Improved cleansing wipes impregnated with hydrodispersion-based impregnating agents
Patent Information
- Authority / Receiving Office
- ES · ES
- Patent Type
- Patents
- Current Assignee / Owner
- BEIERSDORF AG
- Filing Date
- 2021-08-27
- Publication Date
- 2026-07-16
AI Technical Summary
Existing cleaning wipes often contain parabens, silicones, and non-biodegradable materials, leading to reduced skin tolerance, oily residues, and environmental impact, while lacking in biodegradability and effective cleaning performance.
A cleaning cloth impregnated with a silicone-free, paraben-free hydrodispersion containing phenoxyethanol, ethylhexylglycerin, hydroxyacetophenone, and decylene glycol for preservation, along with biodegradable fibers, ensuring improved skin compatibility and biodegradability without compromising cleaning efficacy.
The solution provides effective facial cleansing, particularly for sensitive areas, with enhanced skin tolerance and biodegradability, matching or exceeding conventional wipes in cleaning performance and mildness.
Abstract
Description
[0001] The present invention relates to a cleaning cloth impregnated with an impregnating agent based on a hydrodispersion.
[0002] Cleaning cloths are a special type of cleaning agent, as their cleaning performance is based on an interaction between the cloth and the impregnating agent.
[0003] Cleaning wipes are characterized by being a ready-to-use cleaning agent. No additional solvent, especially water, is required for them to work. Nor is any solvent, especially water, needed to wash away dirt. Cleaning wipes are convenient for use on the go, while traveling, or simply for a quick clean.
[0004] The aforementioned advantages mean that cleaning wipes are used in a variety of ways, for example in leather and floor care, in hygiene, and in intimate and personal care. In the context of personal care, cleaning wipes are also advantageous for baby care, for facial and body cleansing, for cleaning the skin in the diaper area, and as toilet paper to support toilet training in young children.
[0005] One area where cleansing wipes are particularly popular is facial cleansing. Facial cleansing involves removing dirt and grime that has come into contact with the skin from the outside, dead skin cells, and excess sebum. This includes makeup, which must also be removed.
[0006] A wide variety of substances are used in decorative cosmetics today. In addition to inorganic pigments such as silicates [magnesium silicate (talc), aluminum silicate (kaolin)] and metal oxides (chromium, iron, manganese, titanium, and zinc oxides), organic color pigments are also used as colorants. Binders include stearic acid esters, lanolin alcohol, and lanolin acetate. Many formulations incorporate waxes such as beeswax or carnauba wax and oils such as paraffin oils, silicone oils, or castor oil. Furthermore, decorative cosmetics may contain preservatives, antioxidants, thickeners, and other additives.
[0007] To remove this wide variety of substances from the skin, appropriate cosmetic cleansers are needed. Cleansing wipes have proven to be well-suited for this purpose because the wiping motion of the wipes supports the cleaning action of the surfactants and / or oils contained in the impregnating agent.
[0008] Cleaning wipes are known in themselves. The prior art contains numerous documents that describe various types of cleaning wipes with different impregnating agents.
[0009] For example, a commercially available product called "pure & natural Facial Cleansing Wipes" from Beiersdorf is known (GNPD [Online] Mintel database; December 20, 2012; accession number 1947922). These are biodegradable cleansing wipes for removing makeup and mascara, made from 95% naturally derived material.
[0010] DE 10157543 discloses emulsion-impregnated wipes, wherein the emulsion contains chitosan and / or lecithin. This allows the content of emulsifiers and preservatives to be reduced.
[0011] DE 10219638 describes flat, perforated cleansing wipes impregnated with an emulsion-like impregnating agent. These wipes provide gentle cleansing, especially for facial cleansing.
[0012] Document EP 1496853 describes cleansing wipes impregnated with a solution containing starch-based compounds. The incorporation of these starch-based compounds results in a particularly pleasant, smooth, and velvety skin feel.
[0013] EP 1405632 discloses the incorporation of zinc oxide particles of a certain size into the impregnating agents and the possibility of applying these impregnating agents to the cloths.
[0014] Document DE 102012200383 discloses cleaning wipes with a rough surface. This results in a peeling effect. To control the strength of the peeling effect, different amounts of the impregnating agent are applied.
[0015] Document DE 202004007851 describes colored cleaning cloths and impregnating agents. The dyes and impregnating agents used are selected so that the color remains on the cloth and does not transfer into the impregnating agent.
[0016] Lipid-containing compositions for impregnating wipes are disclosed in document WO 2005 / 044220 A1. These impregnating agents cause cleaning articles impregnated with them to exhibit not only high cleaning power but also high re-fatting properties.
