EP3016889A1 - Beverage preparation capsules for delivery of functional ingredients - Google Patents
Beverage preparation capsules for delivery of functional ingredientsInfo
- Publication number
- EP3016889A1 EP3016889A1 EP14741652.3A EP14741652A EP3016889A1 EP 3016889 A1 EP3016889 A1 EP 3016889A1 EP 14741652 A EP14741652 A EP 14741652A EP 3016889 A1 EP3016889 A1 EP 3016889A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- capsule
- beverage preparation
- beverage
- ingredient
- coating
- 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
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Classifications
-
- 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
- B65D85/00—Containers, packaging elements or packages, specially adapted for particular articles or materials
- B65D85/70—Containers, packaging elements or packages, specially adapted for particular articles or materials for materials not otherwise provided for
- B65D85/804—Disposable containers or packages with contents which are mixed, infused or dissolved in situ, i.e. without having been previously removed from the package
- B65D85/8043—Packages adapted to allow liquid to pass through the contents
- B65D85/8061—Filters
-
- 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
- B65D75/00—Packages comprising articles or materials partially or wholly enclosed in strips, sheets, blanks, tubes or webs of flexible sheet material, e.g. in folded wrappers
- B65D75/52—Details
- B65D75/58—Opening or contents-removing devices added or incorporated during package manufacture
- B65D75/5861—Spouts
- B65D75/5872—Non-integral spouts
- B65D75/5883—Non-integral spouts connected to the package at the sealed junction of two package walls
Definitions
- the present invention relates to beverage preparation capsules for the delivery of beverages containing functional ingredients such as added flavonoids, vitamins, antioxidants or minerals, to a beverage.
- the invention relates in particular to such capsules for use in single-serve beverage dispensing machines.
- a number of beverage making systems are known in which a single serving of the beverage is made by inserting a capsule containing a particulate beverage making ingredient, such as ground coffee, into a beverage making station of a beverage making apparatus.
- the apparatus then injects water into the capsule, where the beverage making ingredient dissolves in, or infuses into, the water to form the beverage.
- the beverage flows out of the capsule through a suitable outlet, which may be simply an opening or perforation in the capsule, or it may comprise an outlet tube that pierces an outlet region of the capsule.
- the capsule may incorporate a filter to prevent passage of solid components such as coffee grounds out of the capsule.
- the above capsules have been adapted for the preparation of flavoured beverages, for example nut-flavored or vanilla-flavored coffees by the addition of flavouring agents to the beverage making ingredient.
- JP-A-11266841 describes a barley-tea bag containing catechin- enriched green tea.
- the present invention provides a beverage preparation capsule containing a beverage preparation ingredient and a functional ingredient, wherein at least a portion of an inside surface of said capsule is coated with a water-dispersible coating containing the functional ingredient.
- the provision of the functional ingredient in a water dispersible coating on an inside surface of the capsule allows the functional ingredient to be dispersed into the beverage only when water is injected into the capsule in use.
- the functional ingredient is kept substantially or completely separate from the beverage ingredient before use.
- at least 50%, more suitably at least about 90%, and most suitably all of the added functional ingredient is present in the coating.
- the present invention provides a convenient, efficient and cost-effective means to add functional ingredients to a beverage.
- the present invention can contain only a minimal amount of functional ingredient while still achieving the desired functional effect and/or bioavailability.
- Functional ingredients may be expensive and may contribute undesired taste and/or appearance to a beverage product.
- the capsule further comprises a filter element that divides an interior space of the capsule into an upstream region containing the beverage preparation ingredient and a downstream region, and the coating containing the functional ingredient is located on an internal surface of the downstream region.
- the functional ingredient is dispersed into the beverage after the liquid has passed through the filter. This eliminates problems of adsorption of the functional ingredient on a residue of the beverage preparation ingredient (e.g. coffee grounds), or adsorption of the functional ingredient onto the filter.
- the capsule may be closed with a releasable seal, such that both the beverage preparation ingredient and the coating containing the functional ingredient are located within the capsule and protected from the environment outside the capsule.
- the capsule comprises a filter element that divides an interior space of the capsule into an upstream region containing the beverage preparation ingredient and a downstream region containing the functional ingredient, wherein the coating containing the functional ingredient is applied to at least a part of the inside surface of the downstream region of the capsule, but upstream from a releasably sealed outlet region of the capsule.
- the beverage preparation capsule may be based on any of the capsules currently used for preparation of beverages by injection of water into the capsule.
- the capsule is a single-serve capsule that contains sufficient beverage preparation ingredients for the preparation of a single portion of beverage, i.e. from about 25 to about 500 ml, preferably from about 100 ml to about 250 ml of beverage.
- the capsule may contain from about 2 g to about 25 g of ground coffee or from about 1 g to about 9 g of leaf tea.
- each capsule comprises a body formed from plastics sheet (e.g. thermoformed or injection molded sheet) and/or from flexible film material.
- the sheet or flexible film material will usually be a laminate comprising two or more of the following layers: a thermoplastic sealant layer for bonding the sheet to other members of the package; a substantially gas-impermeable barrier layer, which may be a metal film such as aluminum film; adhesion layers to improve adhesion between other layers of the laminate; structural layers, for example to provide puncture resistance; and/or a printing substrate layer.
