Bag for liquid and powdered substances with a soluble surface section, method and use therewith and use of a soluble surface section
Patent Information
- Application Number
- DE502018015902
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2017-03-27
- Filing Date
- 2018-03-22
- Publication Date
- 2025-07-17
- Estimated Expiration
- 2038-03-22
AI Technical Summary
Existing packaging solutions for large quantities of building materials, pesticides, and fertilizers fail to effectively minimize the release of harmful dust and vapors into the air, necessitating constant protective equipment and higher production costs for modified formulations or machinery.
A bag with a water-soluble polymer surface section that dissolves upon immersion in water, allowing contents to be emptied underwater, thereby minimizing dust and vapor release, and can be produced using conventional machinery with minimal modifications.
The bag effectively prevents or minimizes the formation of respirable dust and vapors, ensuring worker safety without the need for constant protective equipment and reducing production costs by using existing manufacturing processes.
Description
[0001] The present invention relates to a bag for liquid and powdered substances, a method for removing a liquid or powdered substance from such a bag, and a method for producing such a bag. The invention further relates to the use of a surface section made of a water-soluble polymer as part of a bag for liquid or powdered substances to reduce the release of unpleasant odors and / or harmful substances into the air.
[0002] Mineral-based building materials such as cement, quartz sand and other substances such as pesticides and fertilizers are often dissolved or dispersed in water before they are further processed. These substances are often packaged in bags or similar. Liquids as well as powders are often released into the atmosphere, for example as vapors or (respirable) dust when the contents of the bags are poured into water. Appropriate protective equipment would be necessary to prevent personal exposure. On construction sites where large numbers of people are working at the same time, this is difficult to implement, as large quantities of building materials are often handled and this would lead to constant exposure to dust, meaning that protective equipment would have to be worn at all times. The same applies to pesticides and fertilizers, which may be incorporated into the corresponding agricultural machinery.must be filled into appropriate garages and longer ventilation of these garages would be necessary.
[0003] Fertilizers, pesticides, and mineral dusts, such as cement dust, quartz dust, etc., to use the examples mentioned above, are often harmful to health, partly due to the concentrations prevailing in the situations mentioned above. Depending on the substance, for example, aluminum powder for aerated concrete, dust explosions can also occur if such dusts are released (which has previously been avoided, for example, by suspending them in oils, glycol ethers, etc.).
[0004] Legal regulations regarding health and safety at work, particularly exposure limits, have become stricter in recent years, and further tightening is expected in the future. Modifying formulations accordingly to contain fewer volatile components is conceivable in principle; for example, compressing powders into pellets is a theoretical option. However, not all powders can be compressed into stable pellets that do not form dust even after extended transport and the associated vibrations. Furthermore, adapting the formulation is not possible in all cases, at least not without significantly increasing costs.
[0005] Another option is to provide innovative packaging that minimizes or avoids the generation of vapors or dust.
[0006] Packaging made of water-soluble polymers, such as polyvinyl alcohol, is common in detergents. The amount of detergent required for one wash is poured into a small enough bag made of the water-soluble polymer, and this container is then added to the laundry. The container then dissolves completely, releasing the detergent.
[0007] From EP 0 406 170 A1 and JP 2001 097392 A, packages are known whose bottom openings are closed by means of seams or seals made of water-soluble polymers, for example polyvinyl alcohols.
[0008] For the above-mentioned building materials, pesticides, fertilizers, etc., among others, larger containers are often required (up to 25 kg and possibly even more). Due to their mechanical stability, corresponding bags made of water-soluble polymers such as polyvinyl alcohol would have to be thicker, resulting in a longer dissolution time, which is undesirable. Alternatively, outer packaging would be conceivable to ensure mechanical stability. However, producing corresponding two-layer bags, whether conventionally or using the form-fill-seal (FFS) process, requires significantly higher equipment and therefore financial expenditure. In the case of the FFS process, for example, two machines connected in series would be necessary.
[0009] Consequently, it is the object of the present invention to provide a packaging which is also suitable for higher weights, avoids or at least minimizes the release of unpleasant odors and / or harmful substances into the air and at the same time can be produced with existing machines with little or no modification.
[0010] The invention therefore provides a bag according to claim 1.
