Preprocessing of hot drink capsules and cosmetic product packaging prior to recycling and recovery

DE602017090780T2Inactive Publication Date: 2025-07-23CENT DE RECH METALLURGIQUES CENT VOOR RES IN DE METALLURGIE
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Patent Information

Application Number
DE602017090780
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2017-11-13
Publication Date
2025-07-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Current methods for recycling aluminum and organic residues from used hot drink capsules and cosmetic/pharmaceutical packaging are inefficient, leading to contaminated aluminum that is difficult to recycle and limited organic separation due to moisture and hermetic sealing, resulting in low-quality recovered materials.

Method used

An industrial process using a rotating intensive mixer for pre-conditioning and cleaning, involving centrifugation, attrition, and double sieving to separate aluminum and organic residues, followed by recycling aluminum and composting or energy recovery of the organic matter.

Benefits of technology

Achieves faster, more efficient, and cost-effective separation and purification of aluminum and organic residues, producing high-quality recycled aluminum and usable organic materials.

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Description

Subject of the invention

[0001] The present invention relates to the field of recycling capsules used for the production of pressurized hot drinks (coffee, tea, other infusions) as well as to the packaging of cosmetic or pharmaceutical products. More particularly, the aim is an original operation of pre-conditioning and purification of these capsules and packaging according to two separate flows: the aluminum container on the one hand and the residual content consisting of wet or dry organic matter on the other hand (coffee or tea grounds, creams, liquids, etc.).

[0002] In this way, the aluminium, freed from these organic materials, can enter a recycling circuit (see for example the previous Belgian application BE 2016 / 5672), while the organic residue can be used as an alternative source of carbon, fertiliser or ecological fuel. State of the art

[0003] More and more municipal waste disposal centers, municipalities, businesses, and individuals have dedicated containers for collecting aluminum and / or plastic capsules for hot drinks such as coffee, tea, or other infusions. These can also be deposited directly by communities or individuals at various points of sale, or even returned to the postal service during mail delivery. This approach is now encouraged by capsule manufacturers in order to centralize the processing of generated waste at an industrial level. It also appears that more and more companies in the cosmetics sector are, in turn, recovering their used aluminum containers, or those that have suffered a manufacturing defect.

[0004] Currently, hot drink capsules arrive at sorting plants after being collected from various collection centers. These capsules undergo a grinding stage followed by a screening stage. The aluminum particles, stripped of only part of their contents, are destined to be remelted in specialized units. The organic residue is destined for a so-called ecological recovery route (energy source or composting). On the other hand, aluminum packaging from cosmetic or pharmaceutical companies is returned or kept at the manufacturer before being destroyed or resold at very low prices (or even at negative cost).

[0005] However, current recovery methods are not optimal and the sometimes still high level of unseparated organic residue from aluminium packaging prevents it from being recycled correctly.

[0006] Most of the state-of-the-art documents describe machines and processes for separating aluminium and / or plastic capsules from the coffee grounds or other organic residues they contain, often in a domestic appliance, therefore located close to the user and sometimes within the high-pressure machine itself.

[0007] US 2010 / 0212520 A1 discloses a method for separating aluminum from used coffee capsules by emptying them of their grounds and reducing the size by crushing them for recycling. The device consists of an emptying piston for stamping the body of the used capsule in order to turn the envelope. The grounds are ejected by bursting the perforated wall and collected in a first container. A lateral displacement piston transfers the empty capsule to a crushing piston. Then, the crushed capsule is collected in the second container. The device is intended to separate coffee residues from aluminum.

[0008] Document FR 2 937 627 A1 discloses a device for turning over used capsules and separating them from the coffee they contain. This device comprises a locking flange surrounding the bottom of a capsule to hold this capsule between a lower tube and an upper tube. A piston slides inside the upper tube so as to turn the capsule over and give it a shape opposite to its original one. An upper edge of the lower tube is sharp to facilitate breaking the capsule seal. The capsules thus treated can be stacked in the original packaging for better packaging, better collection or easier transport. The device can be used to create an individual, collective or even industrial machine.

[0009] Document DE 10 2008 041 793 A1 relates to a device comprising, for recycling purposes, a cutting unit for partially cutting the lid of a single-use powdered beverage capsule, in particular a used coffee capsule, and a holding unit for receiving the capsule so as to be automatically held or clamped. The device moves the capsule, which is placed in the holding unit, towards the cutting unit, in order to cut the lid. This device allows separate ecological recovery of the constituents of the beverage capsule.

[0010] The American company Keurig has also developed a small device for holding and rotating the capsules, preferably of the K-Cup ® type, which allows the plastic cup to be manually separated from the aluminium lid, for recycling, and from the filter containing the coffee grounds, for composting.

