EP0979861B1 - Gewebepflegmittel - Google Patents
Gewebepflegmittel Download PDFInfo
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- EP0979861B1 EP0979861B1 EP98870174A EP98870174A EP0979861B1 EP 0979861 B1 EP0979861 B1 EP 0979861B1 EP 98870174 A EP98870174 A EP 98870174A EP 98870174 A EP98870174 A EP 98870174A EP 0979861 B1 EP0979861 B1 EP 0979861B1
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- Prior art keywords
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- dye fixing
- composition
- fixing agent
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- 0 C*(C)*(NC)N=C Chemical compound C*(C)*(NC)N=C 0.000 description 1
Classifications
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/02—Inorganic compounds ; Elemental compounds
- C11D3/04—Water-soluble compounds
- C11D3/046—Salts
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D1/00—Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
- C11D1/38—Cationic compounds
- C11D1/62—Quaternary ammonium compounds
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/0005—Other compounding ingredients characterised by their effect
- C11D3/001—Softening compositions
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/02—Inorganic compounds ; Elemental compounds
- C11D3/12—Water-insoluble compounds
- C11D3/122—Sulfur-containing, e.g. sulfates, sulfites or gypsum
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/02—Inorganic compounds ; Elemental compounds
- C11D3/12—Water-insoluble compounds
- C11D3/1233—Carbonates, e.g. calcite or dolomite
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/20—Organic compounds containing oxygen
- C11D3/2072—Aldehydes-ketones
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/20—Organic compounds containing oxygen
- C11D3/2075—Carboxylic acids-salts thereof
- C11D3/2082—Polycarboxylic acids-salts thereof
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/24—Organic compounds containing halogen
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/26—Organic compounds containing nitrogen
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/26—Organic compounds containing nitrogen
- C11D3/28—Heterocyclic compounds containing nitrogen in the ring
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/26—Organic compounds containing nitrogen
- C11D3/32—Amides; Substituted amides
- C11D3/323—Amides; Substituted amides urea or derivatives thereof
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/34—Organic compounds containing sulfur
- C11D3/3454—Organic compounds containing sulfur containing sulfone groups, e.g. vinyl sulfones
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/37—Polymers
- C11D3/3703—Macromolecular compounds obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/37—Polymers
- C11D3/3703—Macromolecular compounds obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
- C11D3/3719—Polyamides or polyimides
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/37—Polymers
- C11D3/3703—Macromolecular compounds obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
- C11D3/3723—Polyamines or polyalkyleneimines
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11D—DETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
- C11D3/00—Other compounding ingredients of detergent compositions covered in group C11D1/00
- C11D3/16—Organic compounds
- C11D3/37—Polymers
- C11D3/3746—Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds
- C11D3/3757—(Co)polymerised carboxylic acids, -anhydrides, -esters in solid and liquid compositions
Definitions
- composition which provides care to the treated fabrics, in particular color protection, especially after multiple wash cycles.
- Short fibers are dislodged from woven and knit fabric/textile structures by the mechanical action of laundering. These dislodged fibers may form lint, fuzz or "pills" which are visible on the surface of fabrics and diminish the appearance of newness of the fabric. Further, repeated laundering of fabrics and textiles, especially with bleach-containing laundry products, can remove dye from fabrics and textiles and impart a faded, worn out appearance as a result of diminished color intensity, and in many cases, as a result of changes in hues or shades of color.
- WO 98/12295 discloses colour care compositions comprising a dye fixing agent and a specific amino-functional polymer.
- EP 0 811 680 discloses a liquid fabric softening composition comprising one or more fabric softener materials and a mixture of at least two cationic dye fixing agents.
- WO 96/27649 discloses laundry compositions comprising detergents, as well as rinse-added fabric softeners, comprising from 0.05 CEVU/gram to 125 CEVU/gram of finished product, of a cellulase enzyme and from 0.01% to 50% wt. of a cationic dye fixing agent.
- Solutions may be found for use in the industrial treatments. However, these solutions are not usually transposable to domestic treatments. Indeed, in industrial processes a strict control over parameters such as pH, electrolyte concentration, water hardness, temperature is possible whereas in a domestic washing machine, such a high level of control is not possible.
- EP462806 provides the use of a cationic dye fixing agent in domestic treatment which assist in binding the loosely held dye to the fabric.
- a cationic dye fixing agent in domestic treatment which assist in binding the loosely held dye to the fabric.
- compositions provide a synergistic increase in performance of the above mentioned benefit.
- a further advantage of the invention is that the treated fabrics will thereafter show a reduced tendency in the subsequent wash to release dye. Such benefit is more particularly seen after multi-wash cycles (e.g. 20 wash cycles).
- the present invention relates to a colour care composition
- a colour care composition comprising a dye fixing agent and between 3% and 10%, by weight of the composition, of a divalent salt.
- Dye fixing agent is an essential component of the invention composition.
- Dye fixing agents or "fixatives" are well-known, commercially available materials which are designed to improve the appearance of dyed fabrics by minimizing the loss of dye from fabrics due to washing. Not included within this definition are components which are fabric softeners or those described hereinafter as amino-functional polymers.
- Cationic fixatives are available under various trade names from several suppliers. Representative examples include: CROSCOLOR PMF (July 1981, Code No. 7894) and CROSCOLOR NOFF (January 1988, Code No. 8544) from Crosfield; INDOSOL E-50 (February 27, 1984, Ref. No.