[0011] The bag according to the invention can be immersed in a container of water in such a way that the surface section (F) dissolves, allowing the bag to be opened and emptied partially or completely underwater. The materials in the bag therefore come into contact with water first, thus preventing or largely minimizing the formation of dust, particularly respirable dust and vapors (in the case of liquids). Furthermore, the bag can be manufactured using all conventional processes, with minimal or even no modification of the machinery. Adapting the formulations of the materials packaged in the bag, which is complex or possibly even impossible, is therefore unnecessary.
[0012] In the present invention, "area portion" means a portion of the surface of the bag. Consequently, the term "area portion" excludes the possibility that the entire bag is composed of the water-soluble polymer.
[0013] "Direct contact with the contents" in the present invention means that the surface portion (F) covers a portion of the bag that is recessed from the water-insoluble paper and / or water-insoluble polymer, so that the water-soluble polymer in the surface portion (F) forms the direct boundary of the contents from the environment during use. Solutions in which the surface portion (F) is used as a closure, adhesive, or sewing material for sealing adjacent or superimposed portions of water-insoluble paper and / or water-insoluble polymer are therefore expressly excluded from the present invention.
[0014] The surface section (F) is located on the bottom surface of the bag.
[0015] The bags have a standing bottom, and some bags have a so-called valve bottom through which the bag is filled. For example, conventional bags for cement or dry mortar mix may have a standing bottom, allowing the bag to rest on the ground while the top of the bag is opened, and the contents are then poured into a bucket or concrete mixer.
[0016] In the present invention, the bag can also have a standing bottom and a valve bottom, wherein the valve bottom or the standing bottom contains or consists of the surface section (F). For this purpose, for example, the surface section can be applied to the valve bottom or the standing bottom before filling the bag, or the surface section can be located laterally on the bag, so that the bag can be conventionally welded or wrapped.
[0017] The conventional manufacturing process for such bags therefore does not need to be changed; only the materials used need to be adapted accordingly. Since self-supporting bases are usually manufactured using a separate base sheet, production can proceed in the conventional manner. Because the surface section (F) is completely embedded in the self-supporting base, only the base sheet needs to be replaced, for example.
[0018] The stand-up base does not consist entirely of the surface section (F). The reason for this is that bags with a stand-up base consisting entirely of the surface section (F) cannot be manufactured mechanically using conventional paper bag machines.
[0019] In a bag with a stand-up bottom, the bottom surface of the bag consists of a water-insoluble paper and / or water-insoluble polymer and the surface section (F).
[0020] The surface area (F) represents more than 11.5% and not more than 90% of the bag's bottom area. More preferably, the surface area (F) represents 15% or more and not more than 75%, even more preferably 20% or more and not more than 55%, and most preferably 30% or more and not more than 45% of the bag's bottom area. If the surface area (F) represents 11.5% or less of the bottom area, the resulting bag opening is too small to ensure rapid and complete emptying of the bag.
[0021] If the surface section (F) accounts for more than 90% of the floor area, the stability of the bag cannot be guaranteed.
[0022] The bag may have a carrying handle. If the bag has a valve and a base and a carrying handle, for example as described above, the carrying handle is preferably located at the top of the bag when the bag is upright and viewed horizontally.
[0023] Alternatively, the bag can be a block bottom bag, a block bottom pouch, a cross bottom bag, a valve side gusset bag, a fold bottom bag, a mini seal bag or a sealed side bag.
[0024] Preferably, the surface portion (F) makes up no more than 35% of the surface area of the bag, more preferably no more than 25% of the surface area of the bag, even more preferably no more than 15% of the surface area of the bag. It is further preferred that the surface portion (F) makes up at least 2% of the surface area of the bag, more preferably at least 5% of the surface area of the bag, even more preferably at least 7.5% of the surface area of the bag.
[0025] The material that also forms the surface section (F) can overlap with the other material(s) of the sack, or partial areas of the material that also forms the surface section (F) can be coated in such a way that the material does not dissolve or dissolves only slowly at the coated points. The latter can be the case, for example, when a film made of water-soluble polymer, for example a film coated with LDPE at the edges, is used as the base sheet in conventional valve bottom sacks. The LDPE coating may simplify the connection to other materials of the sack, whereby the overlap does not have to be identical to the other materials from which the sack is made, nor does the coating have to be identical.
[0026] The area of the surface section (F) refers to the area of the opening that is created after dissolving the water-soluble polymer (see also Figure 1 ).