[0017] Classic cleansing wipes can be impregnated with substances that do not contain "classic" surfactants, such as alkyl ether sulfates, which are typically used in liquid cleaning products. This can result in reduced cleaning performance. Oil-based cleansing wipes are frequently used to remove waterproof makeup. These wipes have the disadvantage that, due to their varying spreadability, the oils can get into the eyes. This can lead to reduced skin tolerance. Furthermore, using oil-based cleansing wipes often leaves an oily residue on the skin, which many users find unpleasant.
[0018] The standard technical specifications (StdT) also disclose cleaning wipes that offer good cleaning performance and good skin compatibility. Document DE 102015212822 A1 serves as an example. The impregnating agent contains micelles. The impregnating agent according to DE 102015212822 A1 is characterized by containing a mixture of different surfactants: anionic surfactants in the form of sodium acylglutamates, non-ionic surfactants in the form of block polymers, and alkyl polyglycosides.
[0019] As the name implies, cleansing wipes are intended for cleaning, preferably for cleaning human skin and hair.
[0020] In addition to the basic function of cleaning, there are numerous consumer wishes that should be taken into account in the further development of cleaning cloths.
[0021] The aspect of improved tolerability is therefore an important consideration. In this context, it should be noted, for example, that consumer surveys repeatedly express a desire to avoid parabens. However, it should be pointed out that selected parabens, in certain quantities, are permitted for use as preservatives in cosmetic products in accordance with Regulation (EC) No. 1223 / 2009 on cosmetic products, as they are classified as safe.
[0022] Similarly, the avoidance of silicone compounds is a wish frequently expressed by consumers.
[0023] Furthermore, it is desirable if the ingredients of the impregnating agent and the cloth material are as biodegradable as possible.
[0024] In summary, the aim is to provide cleaning wipes that meet consumer demands for increased skin compatibility and improved biodegradability, particularly of the wipe material. At the same time, their cleaning performance should be comparable to that of conventional wipes.
[0025] All these problems are solved by a cleaning agent consisting of a cloth and an impregnating agent according to claim 1. The present invention therefore provides a cleaning agent consisting of a cloth, characterized in that the cloth consists of fibers that are of natural origin and biodegradable, and an impregnating agent, characterized in that the impregnating agent is in the form of a hydrodispersion that is silicone-free and paraben-free, i.e., contains less than 0.001% by weight, based on the total weight of the impregnating medium. Phenoxyethanol, at least two substances that simultaneously have a conditioning effect and support preservation, and at least two polymeric compounds, wherein at least one polymeric compound has a stabilizing effect and at least one polymeric compound has a film-forming effect, or wherein at least one polymeric compound has a stabilizing and film-forming effect and contains at least one further polymeric compound, characterized in that the at least two substances that simultaneously have a conditioning effect and support preservation are selected from the group consisting of ethylhexylglycerin, hydroxyacetophenones, and decylene glycol.
[0026] This cleansing agent is particularly suitable for cleansing facial skin, and especially for the sensitive eye area. It is a cosmetic product.
[0027] The impregnating agent contains water; it is therefore an aqueous impregnating agent. The water content is advantageously 80 to 99% by weight, and particularly advantageously 93 to 98.9% by weight, based on the total weight of the impregnating agent.
[0028] The impregnation agent, and therefore also the cleaning product, is preserved by phenoxyethanol. This preservative can be represented by the following formula: Phenoxyethanol is particularly effective in acidic and neutral, but also alkaline, environments and is completely non-toxic. Even low concentrations are sufficient to preserve cosmetic products. Due to its neutral taste, phenoxyethanol quickly found its way into the pharmaceutical and cosmetic industries. It is effective against Gram-positive and Gram-negative bacteria, such as Escherichia coli, Pseudomonas aeruginosa, Proteus mirabilis, and Staphylococcus aureus, as well as against yeasts like Candida albicans and other microorganisms. Phenoxyethanol is a viscous liquid with a faint, slightly pleasant odor and an astringent taste. It has been found naturally in tropical fruits, chicory (Cichorium endivia), and green tea (Camellia sinensis). It has a mild, rose-like aroma.
[0029] It is used as a fragrance and fixative in perfume compositions. It is miscible with acetone, ethyl alcohol, and glycerin, soluble in oils and fats, such as olive and peanut oil, but only slightly soluble in water.
[0030] The impregnating agent according to the invention contains phenoxyethanol in a concentration of 0.5 to 0.98 wt.%, preferably 0.8 to 0.95 wt.%, based on the total weight of the impregnating agent.