[0011] Document EP 2 291 312 B1 discloses, in the context of separating a used capsule packaging, in particular made of metal such as aluminum and / or plastic, from a food or beverage ingredient contained in the capsule, with a view to separately collecting the opened capsule packaging and the capsule ingredient for processing by usual recycling channels, the use of an apparatus comprising means for opening the capsule packaging introduced into said apparatus and for removing the capsule ingredient from the open capsule packaging, the opening and removing means being arranged to be rotated relative to the inserted capsule packaging and to intercept the capsule packaging; means for separating the open capsule packaging from the capsule ingredient; means for collecting the open capsule packaging; and means for collecting the capsule ingredient.In particular, the opening and removing means may comprise a chopping, shredding or grinding device cooperating with an Archimedes screw to drive the capsule onto the chopping, shredding or grinding device. These means may comprise a rotatable drive shaft such as a vertical shaft from which one or more impacting and / or cutting members extend radially. In particular again, the separating means may comprise at least one mesh screen or a screen consisting of a perforated plate-like member, to allow the passage of the capsule ingredient and to prevent the passage of the capsule packaging or parts thereof.

[0012] Document WO 2016 / 120667 A1 discloses a domestic appliance for processing used capsules or cartridges, for example containing coffee grounds or other infusions, with a view to separating the organic matter and the remaining packaging.

[0013] None of these disclosures provide an industrial solution for the separation, treatment or purification of the corresponding waste.

[0014] Moreover, currently, even when an industrial process for separating coffee or tea grounds from aluminum and / or plastic capsules has been developed by capsule recycling companies using grinding and screening machines, for example, the recovered aluminum is often not of good quality and is difficult to accept by foundries because it is contaminated with plastic residues, in addition to organic waste. Performance in terms of grounds separation is limited due to the moisture contained in the capsules, especially since these capsules are often collected in hermetically sealed plastic bags. Aims of the invention

[0015] The present invention aims to provide a new, more efficient, faster and more compact solution for the pre-conditioning and cleaning of used aluminum hot drink capsules (coffee, tea or others) and aluminum cosmetic and pharmaceutical product packaging (cream tubes, bottles, aerosols, etc.) with a view to recycling and recovering their respective constituents.

[0016] The invention aims in particular to propose an innovative alternative to the current pretreatment of capsules and packaging. The treatment cycle for used hot drink capsules should therefore be faster, more efficient, less expensive and reduce the waste of materials and energy. Main characteristic elements of the invention

[0017] The present invention relates to an industrial process for the pretreatment, packaging, recycling and recovery of used capsules in the production of pressurized hot drinks and packaging for cosmetic or pharmaceutical products, comprising a container at least partly made of aluminum and contents in the form of organic residues, said process comprising the following steps: the capsules or packaging are collected; the capsules or packaging are fed into a rotating industrial intensive mixer; the capsules or packaging are torn or eviscerated by centrifugation and attrition during at least one pass through the intensive mixer, giving rise to a mixture of container residues of different sizes and organic residues released from the capsules or packaging, the rotation time of the mixing tools of the intensive mixer being between 15 and 45 seconds; said mixture is screened to separate the container residues on the one hand and the organic residues on the other hand, the screening step comprising at least one pass through the first sieve followed by a pass through the second sieve, the aluminium being recovered in the rejects from the sieves and the organic part being found mainly in the sieve;and the aluminium container residues obtained by the aforementioned screening are recycled in a melting furnace and the organic residues are recovered in the form of composting, energy recovery or as an alternative source of carbon.;

[0018] Said rotary industrial intensive mixer used according to the invention comprises: a large-capacity rotating tank for conveying the capsules or packaging into an area comprising internal tools; one or more internal mixing tools arranged eccentrically in the tank, the natural rotation speed of which is between 70 and 4500 rpm, preferably between 1000 and 2000 rpm, possibly countercurrent to the rotation of the tank, to ensure the ripping and attrition of the capsules or packaging; a bottom scraper which ensures a continuous vertical movement of a stream of mixture, preventing any adhesion to the wall and bottom of the tank and making it possible to accelerate the emptying of the tank at the end of the mixing time. The method according to the invention also uses screening means, at the outlet of the intensive mixer, comprising a first sieve whose mesh size is between 6 and 10 mm and a second sieve whose mesh size is between 1 and 3 mm.

[0019] According to the invention, the screening step comprises a double passage in series respectively on a first sieve and on a second sieve, the mesh size of the second sieve being smaller than the mesh size of the first sieve.