[0027] In principle, the present invention is applicable to bags of any size. Therefore, the bag of the present invention preferably has a volume of at least 500 ml, more preferably at least 1.00 l, and even more preferably at least 5.00 l. Typically, the volume of the bag is not more than 70.0 l, preferably not more than 30.0 l.
[0028] The surface section (F) can comprise one layer of water-soluble polymer or multiple layers of water-soluble polymer, typically no more than two layers of water-soluble polymer. However, it is preferred if the surface section (F) has only one layer of water-soluble polymer.
[0029] The water-soluble polymer is preferably selected from polyvinyl alcohol homo- or copolymers and partially saponified polyvinyl alcohol homo- or copolymers.
[0030] Particularly preferred water-soluble polymers are preferably based on a polyvinyl alcohol or a polyvinyl alcohol copolymer whose molecular weight is in the range from 10,000 to 1,000,000 g / mol, preferably from 20,000 to 500,000 g / mol, particularly preferably from 30,000 to 100,000 g / mol and in particular from 40,000 to 80,000 g / mol.
[0031] Polyvinyl alcohol is usually produced by hydrolysis of polyvinyl acetate, since the direct synthesis route is not possible. The same applies to polyvinyl alcohol copolymers, which are produced from polyvinyl acetate copolymers. It is preferred if at least one layer of the surface section (F) comprises a polyvinyl alcohol whose degree of hydrolysis is 70 to 100 mol%, preferably 80 to 90 mol%, particularly preferably 81 to 89 mol%, and in particular 82 to 88 mol%. If the surface section (F) has several layers of water-soluble polymer, it is particularly preferred for all layers to comprise a polyvinyl alcohol whose degree of hydrolysis is 70 to 100 mol%, preferably 80 to 90 mol%, particularly preferably 81 to 89 mol%, and in particular 82 to 88 mol%.
[0032] A polymer selected from the group comprising acrylic acid-containing polymers, polyacrylamides, oxazoline polymers, polystyrenesulfonates, polyurethanes, polyesters, polyethers, polylactic acid, or mixtures of the above polymers may additionally be added to the surface section (F). If present, the proportion of these polymers in the surface section (F) is not more than 15 wt.%, more preferably not more than 10 wt.%.
[0033] In addition to vinyl alcohol, the polyvinyl alcohol copolymers may comprise dicarboxylic acids as further monomers, for example itaconic acid, malonic acid, succinic acid and mixtures thereof, with itaconic acid being preferred.
[0034] In addition to vinyl alcohol, the polyvinyl alcohol copolymers may contain an ethylenically unsaturated carboxylic acid, its salt or its ester, for example acrylic acid, methacrylic acid, acrylic acid esters, methacrylic acid esters or mixtures thereof.
[0035] Suitable water-soluble polymers or films include films from the Solublon series (Aicello Chemicals), in particular type KC, the Selvol product series from Sekisui and the Hi-Selon series from Nippon Gohsei.
[0036] Preferably, the surface section (F) consists of a film with a film thickness of more than 40 µm to 200 µm, more preferably with a film thickness of 45 µm to 175 µm, even more preferably from 50 µm to 150 µm and most preferably from 55 µm to 100 µm.
[0037] The film may comprise or consist of one or more layers of the water-soluble polymer, as described above.
[0038] According to the invention, the bag contains or consists of water-insoluble paper and / or water-insoluble polymer, except for the surface section (F). It is particularly preferred that the water-insoluble paper be selected from recycled paper or kraft paper, even more preferably kraft paper, and the water-insoluble polymer be selected from polypropylene, polyacrylate, polyethylene terephthalate, or polyethylene, in particular polyethylene, for example LDPE or HDPE. The water-insoluble paper and the water-insoluble polymer can also be multi-layered. For example, the water-insoluble paper can be coated with a polymer, e.g., an inner film.
[0039] The bag may, for example, be a paper bag or a plastic bag having the surface portion (F) according to the present invention.
[0040] Paper bags usually comprise a two- or three-layer material, optionally further containing or consisting of an inner layer of polyethylene.
[0041] Plastic bags can be, for example, (composite) film bags or woven bags. In the case of woven bags, a polyethylene liner is typically used, which has the surface section (F) of the present invention.
[0042] (Composite) film bags usually have one or more polymer layers.
