1
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- food
- soy sauce
- polyethylene terephthalate
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-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23V—INDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
- A23V2002/00—Food compositions, function of food ingredients or processes for food or foodstuffs
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D2205/00—Venting means
- B65D2205/02—Venting holes
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/90—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in food processing or handling, e.g. food conservation
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W90/00—Enabling technologies or technologies with a potential or indirect contribution to greenhouse gas [GHG] emissions mitigation
- Y02W90/10—Bio-packaging, e.g. packing containers made from renewable resources or bio-plastics
Definitions
- the container is at least double and the innermost layer is made of polyethylene terephthalate resin, there is little change over time in the concentration and color tone of specific aroma components such as ethyl esters and terpenes.
- the concentration after storage may be increased rather than maintained, so that the desired flavor can be enhanced over time.
- containers mainly composed of polyethylene terephthalate resin are superior to conventional discharge containers (for example, those composed of low-density polyethylene) from the viewpoint of cosmetics, so that the color of the contents can be clearly seen as it is. Can do.
- the polyethylene terephthalate resin has an oxygen absorbent from the viewpoint of further improving the storage stability of the contents.
- the oxygen absorbent is not particularly limited as long as it can be disposed inside or on the surface of the polyethylene terephthalate resin.
- a polyamide material disclosed in Japanese Patent No. 51161462 International Publication No. 2005/083003
- Those having a deoxygenating material also referred to as polyamide / transition metal catalyst-based oxygen absorber
- a container body 13 made of polyethylene terephthalate resin was made as a prototype, and the actual thicknesses of the inner container 11 and the outer container 12 were measured. The measurement was performed based on the following equipment, measurement method, and the like.
- the average value and standard deviation of the thickness in each position of the outer container were as follows. At a distance of 150 mm from the bottom, the average value is 0.254 and the standard deviation is 0.006994. At a distance of 120 mm from the bottom, the average value is 0.268 and the standard deviation is 0.016197. At a position of 90 mm from the bottom, an average value of 0.275 and a standard deviation of 0.016215 At a distance of 60 mm from the bottom, an average value of 0.275 and a standard deviation of 0.046292 At a distance of 30 mm from the bottom, the average value is 0.280 and the standard deviation is 0.020172.
- Ethyl esters and the internal standard substance cyclohexanol were determined for the peak area values using the following m / z.
- Ethyl propanoate m / z 102 Ethyl 2-methylpropanoate m / z 71 Ethyl butyrate m / z 71 2-Methyl ethyl butyrate m / z 102 Ethyl 3-methylbutyrate m / z 88 Cyclohexanol m / z 82
- the ethylene-vinyl alcohol copolymer resin film double container had a significant decrease in ethyl esters, whereas the polyethylene terephthalate resin double container had a small decrease in ethyl esters.
- the double container of polyethylene terephthalate resin obtained a high sensory evaluation in terms of both fragrance and taste as compared with the ethylene-vinyl alcohol copolymer resin. From the above results, it was found that the double container of polyethylene terephthalate resin was excellent in the fragrance retention of ponzu and the quality was maintained.
- Example 7 Change of terpenes in vegetable / fruit mixed juice
- Container body was filled with vegetable / fruit mixed juice (vegetable juice 65%, manufactured by ITO EN), and a discharge cap was attached to the container body filled with fresh soy sauce. .
- the container body was stored at room temperature for 30 days. After storage, the concentration of terpenes contained in the vegetable / fruit mixed juice was measured. The method for determining the concentration of terpenes is as described above. The concentration of terpenes at the start of storage is indicated as 100%.
- Test section 1 Double container of polyethylene terephthalate resin (PET resin) (including oxygen absorber)
- Test section 2 Ethylene-vinyl alcohol copolymer resin film double container (does not contain oxygen absorber)
- the ethylene-vinyl alcohol copolymer resin film double container had a significant decrease in terpenes, whereas the polyethylene terephthalate resin double container had a small decrease in terpenes.