- the structural layers could be made of polyolefins, polyester, nylons, or other polymers as is well known in the art.
- the capsule may be a sachet having a body formed substantially or completely from flexible film material.
- it may comprise two similar or identical sheets of flexible film material bonded together in face-to-face relationship around a margin to form a film sachet.
- the capsules may comprise a first, relatively rigid sheet that has been formed, e.g. by thermoforming, into a cup or bowl shape, and a second sheet that is bonded across the rim to form the capsule body.
- the first sheet may be a relatively stiff thermoplastic sheet that has been thermoformed into a cup or bowl shape with a flanged rim
- the second sheet is a flat sheet, which may be of flexible film material, that is bonded across the flanged rim.
- Suitable capsule embodiments are described for example in the references listed above.
- the capsule may further comprise a filter element, for example a layer of filter sheet material, for preventing escape of the beverage preparation ingredient in use.
- the filter sheet may be located inside the capsule dividing the interior of the capsule body into an upstream region containing the beverage preparation ingredient and a downstream region through which the beverage flows to escape from the capsule.
- the downstream region may include various features such as a tubular flow path or eductor for the beverage, a beverage conditioning chamber, or a jet-forming orifice, for example as known in the art.
- the filter element is similar to the filter elements currently provided in existing beverage capsule formats.
- the capsule comprises a water inlet such as an inlet nozzle. In other embodiments, there is no inlet nozzle and water is injected by piercing the capsule with an injector tube of a beverage making machine.
- the capsule may comprise an outlet for the beverage. Alternatively, the outlet may be formed in use by piercing the capsule with an outlet tube, or by opening a heat-releasable seal on the capsule.
- the capsule will have an inlet region where water is injected in use, an outlet region from which the beverage escapes from the capsule in use, and a liquid flow path within the capsule that passes through the beverage preparation ingredient.
- the coating containing the functional ingredient is adhered to an internal surface of the capsule at a location such that the coating is exposed to the beverage produced in the capsule in use, to dissolve the coating into the beverage.
- the coating is located downstream of any filter element in the capsule so as to minimise exposure of the functional ingredient to the beverage ingredient and/or the filter.
- the area of the coating is from about 0.5cm 2 to about 20cm 2 , for example from about 1 cm 2 to about 10cm 2 .
- the basis weight of the coating is suitably from about 1 g/m 2 to about 2kg/m 2 , for example from about 50g/m 2 to about 500g/m 2 .
- the total weight of the coating is suitably from about 1 mg to about 1 g, for example from about 10mg to about 500mg, typically from about 50mg to about 300mg.
- the functional ingredient may for example be selected from the group consisting of flavonoids, vitamins, minerals, antioxidants, stimulants, flavouring agents, sweeteners, colouring agents and bitterness blocking compounds.
- each functional ingredient in the coating will depend on the ingredient. Suitably, it is from about 1 % to about 100%, for example about 5% to about 50%, typically about 10% to about 30% of the recommended adult daily intake of the functional ingredient. Suitable ranges for certain functional ingredients are defined below.
- the functional ingredient comprises, or consists essentially of, one or more flavonoids. Flavonoids and their polymers constitute a class of food constituents, which alter metabolic processes and have a positive impact on health. Flavonoids have thus attracted considerable interest as food components or food additives.
- Flavonoids are a subclass of polyphenols. They generally consist of two aromatic rings, each containing at least one hydroxyl group. The two rings are connected through a three- carbon "bridge" which forms part of a six-membered heterocyclic ring. The flavonoids are further divided into subclasses based on the connection of an aromatic ring to the heterocyclic ring, as well as the oxidation state and functional groups of the heterocyclic ring. Within each subclass, individual compounds are characterized by specific hydroxylation and conjugation patterns.
- flavonoids in foods have the following general structure showing three rings (A, B and C) and numbering pattern:
- the substituents R 3 through R 6 may represent hydrogen or a variety of groups such as hydroxyl groups, oxo groups and Ci to C 6 linear or branched alkyl groups.
- R 4 . and R 6 represent a hydrogen atom while R 5 represents a hydroxy group.
- the C-ring may also be unsaturated and contain further functional groups.
- the link between the B and the C ring may be in 2 or 3 position.
- the flavonoid compound may comprise one or mere of a flavonol (for example quercitin, rutin, morin, hesperidin, isorhamnetin, kaempferol, myricitin), a flavone (for example acacetin, apigenin, luteolin), an isoflavone (for example genistein, glycitein, biochanin A, formononetin, daidzein), a flavanol (for example catechins, gallocatechins, epicatechins, polymers thereof, procyanidins), a flavanone (for example taxifolin, eriodictyol, hesperitin, naringenin), a dihydroflavonol, an anthocyanin and/or an anthocyanidin (for example cyanidin, delphinidin, malvidin, pelargonidin, petunidin, peonidin).
- flavonoids include daidzein, ginkgetin, tangeritin, kaempferol, myricetin, fisetin, isorhamnetin, naringenin, eriodictyol, thearubigins, tamarixetin, malvidin, peonidin, petunidin, and/or delphinidin.