[0043] The attachment of the surface section (F) to the bag material is known in the art. For example, the surface section (F) can be cold-welded, diffusion-bonded (often used synonymously), or solvent-welded to the water-insoluble paper and / or water-insoluble polymer, for example, using tetrahydrofuran, starch adhesive, dispersion adhesive, or hot-melt adhesive. Alternatively, the surface section (F) can be attached by mechanical interlocking or pressing.
[0044] In one embodiment, the bag may contain sections of water-insoluble paper, water-insoluble polymer and the surface section (F).
[0045] In a particularly preferred embodiment, the sack is a paper sack, preferably made of kraft paper, with a bottom surface consisting of a portion of water-soluble polymer, in particular polyethylene, for example LDPE or HDPE, and the surface portion (F) selected from polyvinyl alcohol homo- or copolymers and partially saponified polyvinyl alcohol homo- or copolymers. In this embodiment, the surface portion (F) makes up more than 11.5% and not more than 90%, more preferably 15% or more and not more than 75%, even more preferably 20% or more and not more than 55%, and most preferably 30% or more and not more than 45% of the bottom surface of the sack.
[0046] In this particularly preferred embodiment, the bottom surface is preferably bonded to the paper surface of the bag over its entire surface on all sides, possibly with a recess at the paper corner fold of the bag. The bond can be achieved by cold bonding, diffusion bonding, solvent welding, for example using tetrahydrofuran, bonding with starch adhesive, dispersion adhesive, or hot melt adhesive, mechanical interlocking, stitching, or pressing.
[0047] The surface portion (F) of the bag may be completely covered with a cover sheet that is removable from the surface portion. Such a cover sheet may protect the surface portion (F) from mechanical damage or contact with moisture, if necessary.
[0048] In principle, all methods for attaching and removing the cover sheet that are also suitable for closing and opening the bag are suitable. Accordingly, in the present invention, the bag is not opened directly, but instead the underlying surface section (F) is exposed.
[0049] For example, an opening aid such as that described in EP 2 132 103 B1, which may be a tear-open tape or tear-open thread and extends beyond the inner bar at one end of a paper bag at least at one surface end, can be used. The tear-open thread enables easy opening, in this case, easy exposure of the water-soluble surface section F) of any cover sheet present without the need for tools.
[0050] The cover sheet can also be glued or sewn.
[0051] It is further preferred that the bag contains or consists of the same material except for the surface section (F) and the removable cover sheet.
[0052] In a preferred embodiment, the bag contains or consists of water-insoluble paper, in particular kraft paper, except for the surface section (F), and the water-soluble polymer is preferably selected from polyvinyl alcohol homo- or copolymers and partially saponified polyvinyl alcohol homo- or copolymers according to the present invention.
[0053] In a preferred embodiment, the bag contains, except for the surface section (F), water-insoluble polymer, in particular polyethylene, for example LDPE or HDPE, or consists thereof, and the water-soluble polymer is preferably selected from polyvinyl alcohol homo- or copolymers and partially saponified polyvinyl alcohol homo- or copolymers according to the present invention.
[0054] The bag preferably contains a liquid or powdery substance, preferably the liquid substance selected from pesticides, for example plant protection products or biocides and the powdery substance selected from organic, inorganic and mineral powder products, such as dry mortar mix, cement, quartz sand, in particular cement.
[0055] The present invention further relates to a method for removing a liquid or powdery substance from a bag as described above containing a liquid or powdery substance, the method comprising the following steps in the order given a) optionally at least partially exposing the surface section (F), if a cover sheet is present, b) introducing the bag into a container containing water in such a way that the surface section (F) is at least partially, preferably completely below the water line, c) waiting until the surface section (F) has at least partially dissolved, d) pulling the bag out of the container, wherein the opening which was created after the at least partial dissolution of the surface section (F) is at least partially, preferably completely below the water line during the pulling out.
[0056] A removable cover sheet, if present, does not have to be completely separated from the bag. To implement the invention, it is sufficient if the surface section (F) is partially exposed. Complete exposure is naturally preferred, as emptying is faster. Complete separation of the removable cover sheet from the bag is also not necessary. For example, it is sufficient if the usually (approximately) rectangular cover sheet remains attached to the bag at one side. This also facilitates the disposal of empty bags, as there are fewer individual parts.
[0057] Preferably, step c), particularly preferably steps a) to d), is carried out at a temperature above 0°C. Dissolution of the water-soluble polymer at lower temperatures may take longer under certain circumstances.