- the double container of polyethylene terephthalate resin obtained a high sensory evaluation in terms of both fragrance and taste as compared with the ethylene-vinyl alcohol copolymer resin. From the above results, it is understood that the double container of polyethylene terephthalate resin is excellent in the fragrance retaining property of vegetable / fruit mixed juice.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Food Science & Technology (AREA)
- Ceramic Engineering (AREA)
- Polymers & Plastics (AREA)
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Nutrition Science (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Medicinal Chemistry (AREA)
- Organic Chemistry (AREA)
- Closures For Containers (AREA)
- Packages (AREA)
- Wrappers (AREA)
- Containers Having Bodies Formed In One Piece (AREA)
Abstract
Description
[1]少なくとも二重の容器に充填された飲食品組成物であって、当該容器の最内層がポリエチレンテレフタレート樹脂で構成されている、飲食品組成物。
[2]前記容器が、
飲食品組成物が充填されるとともに飲食品組成物の減少に伴いしぼみ変形する内容器と、
該内容器が内装されるとともに該内容器との間に外気を吸入する吸気孔が形成された外容器を有する二重の容器本体と、
該容器本体の口部に装着され、飲食品組成物を吐出する吐出口が形成された吐出キャップと、
を備える吐出容器である、[1]に記載の飲食品組成物。
[3]前記容器の少なくとも1つが酸素吸収剤を有する、[1]又は[2]に記載の飲食品組成物。
[4]製造から30日間室温で保存した後の飲食品組成物中に含まれる、炭素数が6から20で構成されるエチルエステル類及び/又は炭素数10のテルペン類の濃度が、製造0日の濃度と比較し80%以上である、[3]に記載の飲食品組成物。
[5]液体調味料である、[1]~[4]のいずれかに記載の飲食品組成物。
[6]液体調味料がしょうゆ又はしょうゆ加工品である、[5]に記載の飲食品組成物。
[7]飲食品組成物中に含まれる香気成分の経時的な減少を抑制する方法であって、ポリエチレンテレフタレート樹脂で構成されている、少なくとも二重の容器内に該飲食品組成物を充填する工程を含む、方法。
[8]前記香気成分が、炭素数が6から20で構成されるエチルエステル類及び/又は炭素数10のテルペン類である、[7]に記載の方法。
本発明に係る少なくとも二重の容器に充填された飲食品組成物は、当該容器の最内層がポリエチレンテレフタレート樹脂で構成されている。本発明の効果が奏される限り、容器を構成する層は三重以上であってもよい。飲食品組成物と接触する最内側に配置される容器(内容器、より具体的には最内層ともいう)の材質は実質的にポリエチレンテレフタレート樹脂から成るが、容器にガスバリア性や酸素吸収性を付与する目的で任意に酸素吸収剤を有していてもよい。
上筒部17のうち、外容器12で構成された部分(以下、外上筒部という)17aの外周面には雄ねじ部29が形成されている。また、外上筒部17aにおいて、雄ねじ部29より下側に位置する部分には、内容器11との間に外気が吸入される吸気孔19が形成されている。雄ねじ部29において吸気孔19の上側に位置する部分には、容器軸O方向に延在する連通溝20が形成されている。
中栓部材21は、外周縁部が容器本体13の口部13aの開口端上に配置された栓本体47と、該栓本体47から立設された連通筒部22と、を備えている。
本体筒部材23の周壁部23aの内周面には、容器本体13の口部13aの雄ねじ部29に螺着された雌ねじ部30が形成されている。また周壁部23aのうち、雌ねじ部30が形成されたねじ部分よりも下側に位置する下端部内には、容器本体13の口部13aにおける下筒部18が気密状態で嵌合され、上記ねじ部分よりも上側に位置する上端部内には、中栓部材21の外筒部26が嵌合されている。
さらに上板部32には、内部が上記吐出口14とされた吐出筒36が貫設されている。
弁体部44は、容器軸Oと同軸に配置された有底筒状に形成され、その周縁上端部は径方向外方に突出する環状のフランジ部44aとされており、弁体部44(フランジ部44a)が連通筒部22の上端開口面上に当接し、貫通孔42と連通孔43との連通を遮断している。
また、弁体部44の中央部には、内シール筒部37の下端部37aが当接する突出部44bが形成されている(図1参照)。
なお弁体部44、外嵌筒部40、弾性連結片45および空気弁部41は一体に成形されている。
流通許容溝44cの具体的な形状や個数は特に限定されない。