- catechins is used as a generic term for catechin, gallocatechin, catechin gallate, gallocatechin gallate, epicatechin, epigallocatechin, epicatechin gallate, epigallocatechin gallate, and mixtures thereof.
- the flavonoid additive for use in the present invention can be pure flavonoid starting materials or a variety of flavonoid-containing materials such as plant parts, plant extracts and the like.
- green tea extracts with high levels of catechins e.g. green tea extract from Naturex, France, standardized to 95% polyphenols, 75% catechins, ⁇ 0.5% caffeine, >40% epigallocatechingallate
- grape seed or skin extracts e.g. exGrape grape seed polyphenol powder OPC 40 #848F/848G supplied by Breko, Germany with 40% of oligomeric proanthocyanidins
- grape polyphenol powder P80, white, #834F supplied by Breko, Germany with 80% polyphenols
- addition products of flavonoids with saccharides as described in EP-A-1856988.
- cocoa polyphenols are Especially suitable flavonoids for use in the present invention.
- CPs cocoa polyphenols
- Cocoa polyphenols have been shown to have beneficial effects on the processes believed to be involved in the development of atherosclerosis and cardiovascular disease. Cocoa polyphenols inhibit LDL oxidation, enhance nitric oxide/nitric oxide synthase (NO/NOS) activity, and inhibit cyclo-oxygenase (COX) and lipoxygenase (LOX) activity; these effects are reported in WO 97/36497. Cocoa polyphenols can also be used to treat or prevent conditions which are known to be affected by the administration of non-steroidal anti-inflammatory drugs, for example, aspirin.
- cocoa polyphenols refers to the polyphenolic compounds, including proanthocyanidins, more particularly procyanidins, present in cocoa beans, cocoa nibs, and most cocoa ingredients prepared from cocoa beans or cocoa nibs.
- procyanidin refers to naturally occurring or synthetically derived oligomers of catechin and/or epicatechin. Any reference to “cocoa polyphenols” should be understood to include the flavan-3-ol monomers catechin and epicatechin.
- the monomers include (+)-catechin and (-)-epicatechin and their respective epimers (e.g., (+)-epicatechin and (-)-catechin) and derivatives thereof.
- the monomers have the formula "A” and the oligomers have the formula "An” where n in an integer from 2 to 18 and higher. "A” has the formula:
- the saccharide moiety is derived from the group consisting of glucose, xylose, rhamnose, and arabinose.
- the saccharide moiety and any or all of R, X, Y, and Z may optionally be substituted at any position with a phenolic moiety via an ester bond.
- the phenolic moiety is selected from the group consisting of caffeic, cinnamic, coumaric, ferulic, gallic, hydroxybenzoic, and sinapic acids.
- Underfermented and unfermented raw cocoa materials contain substantial amounts of cocoa polyphenols compared to fermented cocoa materials. Fermentation and drying bring about complex changes in the cocoa bean, most notably, the formation of the components required for the development of the characteristic flavor and color of cocoa. Fermentatbn, however, also significantly decreases the concentrations of the polyphenolic compounds in the fermented cocoa beans relative to the concentrations of polyphenolic compounds in the unfermented or underfermented cocoa beans.
- Traditional cocoa bean processing including such steps as roasting or defatting of the cocoa beans, also reduces the cocoa polyphenol concentration in the cocoa powder or chocolate liquors produced thereby. Moreover, these processes reduce the concentrations of higher oligomeric polyphenols (i.e., oligomers 5-12) more rapidly than the lower oligomers (i.e., oligomers 2-4).
- Cocoa extracts containing polyphenols can also be prepared by solvent extracting partially or fully defatted cocoa solids prepared from unfermented and/or underfermented cocoa beans or cocoa nibs. See U.S. 6,015,913 and U.S. 6,312,753.
- the flavonoid (including cocoa flavonoid) is present in the finished beverage in an amount of at least 0.06% by weight of the beverage, preferably at least 0.07% for example at least 0.08%.
- the amount of flavonoid should not be too high, however, otherwise the taste and/or appearance of the beverage may be impaired. Therefore it is preferred that the finished beverage comprises flavonoids in an amount of less than 1 % by weight of the beverage, preferably less than 0.5% and most suitably less than 0.2%.
- the amount of flavonoids can be determined by HPLC using the method described in US-A-2008020069.
- the capsule contains from about 20mg to about 1 g, more suitably from about 50mg to about 500mg, most suitably from about 100mg to about 300mg of the added flavonoids (i.e excluding flavonoids inherently present in the beverage preparation ingredient).
- the added flavonoids are substantially completely contained in the coating.
- the functional ingredients may additionally or alternatively comprise one or more antioxidants other than flavonoids.
- antioxidants may also be useful as oxygen scavengers to maintain the freshness of the beverage ingredient inside the pack before use.
- the coating contains from about 1 mg to about 100mg, for example from about 5mg to about 20mg of such other antioxidants in the coating.