[0020] The rotating tank rotates slowly and its capacity ranges from a few dozen liters (typically 40 liters) to a few cubic meters (up to 7 m 3 for an Eirich type R intensive mixer). The internal eccentric mixing tools are generally in the form of blades or spikes.

[0021] The treatment method according to the invention is particularly suitable when the organic residues are coffee grounds, tea or other infusions, or even fluids or emulsions of cosmetic or pharmaceutical products.

[0022] The treatment method according to the invention is particularly suitable when the hot drink capsule container comprises, for example, a cup to which a lid is sealed, both of which can preferably be made of aluminum, aluminum / plastic composite, aluminum / plastic / paper composite, or when the packaging of cosmetic or pharmaceutical products comprises, for example, a container in the form of an aluminum tube, bottle or aerosol.

[0023] The treatment method according to the invention is particularly suitable when the total mass of each capsule is for example between 2 and 20 g and the mass proportion of container residues in the starting residue mixture (in the capsules before opening) is preferably between 5 and 40%, more preferably between 10 and 30%, depending on the filling rate and the humidity rate of the aforementioned mixture.

[0024] Passing through the first sieve retains capsule pieces and allows organic residues and capsule residues to pass through, while passing through the second sieve retains aluminum flakes and allows organic residues to pass through.

[0025] Capsule residues and flakes contain dry residues of aluminum and / or plastic and / or paper, dry organic residues and water.

[0026] According to a particular embodiment, the method of the invention further comprises at least two passes through the intensive mixer, the first pass generating the separation of the container residues in the rejects from the screens for aluminium and of the organic part mainly in the sieve, the intensive mixer being fed for the second pass by the rejects from the first screen generated during the first pass, the second pass in turn generating container residues in the form of aluminium in the rejects from the screens and in the form of organic residues mainly in the sieve. Brief description of the figures

[0027] There Figure 1 schematically represents the respective phases of harvesting (A) the capsules, tearing / eviscerating (B) the capsules and screening (C) the material obtained after the previous phase. Figure 2schematically represents the steps of a first embodiment of the method according to the present invention. The Figure 3 schematically represents and with a detailed mass balance the steps of a second embodiment of the method according to the present invention. Description of preferred embodiments of the invention

[0028] The present invention relates to a method for (pre)conditioning and cleaning used aluminum and / or plastic capsules or cartridges for producing pressurized hot drinks or containers and packaging for cosmetic or pharmaceutical products. The capsules, cartridges or other containers targeted by the method of the invention are typically closed containers, intended for extraction under pressure, containing ingredients for preparing a drink but also containers and packaging for cosmetic and pharmaceutical products such as bottles, aerosols or tubes.

[0029] Containers for hot drinks generally comprise a cup with an upper face and a side wall having a substantially truncated cone shape and a lower face having a diameter greater than the upper face, the lower face being a seal welded to the periphery of the lower rim of the cup. The cup and its seal may be made of a flexible material impermeable to oxygen such as aluminum, an aluminum / plastic composite, an aluminum / plastic / paper (or cardboard) composite, pure or multi-layer plastic, etc. (see for example EP 0 512 468 A1). In the remainder of the description, the term capsule will be used to designate indifferently any suitable container such as a capsule, cartridge, etc.

[0030] The method of the invention is essentially and mainly based on a combination of the following two steps: tearing / "evisceration" of the capsules by centrifugation specifically in an intensive mixer ( FIG. 1B ); screening of the material ( FIG. 1C ).

[0031] A first embodiment of the method according to the present invention is shown schematically in FIG. 2 .

[0032] The collected aluminum capsules, wet or dry depending on the collection and / or storage history, and which will feed the intensive mixer, have the following characteristics: total mass of the capsule: 3 to 15 g per capsule mass proportion of aluminum (depending on humidity level and filling): 10 to 30%.

[0033] The purpose of the intensive mixer 1 is and must be adapted to release, in a very short time (a few tens of seconds), the organic residue contained in the capsules 10 by their ripping and attrition thanks to the shocks generated in the mixer 1, by contact with internal tools such as blades, spikes, etc. rotating at very high speed as well as by the shocks of the material itself.

[0034] The intensive mixer 1 can, for example, be an industrial intensive mixer such as those from the Eirich brand, which comprises three components that can be flexibly adapted to the requirements of the mixing process (not shown): a slow rotating tank, with a capacity ranging from a few tens of liters to several cubic meters, representing respectively from approximately 1,000 to approximately 100,000 hot drink capsules processed simultaneously, which conveys the mixture into the area of the mixing tools, one or more internal mixing tools arranged eccentrically, the direction of rotation and speed of which, ranging from a few hundred to several thousand revolutions / minute, can be optimally adapted to the respective application and a bottom scraper which ensures a continuous vertical movement of the mixture flow, preventing any adhesion to the wall and the bottom of the tank and making it possible to accelerate the emptying of the tank at the end of the mixing time.