当該吐出容器10から内容物Mを吐出するときには、まず、吐出キャップ15からオーバーキャップ16を外す。その後、吐出口14が下方を向くように吐出容器10を傾けて吐出姿勢にした状態で(図5参照)、吐出容器10を径方向の内側に押し込んでスクイズ変形(弾性変形)させ、内容器11を外容器12とともに変形させ減容させる。
また前述のように、内容物Mの吐出後、内容器11に戻されなかった内容物Mが吐出口14内に残存し難くなっているので、内容物Mの吐出後にオーバーキャップ16を吐出キャップ15に装着させ、内シール筒部37を吐出口14内に嵌合させたときに、内シール筒部37により内容物Mが吐出口14から外部に押し出されたり、内シール筒部37に内容物Mが付着したりするのを抑制することができる。
本発明に係る、液体調味料中に含まれる上述の香気成分の経時的な減少を抑制する方法は、ポリエチレンテレフタレート樹脂で構成されている、少なくとも二重の容器内に該液体調味料を充填する工程を含む。抑制方法で使用する二重容器は上述のものを使用することができる。
ポリエチレンテレフタレート樹脂製の容器本体13を試作し、これらにおける内容器11、外容器12の実際の厚みを測定した。測定は、以下の機器、測定方法等に基づいて実施した。
機器:OLYMPUS Magna-Mike 8600
測定金属玉:1/16 IN
測定方法:特に詳しい図示はしていないが肩部には縦方向に4本のリブ(突起)があり、その延長線上4か所について、容器本体13の底部13fから高さ30mmごとに内容器11と外容器12の厚さ(肉厚)を測定した。上記測定により得られた内容器11と外容器12の厚さは、それぞれ以下に示すとおりとなった。なお、単位は[mm]であり、<1>~<4>は、肩部リブの延長線上4か所の各か所を表している。なお、金型の合わせ目(「パーティングライン」)がこの4本のうちの2本のリブ上にあり、残りのリブは、パーティングラインから90°離れた位置にある。一般的にはパーティングラインを目印にして容器の厚さの測定が行われる。
底部からの距離150mmの位置において、<1>0.057、<2>0.075、<3>0.078、<4>0.08
底部からの距離120mmの位置において、<1>0.074、<2>0.087、<3>0.099、<4>0.077
底部からの距離 90mmの位置において、<1>0.067、<2>0.096、<3>0.116、<4>0.073
底部からの距離 60mmの位置において、<1>0.066、<2>0.09、 <3>0.115、<4>0.057
底部からの距離 30mmの位置において、<1>0.081、<2>0.099、<3>0.123、<4>0.079
底部からの距離150mmの位置において、平均値0.073、標準偏差0.010536
底部からの距離120mmの位置において、平均値0.084、標準偏差0.011295
底部からの距離 90mmの位置において、平均値0.088、標準偏差0.022465
底部からの距離 60mmの位置において、平均値0.082、標準偏差0.026038
底部からの距離 30mmの位置において、平均値0.096、標準偏差0.020421
底部からの距離150mmの位置において、<1>0.253、<2>0.246、<3>0.255、<4>0.263
底部からの距離120mmの位置において、<1>0.276、<2>0.256、<3>0.286、<4>0.252
底部からの距離 90mmの位置において、<1>0.278、<2>0.261、<3>0.297、<4>0.265
底部からの距離 60mmの位置において、<1>0.245、<2>0.246、<3>0.267、<4>0.343
底部からの距離 30mmの位置において、<1>0.275、<2>0.27、 <3>0.266、<4>0.31
底部からの距離150mmの位置において、平均値0.254、標準偏差0.006994
底部からの距離120mmの位置において、平均値0.268、標準偏差0.016197
底部からの距離 90mmの位置において、平均値0.275、標準偏差0.016215
底部からの距離 60mmの位置において、平均値0.275、標準偏差0.046292
底部からの距離 30mmの位置において、平均値0.280、標準偏差0.020172
底部からの距離150mmの位置において、厚さ0.0725
底部からの距離120mmの位置において、厚さ0.08425
底部からの距離 90mmの位置において、厚さ0.088
底部からの距離 60mmの位置において、厚さ0.082
底部からの距離 30mmの位置において、厚さ0.0955
底部からの距離150mmの位置において、厚さ0.25425
底部からの距離120mmの位置において、厚さ0.2675
底部からの距離 90mmの位置において、厚さ0.27525
底部からの距離 60mmの位置において、厚さ0.27525
底部からの距離 30mmの位置において、厚さ0.280255
SPMEファイバーと揮発性成分抽出装置を用い、以下の条件に従って、固相マイクロ抽出法で香気成分の分離濃縮を行った。
<固相マイクロ抽出条件>
SPMEファイバー;SPME Fiber Assembly 75μmCAR/PDMS(SUPELCO社製)
揮発性成分抽出装置;AOC-5000(島津製作所社製)
予備加温 ;40℃、5min
攪拌速度 ;250rpm
揮発性成分抽出 ;40℃、20min
脱着時間 ;20min