- the functional ingredient may additionally or alternatively comprise ginseng, for example belonging to the genus Panax of the family Araliaceae and/or an extract of ginseng, such as a ginsenoside (also termed panaxoside), preferably dammarane ((5S,8R,9R,10S, 13R, 14R, 17R)-4,4,8, 10, 14-pentamethyl-17-[(2R)-6-methylheptan-2-yl]- 2,3,5,6,7,9, 11 , 12, 13, 15, 16, 17-dodecahydro-1 H-cyclopenta[a]phenanthrene), or protopanaxadiol ((3S,5R,8R,9R, 10R, 12R, 13R,
- the functional ingredients may additionally or alternatively comprise a weight management active. Suitable actives include biotin, pantothenic acid (vitamin B5), vitamin B6, niacin, magnesium, yerba mate extract, guarana extract, hydroxycitric acid and mixtures thereof.
- the coating contains from about 1 mg to about 100mg, for example from about 5mg to about 20mg of such ingredients.
- the functional ingredients may additionally or alternatively comprise vitamins and/or minerals.
- the preferred vitamins are for example, vitamin A, vitamin C, vitamin D, vitamin E, vitamin K, and their derivatives and/or pro-vitamins.
- Preferred vitamins also include B vitamins such as, for example, biotin, folic acid, niacin, niacinamide, pantothenate, pyridoxine hydrochloride, riboflavin, thiamin hydrochloride, and the like.
- the coating contains from about 1 mg to about 100mg, for example from about 5mg to about 20mg of vitamins and/or pro-vitamins.
- the preferred minerals include but are not limited to bromine, calcium, chromium, copper, iodine, iron, magnesium, manganese, phosphates, phosphorus, potassium, selenium, sodium, sulfur, and zinc.
- the coating contains from about 1 mg to about 100mg, for example from about 5mg to about 20mg of such ingredients.
- the functional ingredients include, for example, amino acids such as arginine, histidine, isoleucine, leucine, lysine, methionine, phenylalanine, threonine, tryptophan, valine, alanine, aspartic acid, glutamic acid, glutamine, glycine, serine, tyrosine, creatine, and the like.
- the coating contains from about 1 mg to about 100mg, for example from about 5mg to about 20mg of such ingredients.
- the functional ingredients include sweeteners.
- suitable sweeteners include, but are not limited to:
- A. water-soluble sweetening agents such as monellin, steviosides, and glycyrrhizin ;
- water-soluble artificial sweeteners such as the soluble saccharin salts, i. e., sodium or calcium saccharin salts, cyclamate salts, the sodium, ammonium or calcium salt of 3, 4- dihydro-6-methyl- 1 , 2,3-oxathiazine-4- one-2,2-dioxide, the potassium salt of 3,4-dihydro- 6-methyl-1 , 2,3- oxathiazine-4-one-2,2-dioxide (acesulfame-K), the free acid form of saccharin, and the like;
- soluble saccharin salts i. e., sodium or calcium saccharin salts, cyclamate salts, the sodium, ammonium or calcium salt of 3, 4- dihydro-6-methyl- 1 , 2,3-oxathiazine-4- one-2,2-dioxide, the potassium salt of 3,4-dihydro- 6-methyl-1 , 2,3- oxathiazine-4-one-2,2-
- C. dipeptide based sweeteners such as L-aspartic acid derived sweeteners, such as L-aspartyl-L-phenylalanine methyl ester (aspartame) and materials described in U. S. Patent No.
- water-soluble sweeteners derived from naturally occurring water-soluble sweeteners, such as a chlorinated derivative of ordinary sugar (sucrose), known, for example, under the product description of sucralose ; and
- E. protein based sweeteners such as thaumatoccous danielli (Thaumatin I and II).
- auxiliary sweetener is utilized to provide the level of sweetness desired for a particular beverage, and this amount will vary with the sweetener selected.
- the coating suitably contains from about 1 mg to about 1g of total sweeteners, for example from about 5mg to about 500mg of total sweeteners, typically from about 10mg to about 300mg of total sweeteners.
- the functional ingredients include natural and artificial flavorings such as synthetic flavor oils and flavoring aromatics, and/or oils, oleo resins and extracts derived from plants, leaves, flowers, fruits and so forth, and combinations thereof.
- Representative flavorings include, but are not limited to, artificial vanilla, cinnamon derivatives, peppermint oil, clove oil, oil of nutmeg, oil of sage, and oil of bitter almonds, chocolate, coffee, cocoa and citrus oil, including lemon, orange, grape, lime and grapefruit and fruit essences including apple, pear, peach, strawberry, raspberry, cherry, plum, pineapple, apricot, whether employed individually or in admixture.
- sweet almonds chocolate, coffee, cocoa and citrus oil, including lemon, orange, grape, lime and grapefruit and fruit essences including apple, pear, peach, strawberry, raspberry, cherry, plum, pineapple, apricot, whether employed individually or in admixture.
- These flavorings can be used individually or in admixture.
- the amount of flavoring employed in the coating may be normally a matter of preference subject to such factors as flavor type, individual flavor, and strength desired. Thus, the amount may be varied in order to obtain the result desired in the final product. Such variations are within the capabilities of those skilled in the art without the need for undue experimentation.
- the coating suitably contains from about 1 mg to about 1 g of total flavorings (other than sweetener), for example from about 5mg to about 500mg, typically from about 10mg to about 300mg.