[0031] The impregnating agent according to the invention contains at least two substances that simultaneously have a conditioning effect and support preservation. These substances are not listed in the list of permitted preservatives (Cosmetics Regulation, Annex 6; Regulation (EC) No. 1223 / 2009, Annex V); however, they have a stabilizing effect on the respective cosmetic preparations and, in combination with preservatives, promote the stability of the respective preparations. This phenomenon can therefore be described as preservative-supporting. Such substances have hydroxyl groups that enable hydration shells to form around the molecules. In this way, they have a moisturizing and thus skin-conditioning effect. In the impregnating agent according to the invention, the at least two substances that simultaneously have a conditioning effect and support preservation are present in a total content of 0.15 to 0.6 wt.-%, preferably 0.3 to 0.45 wt.%, based on the total weight of the impregnating agent.
[0032] According to the invention, combinations of phenoxyethanol and at least two substances selected from ethylhexylglycerin, hydroxyacetophenone and decylene glycol are used; further preferred is the combination of phenoxyethanol with the substances ethylhexylglycerin and decylene glycol, which simultaneously have a conditioning effect and support preservation.
[0033] The impregnating agent according to the invention can contain perfume. The perfume used is advantageously a mixture of perfume raw materials. The perfume is primarily included to give the impregnating agent, and after the impregnation process, the entire product, a pleasant odor. Furthermore, selected perfume raw materials are also known to have an antimicrobial effect or to support the effect of conventional preservatives.
[0034] If the impregnating agent according to the invention contains perfume, the perfume is present in a concentration of 0.05 to 1.0 wt.%, in particular 0.14 to 0.4 wt.%, based on the total weight of the impregnating agent.
[0035] The impregnating agents according to the invention are free of parabens. Likewise, the cleaning wipe, the cosmetic product consisting of impregnating agent and wipe, and also the packaging unit for the cleaning wipe are free of parabens.
[0036] Parabens according to the present invention have the following general structural formula:
[0037] R denotes an alkyl side chain, which can consist of an unbranched or branched chain of 1 to 5 carbon atoms or of aromatic residues. Known parabens include methylparaben, ethylparaben, propylparaben, butylparaben, as well as isopropylparaben, isobutylparaben, pentylparaben, and phenylparaben. Benzylparaben is not permitted as a preservative in cosmetic products. The preparations according to the invention are free of parabens. In the context of the present invention, "free of parabens" means that no parabens are added to the preparations, nor are any parabens introduced via preserved ingredients. This is equivalent to stating that the preparations according to the invention do not contain parabens.
[0038] For the purposes of the present invention, "free from" means that less than 0.001 wt.%, preferably less than 0.0001 wt.%, particularly preferably 0 wt.% of the respective substance(s), based on the total weight of the preparation, is present.
[0039] In an advantageous embodiment, the impregnating agent and the entire cleaning agent according to the invention contain no "classical surfactants," meaning that no classical surfactants are added, nor are they introduced through other raw materials containing them. Classical surfactants are understood to be surface-active substances that are commonly incorporated into cleaning preparations, including impregnating agents for cleaning wipes. Such surfactants are often classified as anionic, amphoteric, nonionic, and cationic. The following are examples of frequently used surfactants: Anionic surfactants: Acylamino acids (and their salts), such as... Acylglutamates, for example sodium acylglutamate, sodium cocoylglutamate, di-TEA palmitoylaspartate and sodium caprylic / capric glutamate, sarcosinates, for example myristoyl sarcosin, TEA-lauroyl sarcosinate, sodium lauroyl sarcosinate and sodium cocoyl sarcosinate, alaninates, glycinates.
[0040] Carboxylic acids and derivatives, such as Carboxylic acids, for example lauric acid, aluminum stearate, magnesium alkanolate and zinc undecylenate, stearic acid / salt, palmitic acid / salt, ester carboxylic acids, for example calcium stearoyl lactylate, laureth-6 citrate and sodium PEG-4 lauramamide carboxylate, ether carboxylic acids, for example sodium laureth-13 carboxylate and sodium PEG-6 cocamide carboxylate, acyl lactylates, lauroyl lactylate, caproyal lactylate. Phosphoric acid ester and salt.
[0041] Sulfonic acids and salts, such as Acyl isethionates, e.g., sodium / ammonium cocoyl isethionate, sodium lauryl methyl isethionate; alkyl aryl sulfonates; alkyl sulfonates, for example, sodium cocosmonoglyceride sulfate, sodium C12-14 olefin sulfonate, sodium lauryl sulfoacetate, and magnesium PEG-3 cocamide sulfate; sulfosuccinates, for example, dioctyl sodium sulfosuccinate, disodium laureth sulfosuccinate, disodium lauryl sulfosuccinate, disodium undecylenamido-MEA sulfosuccinate, and PEG-5 lauryl citrate sulfosuccinate; taurates, for example, sodium lauroyl taurate and sodium methyl cocoyl taurate; sulfuric acid esters, such as alkyl ether sulfate with varying degrees of ethoxylation and their mixtures; alkyl sulfates.