ガスクロマトグラフ質量分析法を用い、以下の条件に従って、液状調味料中のエチルエステル類のピーク面積及び内部標準物質のピーク面積を測定した。液体調味料として、火入れしょうゆ(例1)、生しょうゆ(例2)、ぽん酢(例4)を使用した。
測定機器;QP-2010ultra(島津製作所社製)
カラム;DB WAX-UI(長さ60m、口径0.25mm、膜厚0.25μm)(AgilentTechnologies社製)
温度条件;40℃(3min)保持 → 110℃まで5℃/min昇温 → 240℃まで10℃/min昇温 → 5min保持
キャリアー;高純度ヘリウム、線速度一定モード40cm/min
スキャン質量範囲;m/z 40.0~250.0
イオン化方式;EI
プロパン酸エチル m/z102
2-メチルプロパン酸エチル m/z 71
酪酸エチル m/z 71
2-メチル酪酸エチル m/z102
3-メチル酪酸エチル m/z 88
シクロヘキサノール m/z 82
・サンプル抽出法
サンプルである下記の飲食品組成物(昆布しょうゆ(例3))5.0gに対し、食塩2.0g、酢酸エチル1.0ml、2-オクタノール溶液(100ppm)100μLを添加し、5分間、激しく攪拌した後、有機溶媒層を抽出した。この操作を3回繰り返し、得られた有機溶媒液を、無水硫酸ナトリウムで乾燥後、500μLまで濃縮し香気濃縮物を得た。得られた香気濃縮物は下記の条件でガスクロマトグラフ質量分析法を行った。
測定機器;5977B(AgilentTechnologies社製)
カラム;DB WAX-UI(長さ60m、口径0.25mm、膜厚0.25μm)(AgilentTechnologies社製)
温度条件;40℃(3min)保持 → 250℃まで6℃/min昇温 → 15min保持
キャリアー;高純度ヘリウム、圧力一定モード229kPa
スキャン質量範囲;m/z 30.0~250.0
イオン化方式;EI
それぞれのエチルエステル類や内部標準物質である2-オクタノールは、以下のm/zを用いピーク面積値を求めた。
テトラデカン酸エチル m/z88
ヘキサデカン酸エチル m/z88
オクタデカン酸エチル m/z88
オレイン酸エチル m/z55
リノール酸エチル m/z95
6,9,12-ヘキサデカトリエン酸エチル m/z75
9,12,15-ヘキサデカトリエン酸エチル) m/z75
6,9,12,15-オクタデカテトラエン酸エチル m/z75
2-オクタノール m/z55
2:香りが非常に向上している
1:香りがわずかに向上している
0:変化がない
-1:香りがわずかに劣化している
-2:香りが非常に劣化している
上記二重容器本体に、火入れしょうゆ(キッコーマン社製)を充填し、火入れしょうゆが充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、火入れしょうゆ中に含まれるエチルエステル類濃度を測定した。エチルエステル類濃度の求め方は上記の通りである。保存開始時のエチルエステル類濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、生しょうゆ(キッコーマン社製)を充填し、生しょうゆが充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、生しょうゆ中に含まれるエチルエステル類濃度を測定した。エチルエステル類濃度の求め方は上記の通りである。保存開始時のエチルエステル類濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、昆布しょうゆ(キッコーマン社製)を充填し、昆布しょうゆが充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、昆布しょうゆ中に含まれるエチルエステル類濃度を測定した。エチルエステル類濃度の求め方は上記通りである。保存開始時のエチルエステル類濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、ぽん酢(ヤマサ醤油社製)を充填し、ぽん酢が充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、ぽん酢中に含まれるエチルエステル類濃度を測定した。エチルエステル類濃度の求め方は上記通りである。保存開始時のエチルエステル類濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、生しょうゆ(キッコーマン社製)を充填し、生しょうゆが充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管前、保管後の生しょうゆの色番を測定した。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
試験区3:ポリエチレンテレフタレート樹脂の単層ボトル(酸素吸収剤を含まない)
・香気成分の分離濃縮方法
SPMEファイバーと揮発性成分抽出装置を用い、以下の条件に従って、固相マイクロ抽出法で香気成分の分離濃縮を行った。
<固相マイクロ抽出条件>
SPMEファイバー;SPME Fiber Assembly 75μmCAR/PDMS(SUPELCO社製)
揮発性成分抽出装置;AOC-5000(島津製作所社製)
予備加温 ;40℃、5min
攪拌速度 ;250rpm
揮発性成分抽出 ;40℃、20min
脱着時間 ;20min
ガスクロマトグラフ質量分析法を用い、以下の条件に従って、液状調味料及び飲料中のエチルエステル類のピーク面積及び内部標準物質のピーク面積を測定した。