- the coating comprises the functional ingredient dispersed in a film-forming matrix.
- the functional ingredient may be dispersed as a solution (e.g. solid solution) in the matrix, or as a dispersion in the film-forming matrix of solid particles of the functional ingredient, or as a dispersion in the film-forming matrix of microcapsules containing the functional ingredient.
- the film-forming matrix confers adherency to the inside wall of the capsule, dilutes the functional ingredient making precise dosage easier, and protects the functional ingredient prior to use of the capsule.
- the matrix must be water-dispersible, and preferably soluble. It should be formed from food-acceptable (GRAS) materials.
- the film-forming matrix suitably comprises at least one edible film-forming polymer and may further comprise water, preservatives, plasticizing agents, emulsifying agents, and buffers.
- the edible film-forming polymer used in the coating can be any suitable film-forming polymer including, but not limited to, alginates, pullulan, hydrocolloids, ss-glucan, maltodextrin, celluloses, including hydroxypropylmethyl cellulose, hydroxyethyl cellulose, hydroxypropyl cellulose, carboxymethyl cellulose, methylcellulose, hydroxymethylcellulose, hydroxyethylcellulose, polyvinyl pyrrolidone, polyvinyl alcohol, polyethylene glycol, hydroxypropyl ethyl cellulose, cellulose acetate phthalate, hydroxypropyl methyl cellulose phthalate, natural gums, such as locust bean gum, carrageenan gum, xanthan gum, tragacanth gum, guar gum, acacia gum, arabic gum, karaya, ghatti, tamarind gum, polyacrylic acid, methylmethacrylate copolymer, carboxyvinyl polymer, amylose
- the edible film-forming polymer used in the films may also include water dispersible synthetic polymers, copolymers, block polymers, including, but not limited to, poly (glycolic acid) (PGA), poly (lactic acid) (PLA), polydioxanoes, polyoxalates, poly ( alpha -esters), polyanhydrides, polyacetates, polycaprolactones, poly (orthoesters), polyamino acids, polyaminocarbonates, polyurethanes, polycarbonates, polyamides, poly (alkyl cyanoacrylates), stereopolymers of L-and D-lactic acid, copolymers of bis (p- carboxyphenoxy) propane acid and sebacic acid, sebacic acid copolymers, copolymers of caprolactone, poly (lactic acid) /poly (glycolic acid) /polyethyleneglycol copolymers, copolymers of polyurethane and poly (lactic acid), copolymers of polyurethane and
- the edible film-forming polymer is present in amounts ranging from about 10 to about 99 wt %, about 30 to about 80 wt %, or from about 45 to about 70 wt %, or from about 50 to about 65 wt % of the coating.
- the coating contains less than about 20wt% of water, for example less than about 15wt% of water, typically from about 1wt% to about 10wt% of water.
- the coating contains from about 1wt% to about 90wt%, more suitably about 2wt% to about 50wt%, for example about 5wt% to about 25wt% of the functional ingredient. The above percentages are by weight based on the weight of the coating.
- the coatings may include a preservative.
- the preservative may be added in amounts from about 0.001 to about 5 wt %, or from about 0.01 to about 1 wt % of the coating.
- preservatives include sodium benzoate and potassium sorbate.
- the coating may also include a plasticiser.
- Plasticisers include polyhydric alcohols such as such as sorbitol, glycerin, polyethylene glycol, propylene glycol, hydrogenated starch hydrolysates, corn syrups, as well as monoacetin, diacetin, triacetin, maltitol and mannitol.
- the plasticiser may be added in wide range of amounts, including, but not limited to, from about 1 to about 20 wt %, or from about 5 to about 15 wt % of the coating.
- the beverage preparation capsules according to the invention can be made by simple modification of existing methods, whereby the coating containing the functional ingredient is applied to at least a region of the inside surface of the capsule at any stage prior to sealing of the capsule.
- the coating is applied as a solution or dispersion in a suitable solvent, such as water, followed by drying.
- the solution or dispersion may be applied by brushing, spraying or printing (e.g. transfer printing, intaglio printing).
- the coating may be melted without addition of a solvent and then applied as above.
- the coating may be formed by adhering a solid film of the coating material to the inside surface using a suitable food-acceptable adhesive or by heat bonding or ultrasonic bonding.
- the present invention provides a method of preparing a beverage, comprising the step of passing an aqueous liquid through a beverage preparation capsule according to the present invention.
- the aqueous liquid is preferably water, for example at a temperature of 85°C to 99°C.
- the method may be performed in the beverage preparation apparatus already known for use with existing capsule formats, for example as described in the patent references listed above, without modification of the apparatus.
- the water may suitably be injected at a pressure of 0.5 to 1.5 bar gauge for filter-type coffee, and at higher pressures such as 5-20bar gauge for espresso-type coffee, depending on the system.
- Fig. 1 shows an external view of a FLAVIA® type capsule modified according to the invention
- Fig. 2 shows a longitudinal cross-section on A-A of the capsule of Fig. 1 ;
- Fig. 3 shows a longitudinal cross-section on A-A of the capsule of Fig. 1 in use to prepare a beverage
- Fig. 4 shows an elevation view, partially cut away, of a second beverage preparation capsule according to the present invention
- Fig. 5 shows a side elevation partially cut away of a third beverage preparation capsule according to the present invention
- Fig. 6 shows the capsule of Fig. 5 in use to prepare a beverage.