[0058] Step c) usually takes 15 seconds to 5 minutes.
[0059] The invention is further directed to methods for producing a sack according to the present invention, characterized in that a surface of a water-insoluble paper or a water-insoluble polymer is attached to a surface of a water-soluble polymer. As stated above, the sack can be, for example, a valve-bottom sack, a block-bottom sack, a block-bottom bag, a cross-bottom sack, a valve-side gusseted sack, a gusseted bottom sack, a mini-seal sack, or a sealed-edge sack.
[0060] Conventional sacks and their manufacturing processes are described, for example, in DE 20 2008 003 172 U1, WO 2010 / 099902 A1, EP 0 243 750 A2, and WO 2000 / 043272 A1. These processes are also generally applicable to the production of the sacks according to the invention.
[0061] Preferred features of the bag of the present invention are also preferred features of the methods of the present invention.
[0062] The invention is further directed to the use of a surface section (F) made of a water-soluble polymer as part of a bag for liquid or powdery substances as described above, for reducing the release of unpleasant odors and / or harmful substances into the air, in particular for reducing the release of alveolar dusts.
[0063] Preferred features of the bag of the present invention are also preferred features of the uses of the present invention.
[0064] Figure 1shows an example of a modified valve bottom sheet (1) as part of a sack according to the present invention, in which the surface section (F) (2) is located in the bottom of the sack and consists of a polyvinyl alcohol film. The modified valve bottom sheet (1) as part of the sack itself can consist, for example, of paper, in particular kraft paper, or polyethylene, in particular LDPE. The sack itself can consist, for example, of paper or LDPE.
Claims
1. Bag with stand-up bottom for liquid or pulverulent materials having a portion composed of water-insoluble paper and / or water-insoluble polymer and a surface section (F) composed of a water-soluble polymer, the bottom face of the bag consisting of the water-insoluble paper and / or water-insoluble polymer and the surface section (F), characterized in that the surface section (F) covers a section of the bag that has been cut out of the water-insoluble paper and / or water-insoluble polymer, such that the surface section (F) is in direct contact with the filling material of the bag during use, the surface section (F) accounting for more than 11.5% and not more than 90% of the bottom face of the bag, dissolution of the water-soluble polymer producing an opening through which the bag can be emptied.
2. Bag according to Claim 1, characterized in that the surface section (F) accounts for more than 5% and not more than 35% of the surface area of the bag.
3. Bag according to Claim 1 or 2, characterized in that the water-soluble polymer is selected from polyvinyl alcohol homo- or copolymers and partially hydrolysed polyvinyl alcohol homo- or copolymers.
4. Bag according to any of the preceding claims, characterized in that the water-insoluble paper is selected from recycled paper or kraft paper and the water-insoluble polymer is selected from polypropylene, polyacrylate, polyethylene terephthalate or polyethylene.
5. Bag according to any of the preceding claims, characterized in that the surface section (F) consists of a film having a film thickness of more than 40 µm to 200 µm.
6. Bag according to any of the preceding claims, characterized in that the surface section (F) is completely covered by a removable cover sheet.
7. Bag according to Claim 6, characterized in that the bag contains or consists of the same material apart from the surface section (F) and the removable cover sheet.
8. Bag according to any of the preceding claims, characterized in that the bag contains a liquid or pulverulent material.
9. Method for removing a liquid or pulverulent material from a bag according to Claim 8, containing the following steps in the order indicated a) optionally at least partly exposing the surface section (F), if a cover sheet is present, b) introducing the bag into a water-containing container such that the surface section (F) is at least partly below the waterline, c) waiting until the surface section (F) has at least partly dissolved, d) pulling the bag out of the container, the opening produced after the surface section (F) has been at least partly dissolved being at least partly below the waterline while pulling out the bag.
10. Method for producing a bag according to any of the preceding Claims 1 to 7, characterized in that a surface of a water-insoluble paper or a water-insoluble polymer is attached to a surface of a water-soluble polymer.
11. Use of a bag according to any of the preceding Claims 1 to 7 for packing liquid or pulverulent materials.
12. Use of a surface section (F) composed of a water-soluble polymer as part of a bag with stand-up bottom for liquid or pulverulent materials according to Claim 1 for reducing the release of unpleasant odours and / or harmful substances into the air, in particular for reducing the release of alveoli-reaching dusts.