[0042] Cationic surfactants are, for example, Alkylamines, alkylimidazoles, ethoxylated amines, quaternary surfactants, for example cetyl trimethylammonium halide, esterquats, for example dicocoylethyl hydroxyethylmoium methosulfate, and amidquats, for example palmitamidopropyltrimonium chloride.
[0043] Amphoteric surfactants are, for example, Acyl- / dialkylethylenediamine, for example sodium acylamphoacetate, disodium acylamphodipropionate, disodium alkylamphodiacetate, disodium cocaamphodiacetate, disodium cocaamphomonoacetate, sodium acylamphohydroxypropylsulfonate, disodium acylamphodiacetate and sodium acylamphopropionate; N-alkyl amino acids, for example aminopropylalkylglutamide, alkylaminopropionic acid, sodium alkylimidodipropionate and lauroamphocarboxyglycinate; betaines, for example coco betaine, cocaamidopropyl betaine; sultaines, for example lauryl hydroxy sultaine.
[0044] Non-ionic surfactants are, for example, Alkanolamides, such as Cocamide MEA / DEA / MIPA, amine oxides, such as cocoamidopropylamine oxide, ethers, for example ethoxylated / propoxylated alcohols, laureth-X with X = 2 to 10, where X represents the ethoxy group, ethoxylated / propoxylated esters, ethoxylated / propoxylated glycerol esters, PEG-200 hydrogenated glyceryl palmate, ethoxylated / propoxylated cholesterols, ethoxylated / propoxylated triglyceride esters, ethoxylated propoxylated lanolin, ethoxylated / propoxylated polysiloxanes, propoxylated POE ethers, and alkyl polyglycosides such as lauryl glucoside, decyl glycoside, and cocoglycoside. Sucro esters, ethers, polyglycerol esters, diglycerol esters, monoglycerol esters, methyl glucose esters, and esters of hydroxy acids.
[0045] The impregnating agents according to the invention are free of the surfactants mentioned.
[0046] Hydrodispersions are dispersions of a liquid, semi-solid, or solid inner (discontinuous) lipid phase in an outer aqueous (continuous) phase. Like emulsions, which are characterized by a similar phase arrangement, hydrodispersions are metastable systems and therefore tend to transition into a state of two interconnected discrete phases. In a classic oil-in-water (O / W) emulsion, the selection of a suitable emulsifier prevents phase separation. In contrast to classic emulsions, however, hydrodispersions contain only very small amounts of emulsifiers (up to 0.1 wt.%, preferably up to 0.05 wt.%) or can even be completely emulsifier-free.
[0047] In hydrodispersions, which consist of a liquid lipid phase in an outer aqueous phase, the stability of the multiphase system is typically ensured by forming a gel framework in the aqueous phase using a gelling agent or thickener, in which the lipid droplets are stably suspended. The gelling agent or thickener can be a polymeric compound that has a stabilizing effect. Suitable stabilizing polymers include homopolymers or copolymers of acrylic acid and / or acrylamide and their derivatives.
[0048] The at least one stabilizing polymer can advantageously be selected from the group of acrylates / C10-30 alkyl acrylate crosspolymers. These are available from Lubrizol under the trade names Carbopol®< Ultrez 20, Carbopol®< Ultrez 21, Pemulen TR1, Pemulen TR2, Carbopol®< 1342, Carbopol®< 1382, and Carbopol®< ETD 2020.
[0049] The impregnating agent according to the invention contains at least one polymeric compound that has a stabilizing effect, with a total content of 0.02 to 0.15 wt.%, preferably 0.03 to 0.1 wt.%, based on the total weight of the impregnating agent.
[0050] For the purposes of the present invention, polymeric compounds that have a film-forming effect, hereinafter referred to as film formers, are substances of varying composition characterized by the following property: When a film former is dissolved in water or other suitable solvents, a film forms after the solvent evaporates. If the solvent evaporates after the application of a solution / composition containing a film former to the skin or hair, a film forms on the surface of the skin or hair, which essentially provides a protective function.
[0051] Another type of film-forming agent comprises substances that form films after application in a solvent that does not necessarily have to evaporate. In such cases, these are usually oil-soluble polymeric base materials.
[0052] It is advantageous to select film formers from the group of polymers containing vinylpyrrolidone as monomers, which can be represented by the following formula:
[0053] These can be homopolymers such as polyvinylpyrrolidone (PVP) or copolymers. Particularly advantageous copolymers include, for example, PVP hexadecene copolymer and PVP eicosene copolymer, which are available from GAF Chemicals Cooperation under the trade names Antaron V216 and Antaron V220.
[0054] The impregnating agent according to the invention contains at least one polymeric compound that has a film-forming effect, with a total content of 0.2 to 1.0 wt.%, preferably 0.3 to 0.6 wt.%, based on the total weight of the impregnating agent.