- the illustrated embodiment is a modification of a current commercial embodiment of the beverage preparation capsules originally described in GB- A-2121762, GB-A-2122881 , EP-A-0179641 , EP-A-0247841 and WO-A-9905044.
- the capsule 1 is a single-serve capsule generally similar to the sachet described in EP-A-0179641. It comprises two flexible laminate sheets 2,3 forming a sachet body. Each laminate sheet comprises an inner thermoplastic sealing film. The front and back sheets 2,3 are bonded together in face-to- face relation along edge seams 4, 5, top seam 6 and bottom seam 7. At least a central region of the bottom seam 7 is bonded with a peelable adhesive that can be released by the action of heat and/or pressure of liquid inside the capsule, and/or with the assistance of external heating from the beverage preparation apparatus.
- a nozzle 8 is inserted into the top seam 6 of the capsule in air-tight fashion. The nozzle 8 has a central cylindrical bore 9 sealed at the top by membrane 10. A flange 11 on the nozzle enables the capsule to be gripped by a clamp.
- a folded web of filter material 12 within the capsule 1 is a folded web of filter material 12. Top edges 13 of the filter sheet are bonded to the inside walls of the front and back sheets 2,3 to divide the interior of the capsule into upstream and downstream regions.
- the web of filter material 12 supports a beverage preparation ingredient 14, such as ground coffee or leaf tea, in the upstream region.
- a beverage preparation ingredient 14 such as ground coffee or leaf tea
- the capsule contains about 15 g of ground coffee.
- the sheet of web material 12 is folded to form a W in cross-section.
- the capsule provides an oxygen and moisture-impermeable enclosure for the ingredient until it is used.
- Water dispersible coatings 16,17 containing functional ingredients are applied to regions of the inside surfaces of the front and back sheets 2,3 in the downstream region below the filter 12.
- the coatings 16, 17 comprise approximately 100mg of cocoa polyphenol extract dispersed in an edible gum base.
- the capsule 1 is introduced into a FLAVIA® dispensing machine, which comprises a clamp to grip the nozzle under the flange 1 1 , and a hollow injector tube with a mechanism to insert the hollow injector tube into the nozzle bore 9, thereby piercing the freshness barrier 10.
- the dispensing machine further comprises a source of hot water and a pump to inject the hot water through the injector tube into the capsule at about 0.5 bar gauge pressure.
- the beverage preparation ingredient 14 contained in the capsule 100 is mixed with the hot water and a beverage is brewed.
- the liquid pressure causes the apex of the W-folded filter sheet 12 to evert to provide a downwardly convex filter bed as shown in Fig. 3. Further details and advantages of the everting filter webs may be found in EP-A- 0179641.
- the bottom seam 7 of the capsule 1 opens under the effect of heat and liquid pressure inside the capsule (and optionally also external heating), and the beverage passes through the filter web 12 and the open bottom of the capsule and is collected in a receptacle located at a receptacle station situated directly below the capsule.
- the hot beverage dissolves the coatings 16, 17 to release the functional ingredients into the beverage as it flows through the downstream part of the capsule.
- the capsules and method provide beverages of superior quality, and furthermore provide the advantage of avoiding cross-contamination of the beverage preparation apparatus by successive beverages because the beverage does not contact any part of the apparatus after preparation.
- the functional ingredients are protected in the coatings against degradation prior to use of the capsule, and are then released completely into the beverage by dissolution of the coatings to provide a predictable dose of the functional ingredients in the beverage.
- the capsule 20 is a modification of the capsule described above. It comprises two flexible laminate sheets. Each laminate sheet comprises an inner thermoplastic sealing film. The front and back sheets are bonded together along edge seams 21 , top seam 22 and bottom seam 23. The bonding of the top and side edges is suitably by heat or ultrasonic bonding, to form a permanent weld between the sheets. At least a central region of the bottom seam 23 is bonded with a peelable adhesive that can be released by the action of heat and/or pressure of liquid inside the capsule, and/or assisted by heat applied from outside the capsule. A nozzle 24 is inserted into the top seam 22 of the capsule. The nozzle 24 has a central cylindrical bore sealed at the top by membrane 25.
- a further transverse permanently bonded seam 26 between the front and back sheets extends across the capsule intermediate the top and bottom transverse seals to divide the capsule into an upstream beverage ingredient chamber 27 and a downstream beverage collection/conditioning chamber 28.
- the intermediate seam 26 does not extend completely across the capsule.
- An unbonded gap is left in the intermediate seam to provide the outlet channel from the beverage preparation chamber 27.
- This gap is filled by a filtration element 29 formed by rolling up and flattening a sheet of filter sheet material.
- the filtration element 29 is bonded to the front and back sheets in the gap. The filtration element projects into the beverage preparation chamber 27 so as to increase the area available for filtration and to prevent filter blocking in use.
- the capsule provides an oxygen and moisture-impermeable enclosure for the coffee until the capsule is used.