測定機器;QP-2010ultra(島津製作所社製)
カラム;DB WAX-UI(長さ60m、口径0.25mm、膜厚0.25μm)(AgilentTechnologies社製)
温度条件;40℃(3min)保持 → 110℃まで5℃/min昇温 → 240℃まで10℃/min昇温 → 5min保持
キャリアー;高純度ヘリウム、線速度一定モード40cm/min
スキャン質量範囲;m/z 40.0~250.0
イオン化方式;EI
サビネン m/z 93
ピネン m/z 93
リモネン m/z 93
テルピネン m/z 93
シメン m/z 119
リナロール m/z 93
2-オクタノン m/z 58
容器本体に、ぽん酢(ミツカン社製)を充填し、ぽん酢が充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、ぽん酢中に含まれるテルペン類の量を測定した。テルペン類の濃度の求め方は上記の通りである。保存開始時のテルペン類の濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、野菜・果実ミックスジュース(野菜汁65%、伊藤園社製)を充填し、生しょうゆが充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、野菜・果実ミックスジュース中に含まれるテルペン類の濃度を測定した。テルペン類の濃度の求め方は上記の通りである。保存開始時のテルペン類の濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、清涼飲料水(アクエリアスビタミン(コカ・コーラカスタマーマーケティング社製))を充填し、清涼飲料水が充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、清涼飲料水中に含まれるテルペン類の濃度を測定した。テルペン類の濃度の求め方は上記通りである。保存開始時のテルペン類の濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
容器本体に、ドレッシングタイプ調味料(青じそドレッシング(理研ビタミン社製))を充填し、ドレッシングタイプ調味料が充填された容器本体に吐出キャップを装着した。その容器本体を、室温で30日間保管した。保管後、ドレッシングタイプ調味料中に含まれるテルペン類の濃度を測定した。テルペン類の濃度の求め方は上記通りである。保存開始時のテルペン類の濃度を100%と表示している。
試験区1:ポリエチレンテレフタレート樹脂(PET樹脂)の二重容器(酸素吸収剤を含む)
試験区2:エチレン-ビニールアルコール共重合樹脂フィルムの二重容器(酸素吸収剤を含まない)
Claims (8)
- 少なくとも二重の容器に充填された飲食品組成物であって、当該容器の最内層がポリエチレンテレフタレート樹脂で構成されている、飲食品組成物。
- 前記容器が、
飲食品組成物が充填されるとともに飲食品組成物の減少に伴いしぼみ変形する内容器と、
該内容器が内装されるとともに該内容器との間に外気を吸入する吸気孔が形成された外容器を有する二重の容器本体と、
該容器本体の口部に装着され、飲食品組成物を吐出する吐出口が形成された吐出キャップと、
を備える吐出容器である、
請求項1に記載の飲食品組成物。 - 前記容器の少なくとも1つが酸素吸収剤を有する、請求項1又は2に記載の飲食品組成物。
- 製造から30日間室温で保存した後の飲食品組成物中に含まれる、炭素数が6から20で構成されるエチルエステル類及び/又は炭素数10のテルペン類の濃度が、製造0日の濃度と比較し80%以上である、請求項3に記載の飲食品組成物。
- 液体調味料である、請求項1~4のいずれか1項に記載の飲食品組成物。
- 液体調味料がしょうゆ又はしょうゆ加工品である、請求項5に記載の飲食品組成物。
- 飲食品組成物中に含まれる香気成分の経時的な減少を抑制する方法であって、ポリエチレンテレフタレート樹脂で構成されている、少なくとも二重の容器内に該飲食品組成物を充填する工程を含む、方法。
- 前記香気成分が、炭素数が6から20で構成されるエチルエステル類及び/又は炭素数10のテルペン類である、請求項7に記載の方法。
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US16/500,293 US20200062476A1 (en) | 2017-04-05 | 2018-04-02 | Food and beverage composition contained in double-layered container |
CA3058875A CA3058875C (en) | 2017-04-05 | 2018-04-02 | Food and beverage composition contained in double-layered container |
KR1020197031401A KR20190133717A (ko) | 2017-04-05 | 2018-04-02 | 이중 용기 포장 음식품 조성물 |
CN201880023150.0A CN110709327A (zh) | 2017-04-05 | 2018-04-02 | 双层容器装饮食品组合物 |
EP18781017.1A EP3608241A4 (en) | 2017-04-05 | 2018-04-02 | FOOD AND BEVERAGE COMPOSITION PACKED IN A DOUBLE CONTAINER |