[0055] Polymers are known that exhibit both film-forming and stabilizing properties. Sometimes the stabilizing property is more pronounced than the film-forming property, and vice versa. There are also prior art descriptions that attribute film-forming properties to polymers classified as stabilizing in this application, or conversely, polymers classified as film-forming in this application are also attributed stabilizing properties. However, it is essential for the present invention that the impregnating agent contains a substance(s) with stabilizing properties (for the formation of the hydrodispersion) and film-forming properties (for the formation of a protective film).
[0056] The impregnating agent according to the invention advantageously contains an acrylates / C10-30 alkyl acrylate crosspolymer and a PVP hexadecene copolymer; further advantageously, with regard to the at least two polymeric compounds, wherein at least one polymeric compound acts as a stabilizer and at least one polymeric compound acts as a film-forming agent, or wherein at least one polymeric compound acts as a stabilizer and film-forming agent and a further polymeric compound is included, only an acrylates / C10-30 alkyl acrylate crosspolymer and a PVP hexadecene copolymer are included.
[0057] In the impregnating agent according to the invention, the total content of the at least two polymeric compounds, wherein at least one polymeric compound has a stabilizing effect and at least one polymeric compound has a film-forming effect, or wherein at least one polymeric compound has a stabilizing and film-forming effect and a further polymeric compound is included, is to be selected from the range of 0.22 to 1.2 wt.%, preferably 0.33 to 0.7 wt.%, based on the total weight of the impregnating agent.
[0058] The impregnating agent according to the invention can contain, in addition to substances that simultaneously have a conditioning effect and support preservation, at least one further humectant. A further humectant is understood to be a substance or mixture of substances that gives cosmetic preparations the property of positively influencing and / or regulating the moisture content of the skin, particularly the epidermis, after application or distribution on the skin. Advantageous further humectants within the meaning of the present invention are, for example, glycerin, lactic acid, urea, and / or sorbitol, particularly glycerin.
[0059] If the impregnating agent according to the invention contains at least one further humectant, the total content of the at least one humectant is 0.1 to 10 wt.%, preferably 0.2 to 2.0 wt.%, based on the total weight of the impregnating agent.
[0060] The impregnating agent according to the invention can advantageously contain at least one emollient. An emollient is understood to be a substance that makes the skin soft and supple. Advantageously, this component is a lipophilic one. In particular, the lipophilic component can advantageously be selected from the group of monoesters of saturated and / or unsaturated, branched and / or unbranched alkanecarboxylic acids with a chain length of 3 to 30 carbon atoms and saturated and / or unsaturated, branched and / or unbranched alcohols with a chain length of 3 to 30 carbon atoms, as well as from the group of esters of aromatic carboxylic acids and saturated and / or unsaturated, branched and / or unbranched alcohols with a chain length of 3 to 30 carbon atoms.Solche Esteröle können dann weiter insbesondere vorteilhaft gewählt werden aus der Gruppe 2-Ethylhexyl Benzoate, 2 Ethylhexyl Hydroxystearate Benzoate, 2-Ethylhexyl Laurate, 2-Ethylhexyl Palmitate, 2-Ethylhexyl Stearate, 2-Hexyldecyl Stearate, 2-Octyldodecyl Palmitate, Butyloctyl Salicylate, C12-15 Alkyl Benzoate, Castor Oil Benzoate, Cetearyl Isononanoate, Coco Caprylate / Caprate, Decyl Oleate, Diethylhexyl Adipate, Dipropylene Glycol Dibenzoate, Ethylhexyl Cocoate, Glyceryl Caprate, Glyceryl Isostearate, Isononyl Isononanoate, Isononyl Stearate, Isooctyl Stearate, Isopropyl Isostearate, Isopropyl myristate, Isopropyl Oleate, Isopropyl Palmitate, Isopropyl Stearate, Isostearyl Palmitate, Myristyl Myristate, n-Butyl Stearate, n-Decyl Oleate, n-Hexyllaurat, Octyl Cocoate, Octyl Isostearate, Octyl Palmitate, Octyldodeceyl Myristate, Oleyl Oleate, Propylheptyl Caprylate, Stearyl Heptanoate, Tridecyl Stearate und / oder Triisostearin.
[0061] Furthermore, the lipophilic component can advantageously be selected from the group of dialkyl ethers and dialkyl carbonates; for example, dicaprylyl ethers (available under the trade name Cetiol OE) and / or dicaprylyl carbonate (available under the trade name Cetiol CC) are advantageous.
[0062] Any mixtures of the aforementioned lipophilic components are also advantageous to use in accordance with the present invention.
[0063] Particularly preferred are the compounds isopropyl stearate, isopropyl palmitate and / or dicaprylyl ether.
[0064] In the impregnating agent according to the invention, at least one emollient is advantageously present with a total content of 0.05 to 5.0 wt. %, preferably 0.1 to 3.5 wt. %, based on the total weight of the impregnating agent.