- Water dispersible coatings 30 containing functional ingredients are applied to regions of the inside surfaces of the front and back sheets downstream of the filter plug in the beverage collection/conditioning chamber 28.
- the coatings comprise approximately 100mg of cocoa polyphenol extract dispersed in an edible gum base.
- capsules are intended in particular for the preparation of espresso-type coffee by brewing the coffee inside the capsule 20 under pressure, for example by injection of water at 5 to 20 bar gauge pressure.
- at least the ingredient compartment of the capsule is normally substantially completely enclosed by, and in contact with, the inner surfaces of a clamp cavity.
- the cavity supports the beverage brewing capsule enclosed within the cavity, thereby enabling high hydrostatic pressures to be developed inside the capsule without bursting the capsule.
- the clamp is further adapted to apply a pinch force to outlet of the beverage compartment and the filter plug so as to achieve an optimum combination of beverage escape rate from the capsule and back pressure to optimize beverage quality and brewing speed.
- the beverage passing through the outlet chamber dissolves the coatings to release the functional ingredients into the beverage.
- the beverage brewing capsule 40 is of a second conventional type as described for example in US-A-5840189, US5325765 and WO-A-2005026018.
- the capsule is in the form of a thermoformed plastic cup portion 42 having a flange 44 projecting circumferentially around the lip of the cup 42.
- a circular cover sheet 43 of thermoplastic sheet or flexible film is sealed to the flange 44 over the top of the cup 42 to provide an air-tight enclosure.
- a self-supporting cup-shaped wettable filter element 45 is disposed in the capsule.
- the top rim of the filter element and is permanently sealed between the flange 44 and the cover sheet 43.
- the filter element subdivides the capsule into upstream and downstream chambers: an upstream chamber for storing the beverage making ingredient 46 such as ground coffee, and a downstream empty chamber for accessing the beverage after the beverage outflow from the filter has been made by combining a liquid with the ingredient.
- Water dispersible coatings 47,48 containing functional ingredients are applied to the inside surface of the downstream region of the thermoformed cup 42.
- the coatings comprise approximately 100mg of cocoa polyphenol extract dispersed in an edible gum base.
- the capsule 40 is held in a clamp in a suitable beverage preparation apparatus.
- the clamp is equipped with an injector tube or other piercing means to pierce the cover sheet 43. Hot water is injected into the capsule to prepare coffee inside the capsule.
- the clamp further comprises a second injector tube or other piercing means to pierce the base of the cup 42, from where the coffee flows to a suitable receptacle.
- both the liquid injection and the escape of the coffee take place through respective injector and outlet tubes pierced through the cover 43.
- the beverage after it has passed through the filter contacts the coatings 47, 48, which dissolve in the beverage to release the functional ingredient into the beverage.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Non-Alcoholic Beverages (AREA)
- Packging For Living Organisms, Food Or Medicinal Products That Are Sensitive To Environmental Conditiond (AREA)
- Packages (AREA)
- Tea And Coffee (AREA)
- Apparatus For Making Beverages (AREA)
- Medicinal Preparation (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| GBGB1311912.8A GB201311912D0 (en) | 2013-07-03 | 2013-07-03 | Beverage preparation capsules for delivery of functional ingredients |
| PCT/GB2014/052015 WO2015001340A1 (en) | 2013-07-03 | 2014-07-02 | Beverage preparation capsules for delivery of functional ingredients |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3016889A1 true EP3016889A1 (en) | 2016-05-11 |
| EP3016889B1 EP3016889B1 (en) | 2018-12-26 |
Family
ID=48999437
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP14741652.3A Not-in-force EP3016889B1 (en) | 2013-07-03 | 2014-07-02 | Beverage preparation capsules for delivery of functional ingredients |
Country Status (8)
| Country | Link |
|---|---|
| US (1) | US20160311607A1 (en) |
| EP (1) | EP3016889B1 (en) |
| JP (1) | JP6449267B2 (en) |
| CN (1) | CN105358453B (en) |
| CA (1) | CA2916850A1 (en) |
| GB (1) | GB201311912D0 (en) |
| RU (1) | RU2673614C2 (en) |
| WO (1) | WO2015001340A1 (en) |
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| WO2016023730A1 (en) * | 2014-08-14 | 2016-02-18 | Nestec S.A. | Pack for extracting a coffee beverage |
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| CN107438580B (en) * | 2015-02-27 | 2020-03-10 | 安海斯-布希英博股份有限公司 | Device and container for preparing a beverage in a transparent chamber |