[0035] Furthermore, this step is not only highly efficient but also very fast compared to a conventional grinding step. The objective is achieved in less than 30 seconds, on a laboratory mixer of 40 liters of processed batch. This result should be equivalent on larger capacity mixers. The impact performance, and therefore the separation performance of the intensive mixer, depends on the angular speed of the tool and the diameter of the mixer tank.

[0036] The second phase of the process consists of screening the material, at the outlet of the intensive mixer 1, twice in series (i.e. one after the other), using sieves 2, 3 with meshes of decreasing size (for example 7 mm and 2 mm). The organic part is found mainly in the sieve 20, while the aluminum is recovered in the rejects from the sieves 11, 12.

[0037] On the one hand, this organic part can be used for composting or ecological energy (biogas, etc.), but also as an alternative source of carbon in the steel industry (self-reducing ore briquettes, etc.) 5. On the other hand, the aluminium from the capsules and packaging is, thanks to this technique, sufficiently purified of its content to join a recycling channel 4 as described for example in the aforementioned patent application (see BE 2016 / 5672).

[0038] In a second embodiment of the method of the invention shown schematically in FIG. 3 , a second pass of the capsules through the process is planned to further improve separation. FIG. 3 also gives an example of mass distribution of constituents 11, 12, 13, 14, 20 separated by the process. The two passes have a duration of approximately 30 seconds.

[0039] In a third embodiment of the method of the invention, it is possible to consider the passage of aluminum containers from cosmetic and pharmaceutical products, in the form of bottles, tubes or aerosols. The same method as above is envisaged for treating these products, namely: release of the contents by evisceration and centrifugation caused in the enclosure of the intensive mixer, followed by screening of the materials in order to obtain aluminum purified from its organic content.

[0040] Thus, the results of pretreatment by intensive mixer are excellent for short residence times in comparison with the current pretreatment system in collection companies.

Claims

1. Industrial process for the pre-treatment, conditioning, recycling and recovery of used capsules (10) in the production of hot beverages under pressure or packaging for cosmetic or pharmaceutical products (10), comprising a container made at least partly of aluminium and a content in the form of organic residues, said process using an intensive industrial rotary mixer (1) comprising: - a slow rotating tank, with a capacity ranging from a few dozen litres to several cubic metres, for conveying the capsules or packaging into an area with mixing tools; - one or more internal mixing tools arranged eccentrically in the tank and having their own rotation speed relative to the tank, possibly in counter-current to the rotation of the tank, to ensure the bursting and attrition of the capsules or packaging; - a bottom scraper that ensures the continuous vertical motion of a mixing flow, preventing any adhesion to the wall and bottom of the tank and allowing to empty the tank more quickly at the end of the mixing time; as well as screening means, at the outlet of the intensive mixer (1), comprising a first screen (2) and a second screen (3), the mesh size of the first screen (2) being between 6 and 10 mm and the mesh size of the second screen (3) being between 1 and 3 mm; said process comprising the following steps: - the capsules or packaging are collected; - the industrial rotary intensive mixer (1) is fed with the capsules or packaging (10); - the capsules or packaging (10) are torn or burst by centrifugation and attrition during at least one pass through the intensive mixer (1), the internal tools rotating at a speed of between 70 and 4,500 rpm, preferably between 1000 and 2000 rpm, to obtain a mixture of container residues of different sizes and organic residues (20) released from the capsules or packaging (10), the rotation time of the tools of the intensive mixer (10) during each pass being between 15 and 45 seconds; - the mixture is screened to separate the container residues on the one hand and the organic residues on the other hand, the screening step comprising at least one pass through the first screen (2) followed by a pass through the second screen (3), the aluminium being recovered from the screen rejects (11, 13; 12, 14) and the organic fraction being found mainly in the screenings (20); - the aluminium container residues obtained by screening (11, 13; 12, 14) are recycled in a melting furnace (4) and the organic residues (20) are recovered in the form of compost, energy recovery or as an alternative source of carbon (5).

2. Process according to Claim 1, characterised in that it comprises at least two passes through the intensive mixer (1), the first pass separating the container residues into the screen rejects (11, 12) for aluminium and the organic fraction mainly in the screenings (20), the intensive mixer (1) being fed for the second pass by the rejects (11) from the first screen generated during the first pass, the second pass in turn generating container residues in the form of aluminium in the screen rejects (13, 14) and in the form of organic residues mainly in the screenings (20).