[0065] It is also equally advantageous if the impregnating agent according to the invention additionally contains at least one cosmetic active ingredient selected from the group of vitamins, plant extracts and / or individual active ingredients.
[0066] According to the invention, the impregnating agent may additionally contain cosmetic excipients such as are commonly used in such agents, e.g. complexing agents and dyes, antioxidants and substances to adjust the pH value.
[0067] The impregnating agents according to the invention are free of silicones. Likewise, the cleaning wipe, the cosmetic product consisting of impregnating agent and wipe, and also the packaging unit for the cleaning wipe are free of silicones.
[0068] The terms silicone and silicone compound are used synonymously. Silicone compounds are characterized by the presence of silicon and oxygen atoms that are linked together and can form a wide variety of different compounds.
[0069] For the purposes of the present invention, the term "free from" means that less than 0.001 wt.%, preferably less than 0.0001 wt.%, particularly preferably 0 wt.% of the respective substance(s), based on the total weight of the impregnating agent, are present.
[0070] The cloth material used for the cleaning cloths is characterized by the fact that it consists of fibers of natural origin and is biodegradable. The cloths can be smooth or have a textured surface. According to the invention, textured cloths are preferred.
[0071] According to the inventionPreferably, "dry" cloths made of nonwoven fabric, in particular water jet bonded and / or water jet embossed nonwoven fabric, are used in combination with the impregnating agents according to the invention.
[0072] These types of nonwovens can feature macro-embossing of any desired pattern. The selection depends on the type of impregnation to be applied and the intended application of the finished fabric.
[0073] When embossed nonwovens are used, the large cavities on and within the surface of the nonwoven facilitate the absorption of dirt and impurities when the moistened cloth is wiped over the skin. The cleaning effect can be increased many times over compared to unembossed cloths.
[0074] It has proven advantageous for the cloth to have a weight of 30 to 120 g / m², preferably 35 to 80 g / m², and particularly preferably 40 to 65 g / m² (measured at 20°C ± 2°C and at a room air humidity of 65% ± 5% for 24 hours).
[0075] The nonwoven fabric used for the cloth is made from natural fibers. Examples include viscose, cotton, cellulose, jute, hemp, sisal, silk, and wool.
[0076] In another particularly advantageous embodiment, the fibers consist of 100% viscose with varying degrees of fineness. The fiber fineness ranges from 1.0 dTex to 2.0 dTex, preferably from 1.2 dTex to 1.8 dTex. Such fabrics are available, for example, from Jacob Holm under the designation 10.045.016 or from Spuntech under the designation 13P46V100.
[0077] Fibers made of viscose, lyocell, polylactic acid and cotton in various compositions are also advantageous; these are offered, among others, by the company Lenzing under the names LENZING™< Lyocell and LENZING™< Viscose, or by the company Suominen under the names Biolace and Fibrella.
[0078] The wipes that can be used advantageously according to the invention have been tested with regard to their biodegradability. Biodegradability according to OECD Guideline 301 B was demonstrated.
[0079] For the cleaning product according to the invention, i.e. the cloth (biodegradable, non-woven, using the example of cloth Jacob Holm under the designation 10.040.007) impregnated with the impregnating agent according to Example 3, the biodegradability was demonstrated in accordance with OECD Guideline 301 B.
[0080] To determine the biodegradability of a composition, such as a soaking agent, OECD data or equivalent methods for classifying ingredients are used. The percentage of biodegradable ingredients in a composition is calculated by dividing the weight of the biodegradable organic ingredients by the total weight of the organic ingredients. This results in values such as XX% biodegradable composition.
[0081] The impregnating agent according to example recipe 3 was calculated to have a biodegradability of 98%.
[0082] The term biodegradability describes the process of the breakdown of organic compounds by living organisms, especially saprobionts. Ideally, inorganic substances such as CO₂, O₂, and ammonia are produced; compounds that can then be used by plants and microorganisms to build new organic compounds.
[0083] Organic chemical compounds that are readily biodegradable are classified according to OECD 301, and for cosmetic compositions, usually according to OECD 301 B. These substances or compositions can be rapidly and completely degraded.
[0084] Organic chemical compounds classified according to OECD 302 are, although restricted, generally biodegradable.
[0085] Furthermore, the fibers can also be dyed to emphasize and / or enhance the visual appeal of the nonwoven fabric. The fibers may also contain UV stabilizers and / or preservatives.
[0086] Advantageous cloths according to the present invention have a tear strength of, in particular, [N / 50mm] in a dry state Machine direction >40, preferably >60 transverse direction >4, preferably >9
[0087] The elasticity of an advantageous cloth is preferably in a dry state Machine direction 2% to 30%, preferably 5% to 30% transverse direction 50% to 180%, preferably 60% to 175%
[0088] According to the invention, the weight ratio of the unimpregnated cloth to the impregnating agent is advantageously 1:1 to 1:5, particularly advantageously 1:1.5 to 1:4.5, and especially advantageously 1:1.75 to 1:3.5.