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| US9346611B1 (en) | 2015-03-20 | 2016-05-24 | Meltz, LLC | Apparatus and processes for creating a consumable liquid food or beverage product from frozen contents |
| US10314320B2 (en) | 2015-03-20 | 2019-06-11 | Meltz, LLC | Systems for controlled liquid food or beverage product creation |
| US9487348B2 (en) | 2015-03-20 | 2016-11-08 | Meltz, LLC | Systems for and methods of providing support for displaceable frozen contents in beverage and food receptacles |
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| KR102413859B1 (en) * | 2016-07-11 | 2022-06-28 | 김배용 | Composite containing porous material and polymer and its use using the same |
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| GB201706836D0 (en) | 2017-04-28 | 2017-06-14 | Mars Inc | Beverage preparation capsules |
| IT201800003814A1 (en) * | 2018-03-21 | 2019-09-21 | Rocco Papalia | FORMULATION BASED ON COFFEE POWDER |
| CN108623851A (en) * | 2018-04-20 | 2018-10-09 | 华侨大学 | A kind of globe artichoke polyphenol-chitosan nano starch gelatin composite membrane and its preparation method and application |
| US20220295816A1 (en) * | 2019-05-20 | 2022-09-22 | Kirk Gibson RUMMEL, III | Enhanced coffee or tea |
| US11724849B2 (en) | 2019-06-07 | 2023-08-15 | Cometeer, Inc. | Packaging and method for single serve beverage product |
| FR3110151B1 (en) * | 2020-05-14 | 2022-06-03 | Oreal | Hollow body, of the flexible pouch or bottle type, intended to contain at least one fluid product, in particular a degassing cosmetic product |
| CN114586955B (en) * | 2022-02-10 | 2024-05-28 | 中国农业科学院农产品加工研究所 | A method and application for reducing glycemic index and oil content of French fries |
| CN114521636B (en) * | 2022-02-10 | 2024-05-24 | 中国农业科学院农产品加工研究所 | A method for reducing the glycemic index of baked potato chunks and its application |
| DE102022124859A1 (en) * | 2022-09-27 | 2024-03-28 | David Mahlich | Portion capsule system for holding coffee powder and for preparing a coffee drink and method for producing such a portion capsule system |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB803486A (en) * | 1955-02-08 | 1958-10-29 | Phillip Percy Spiselman | Improvements in and relating to a filtering medium for use in brewing beverages |
| FI83197C (en) * | 1984-10-23 | 1991-06-10 | Mars G B Ltd | DRYCKPAOSE. |
| GB8612868D0 (en) * | 1986-05-27 | 1986-07-02 | Mars G B Ltd | Beverage packages |
| GB9715922D0 (en) * | 1997-07-28 | 1997-10-01 | Mars Uk Ltd | Beverage-producing packages |
| ITBO20030062A1 (en) * | 2003-02-13 | 2004-08-14 | Ima Spa | CAPSULE USED FOR THE PREPARATION OF AN INFUSED BEVERAGE. |
| US20050051478A1 (en) * | 2003-09-10 | 2005-03-10 | Basil Karanikos | Beverage filter cartridge |
| GB2406305B (en) * | 2003-09-29 | 2006-04-19 | Mars Inc | Compostable packaging materials and methods |
| GB2433422A (en) * | 2005-12-21 | 2007-06-27 | Mars Inc | Beverage preparation capsules |
| CA2645419C (en) * | 2006-03-13 | 2016-10-25 | The Hershey Company | Steeped cocoa compositions and functional cocoa beverages made from them |
| US20110268846A1 (en) * | 2006-03-13 | 2011-11-03 | Malathy Nair | Steeped cocoa compositions and functional cocoa beverages made from them |
| NL2000098C2 (en) * | 2006-06-12 | 2007-12-13 | Drie Mollen Holding B V | Coffee bag. |
| PL2583595T3 (en) * | 2009-03-27 | 2018-09-28 | Koninklijke Douwe Egberts B.V. | Beverage dispensing system |
| GB2480827B (en) * | 2010-06-01 | 2012-06-06 | Kraft Foods R & D Inc | Improvements in the preparation of beverages and liquid food products |
| GB2480829B (en) * | 2010-06-01 | 2013-04-17 | Kraft Foods R & D Inc | Beverage cartridge |
-
2013
- 2013-07-03 GB GBGB1311912.8A patent/GB201311912D0/en not_active Ceased
-
2014
- 2014-07-02 RU RU2016103326A patent/RU2673614C2/en not_active IP Right Cessation
- 2014-07-02 CN CN201480038332.7A patent/CN105358453B/en not_active Expired - Fee Related
- 2014-07-02 EP EP14741652.3A patent/EP3016889B1/en not_active Not-in-force
- 2014-07-02 WO PCT/GB2014/052015 patent/WO2015001340A1/en not_active Ceased
- 2014-07-02 JP JP2016522874A patent/JP6449267B2/en not_active Expired - Fee Related
- 2014-07-02 CA CA2916850A patent/CA2916850A1/en not_active Abandoned
- 2014-07-02 US US14/985,489 patent/US20160311607A1/en not_active Abandoned
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| Publication number | Publication date |
|---|---|
| EP3016889B1 (en) | 2018-12-26 |
| US20160311607A1 (en) | 2016-10-27 |
| JP2016532604A (en) | 2016-10-20 |
| GB201311912D0 (en) | 2013-08-14 |
| CN105358453A (en) | 2016-02-24 |
| JP6449267B2 (en) | 2019-01-09 |
| WO2015001340A1 (en) | 2015-01-08 |
| CA2916850A1 (en) | 2015-01-08 |
| RU2016103326A (en) | 2017-08-08 |
| CN105358453B (en) | 2018-03-27 |
| RU2673614C2 (en) | 2018-11-28 |
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