KR1020227014427A KR102520008B1 (ko) | 2017-04-05 | 2018-04-02 | 생간장 중에 포함되는 향기 성분의 경시적인 감소를 억제하는 방법 |
JP2019511223A JP7219704B2 (ja) | 2017-04-05 | 2018-04-02 | 二重容器詰め飲食品組成物 |
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KR (2) | KR102520008B1 (ja) |
CN (1) | CN110709327A (ja) |
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CN112027300A (zh) * | 2020-10-12 | 2020-12-04 | 广州长霖塑料制品有限公司 | 一种双层瓶 |
CN112455916A (zh) * | 2020-12-14 | 2021-03-09 | 广州尚功塑胶有限公司 | 一种防污染瓶盖 |
CN112849725B (zh) * | 2021-03-15 | 2024-10-11 | 广州长霖塑料制品有限公司 | 一种低成本的双层瓶 |
US11751585B1 (en) | 2022-05-13 | 2023-09-12 | Sharkninja Operating Llc | Flavored beverage carbonation system |
US12096880B2 (en) | 2022-05-13 | 2024-09-24 | Sharkninja Operating Llc | Flavorant for beverage carbonation system |
US11647860B1 (en) | 2022-05-13 | 2023-05-16 | Sharkninja Operating Llc | Flavored beverage carbonation system |
US12084334B2 (en) | 2022-11-17 | 2024-09-10 | Sharkninja Operating Llc | Ingredient container |
US11738988B1 (en) | 2022-11-17 | 2023-08-29 | Sharkninja Operating Llc | Ingredient container valve control |
US11634314B1 (en) | 2022-11-17 | 2023-04-25 | Sharkninja Operating Llc | Dosing accuracy |
US12103840B2 (en) | 2022-11-17 | 2024-10-01 | Sharkninja Operating Llc | Ingredient container with sealing valve |
US11745996B1 (en) | 2022-11-17 | 2023-09-05 | Sharkninja Operating Llc | Ingredient containers for use with beverage dispensers |
US11871867B1 (en) | 2023-03-22 | 2024-01-16 | Sharkninja Operating Llc | Additive container with bottom cover |
US11925287B1 (en) | 2023-03-22 | 2024-03-12 | Sharkninja Operating Llc | Additive container with inlet tube |
US12116257B1 (en) | 2023-03-22 | 2024-10-15 | Sharkninja Operating Llc | Adapter for beverage dispenser |
US12005408B1 (en) | 2023-04-14 | 2024-06-11 | Sharkninja Operating Llc | Mixing funnel |
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JP7219704B2 (ja) | 2023-02-08 |
EP3608241A4 (en) | 2021-01-27 |
US20200062476A1 (en) | 2020-02-27 |
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KR20220062421A (ko) | 2022-05-16 |
JPWO2018186333A1 (ja) | 2020-02-13 |
CA3058875C (en) | 2023-03-07 |
CN110709327A (zh) | 2020-01-17 |
KR102520008B1 (ko) | 2023-04-11 |
CA3058875A1 (en) | 2018-10-11 |
KR20190133717A (ko) | 2019-12-03 |
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