[0089] The cleaning product, consisting of the cloth and the impregnating agent according to the invention, is advantageously offered in packaging that consists of 30%, preferably 45%, recycled plastic material. Furthermore, the packaging material advantageously consists of a polyester-polyethylene composite.
[0090] The cleaning performance and mildness of a cleaning agent according to the invention were assessed in a PIU (Product In Use) test. Both the cleaning performance and the mildness of the cleaning agent according to the invention were confirmed to be on par with those of a cleaning wipe consisting of a paraben-containing impregnation medium and a non-biodegradable nonwoven fabric.
[0091] For the study, 160 women aged 20 to 60 used a facial cleansing wipe at least once a day for a period of two weeks. The participants used waterproof makeup products, including waterproof mascara.
[0092] The rating was based on a five-point scale: 0 points means "does not apply at all", 5 points means "applies completely".
[0093] The responses with four and five points were added together. This resulted in the following percentage of agreement. N2 N7 Impregnating agent with parabens; Cloth: non-woven, not biodegradable Impregnating agent paraben-free; Cloth: non-woven, biodegradable Cleanses your face particularly thoroughly 87 87 Thoroughly removes waterproof makeup 87 94 It nourishes my skin particularly intensively 76 77 Suitable for sensitive skin 73 70
[0094] The impregnating agents N2 and N7 have the following composition; the values are in wt.% and refer to active content unless otherwise stated. INCI name N2 N7 Aqua Ad 100% Ad 100% Isopropyl Stearate 2,5 2,5 Glycerin 1 1 Phenoxyethanol 0,8 0,8 VP / Hexadecene Copolymer 0,3 0,3 Perfume 0,4 0,4 Methylparaben 0,3 0 Ethylhexylglycerin 0,2 0,15 Acrylates / C10-30 Alkyl Acrylate Cross-polymer 0,06 0,06 Sodium hydroxide qs* qs* Decylene Glycol 0 0,15 Nelumbo Nucifera Flower Extract 0 0,01 * For adjusting the pH value, pH range: 6.0-6.5. For cleaning agent N2, the cloth is a mixture of 60% polyester and 40% viscose; for cleaning agent N7, the cloth consists of 100% viscose.
[0095] N7 represents the cleansing product according to the invention. The results show that the cleansing product according to the invention is rated as well as a conventional product with regard to thorough cleansing and care. Its suitability for sensitive skin is rated somewhat lower compared to the conventional product. With regard to the removal of waterproof makeup, the product according to the invention is rated better than the conventional product. Overall, the product according to the invention performs as well as or better than the conventional product in terms of cleansing performance.
[0096] To assess tolerability, a tolerability test was conducted concurrently under the observation of a general practitioner and an ophthalmologist. The participants who took part in the product-in-use test described above also participated in the tolerability test. The cleaning agent (N7) according to the invention demonstrated good skin acceptance for the face, eyelids, and lips, as well as good ocular tolerability. Examples:
[0097] The examples are intended to illustrate the present invention.
[0098] Unless otherwise stated, the figures refer to percentage by weight and the respective active content. INCI name 1 2 3 4 Water ad 100% ad 100% ad 100% ad 100% Isopropyl Stearate 3 3 Isopropyl Palmitate 2 2 Dicrapylyl Ether 1 Glycerin 0,87 0,87 1 1,5 Phenoxyethanol 0,8 0,8 0,9 0,9 VP / Hexadecene Copolymer 0,5 0,4 0,5 0,5 Hydroxyacetophenone 0,23 0,23 0 0,17 Ethylhexylglycerin 0,23 0,15 0,23 0,15 Acrylates / C10-30 Alkyl Acrylate Crosspolymer 0,1 0,1 0,05 0,05 Tocopheryl Acetate 0,06 0,06 Sodium hydroxide qs* qs* qs* qs* Panthenol 0,013 0,1 Decylene Glycol 0,1 0,1 Nelumbo Nucifera Flower Extract 0,01 0,01 0,01 0 Perfume 0 0,3 0,3 0 * For adjusting the pH value, pH range 6.0 to 6.5.
Claims
1. Cleansing product consisting of a wipe, characterized in that the wipe consists of fibres which are of natural origin and biodegradable and an impregnation agent, characterized in that the impregnation agent is in the form of a hydrodispersion which is silicone-free and paraben-free, that is to say contains less than 0.001% by weight, based on the total weight of the impregnation medium, containing - phenoxyethanol, - at least two substances which simultaneously have a caring effect and support preservation and - at least two polymeric compounds, where at least one polymeric compound has a stabilizing effect and at least one polymeric compound has a film-forming effect or where at least one polymeric compound has a stabilizing and film-forming effect and at least one further polymeric compound is present, - characterized in that the at least two substances which simultaneously have a caring effect and support preservation are selected from the group of Ethylhexylglycerin, Hydroxyacetophenone and Decylene Glycol.
2. Cleansing product according to Claim 1, characterized in that the impregnation agent contains water in a content of 80% to 99% by weight, preferably 93% to 98.9% by weight, based on the total weight of the impregnation agent.
3. Cleansing product according to Claim 1 and / or 2, characterized in that phenoxyethanol is present in the impregnation agent in a content of 0.5% to 0.98% by weight, preferably 0.8% to 0.95% by weight, based on the total weight of the impregnation agent.
4. Cleansing product according to at least one of the preceding claims, characterized in that in the impregnation agent the combination of Ethylhexylglycerin and Decylene Glycol is used as substances which simultaneously have a caring effect and support preservation.
5. Cleansing product according to at least one of the preceding claims, characterized in that the at least two substances which simultaneously have a caring effect and support preservation are present in the impregnation agent at a total content of 0.15% to 0.6% by weight, preferably 0.3% to 0.45% by weight, based on the total weight of the impregnation agent.
6. Cleansing product according to at least one of the preceding claims, characterized in that the impregnation agent is free of anionic, amphoteric, nonionic and / or cationic surfactants.
7. Cleansing product according to at least one of the preceding claims, characterized in that for the impregnation agent the at least one polymeric compound which has a stabilizing effect is selected from the group of homopolymers or copolymers of acrylic acid and / or acrylamide and derivatives thereof, preferably from the group of acrylates / C10-30 alkyl acrylate crosspolymers.
8. Cleansing product according to at least one of the preceding claims, characterized in that the at least one polymeric compound which has a stabilizing effect is present in the impregnation agent at a total content of 0.02% to 0.15% by weight, preferably 0.03% to 0.1% by weight, based on the total weight of the impregnation agent.
9. Cleansing product according to at least one of the preceding claims, characterized in that for the impregnation agent the at least one polymeric compound which has a film-forming effect is selected from the group of polymers containing vinylpyrrolidone monomers, preferably from the group of copolymers of polyvinylpyrrolidone, further preferably from PVP hexadecene copolymer and / or PVP eicosene copolymer.
10. Cleansing product according to at least one of the preceding claims, characterized in that the at least one polymeric compound which has a film-forming effect is present in the impregnation agent at a total content of 0.2% to 1.0% by weight, preferably 0.3% to 0.6% by weight, based on the total weight of the impregnation agent.
11. Cleansing product according to at least one of the preceding claims, characterized in that the at least two polymeric compounds, where at least one polymeric compound has a stabilizing effect and at least one polymeric compound has a film-forming effect or where at least one polymeric compound has a stabilizing and film-forming effect and at least one further polymeric compound is present, are present in the impregnation agent at a total content of 0.22% to 1.2% by weight, preferably 0.33% to 0.7% by weight, based on the total weight of the impregnation agent.
12. Cleansing product according to at least one of the preceding claims, characterized in that the impregnation agent contains at least one emollient, preferably selected from monoesters of saturated and / or unsaturated, branched and / or unbranched alkanecarboxylic acids having a chain length of 3 to 30 carbon atoms and saturated and / or unsaturated, branched and / or unbranched alcohols having a chain length of 3 to 30 carbon atoms, esters of aromatic carboxylic acids and saturated and / or unsaturated, branched and / or unbranched alcohols having a chain length of 3 to 30 carbon atoms, dialkyl ethers and / or dialkyl carbonates.
13. Cleansing product according to at least one of the preceding claims, characterized in that the at least one emollient is present in the impregnation agent at a total content of 0.05% to 5.0% by weight, preferably 0.1% to 3.5% by weight, based on the total weight of the impregnation agent.
14. Cleansing product according to at least one of the preceding claims, characterized in that the impregnation agent is free of silicones.
15. Cleansing product according to at least one of the preceding claims, characterized in that the wipe consists of a natural-based fibrous material, preferably viscose, cotton, cellulose, jute, hemp, sisal, silk, wool or mixtures thereof.
16. Cleansing product according to at least one of the preceding claims, characterized in that the wipe consists of 100% of viscose, preferably with finenesses of 1.0 dtex to 2.0 dtex, further preferably 1.2 dtex to 1.8 dtex.
17. Cleansing product according to at least one of the preceding claims, characterized in that the weight ratio of the unimpregnated wipe to the impregnation agent is 1:1 to 1:5, particularly advantageously 1:1.5 to 1:4.5, especially advantageously 2.0:3.5.