- Dye fixing agents suitable for use in the present invention are ammonium compounds such as fatty acid - diamine condensates e.g. the hydrochloride, acetate, metosulphate and benzyl hydrochloride of oleyldiethyl aminoethylamide, oleylmethyl-diethylenediaminemethosulphate, monostearyl-ethylene diaminotrimethylammonium methosulphate and oxidized products of tertiary amines; derivatives of polymeric alkyldiamines, polyamine-cyanuric chloride condensates and aminated glycerol dichlorohydrins.
- ammonium compounds such as fatty acid - diamine condensates e.g. the hydrochloride, acetate, metosulphate and benzyl hydrochloride of oleyldiethyl aminoethylamide, oleylmethyl-diethylenediaminemethosulphate, monostearyl-ethylene
- Preferred dye fixing agents are the cellulose reactive dye fixing agents.
- cellulose reactive dye fixing agent it is meant that the agent reacts with the cellulose fibers upon heat treatment.
- agents suitable for use herein can be defined by the following test procedure, so called cellulose reactivity test measurement.
- Two pieces of bleeding fabrics e.g. 10 x 10 cm of knitted cotton dyed with Direct Red 80
- an aqueous solution of 1% (w/w) of the cellulose reactive dye fixing agent candidate The pH of the solution is as it is obtained at this concentration.
- the swatches are then dried.
- One of the dried swatches as well as an unsoaked swatch (control 1) are passed 10 times trough an ironing calender set on a linen setting.
- a control 2 swatch is also used in this measurement test which is a non-soaked and non-ironed swatch.
- the 4 swatches are washed separately in Launder-o-meter pots under typical conditions with a commercial detergent used at the recommended dosage for 1 ⁇ 2 hour at 60°C, followed by a thorough rinsing of 4 times 200 ml of cold water and then line dried.
- Delta E is the computed color difference as defined in ASTM D2244, i.e the magnitude and direction of the difference between two psychophysical color stimuli defined by tristimulus values, or by chromaticity coordinates and luminance factor, as computed by means of a specified set of color-difference equations defined in the CIE 1976 CIELAB opponent-color space, the Hunter opponent-color space, the Friele-Mac Adam-Chickering color space or any equivalent color space.
- the candidate is a cellulose reactive dye fixing agent for the purpose of the invention.
- Typical cellulose reactive dye fixing agents are products containing the reactive group of the reactive dye classes selected from halogeno-triazine products, vinyl sulphones compounds, epichlorhydrine derivatives, hydroxyethylene urea derivatives, formaldehyde condensation products, polycarboxylates, glyoxal and glutaraldehyde derivatives and mixtures thereof.
- Preferred hydroxyethylene urea derivatives include dimethyloldihydroxyethylene, urea, and dimethyl urea glyoxal.
- Preferred formaldehyde condensation products include the condensation products derived from formaldehyde and a group selected from an amino-group, an imino-group, a phenol group, an urea group, a cyanamide group and an aromatic group.
- Commercially available compounds among this class are Sandofix WE 56 from Clariant, Zetex E from Zeneca and Levogen BF from Bayer.
- Preferred polycarboxylates derivatives include butane tetracarboxilic acid derivatives, citric acid derivatives, polyacrylates and derivatives thereof.
- a most preferred cellulosic reactive dye fixing agents is one of the hydroxyethylene urea derivatives class commercialised under the tradename of Indosol CR from Clariant. Still other most preferred cellulosic reactive dye fixing agents are commercialised under the tradename Rewin DWR and Rewin WBS from CHT R. Beitlich.
- the preferred agent for use in the present invention are cationic, in particular polycationic dye fixing agents.
- a typical amount of the dye fixing agent to be employed in the composition of the invention is from 0.01% to 50% by weight, preferably from 0.01% to 25% by weight, more preferably from 1% to 10% by weight, most preferably from 1.5% to 5% active by weight of the composition.
- a divalent salt is an essential ingredient of the invention. By use of this ingredient, the fabric appearance, in particular the color protection of the fabrics, is improved. Not to be bound by theory, it is believed that the salt acts by reducing the dye solubility.
- a divalent salt is defined as a salt which in water dissociates and releases a metal ion with a valence of two.
- the salt useful in the present invention is made of earth alkaline metal, and is a compound that can form hydrates upon crystallization.
- the salt for use in the present invention have the following formula: AM; wherein A is a cation.
- This cation is an earth alkaline metal, preferably selected from magnesium, calcium, more preferably magnesium, and wherein M is a couteranion selected from sulfate, chloride, nitrate, carbonate, borate, and carboxylates.
- Preferred salts are salts selected from magnesium, calcium and mixtures thereof; more preferably salt of magnesium.
- Particularly preferred salts for use herein are selected from magnesium sulphate, magnesium bicarbonate, magnesium chloride, magnesium borate, magnesium citrate, and mixtures thereof, more preferably are selected from magnesium sulphate, magnesium chloride and mixtures thereof.
- the amount of the divalent salt to be employed in the composition of the invention is between 3% and 10%, by weight of the composition.
- a weight ratio of the divalent salt to dye fixing agent greater than 1:1.
- the fabric care compositions may also comprise one or more of the following colour care component:
- Amino-functional polymers advantageously provide care to the colors of fabrics.
- components which are polymers as defined herein before or those described hereinafter as dye fixing agents are included within this definition.
- the amino-functional polymers suitable for use in the present invention are water-soluble or dispersible, polyamines.
- the amino-functional polymers for use herein have a molecular weight between 150 and 10 6 , preferably between 600 and 20,000, most preferably between 1000 and 10,000.
- These polyamines comprise backbones that can be either linear or cyclic.
- the polyamine backbones can also comprise polyamine branching chains to a greater or lesser degree.
- the polyamine backbones described herein are modified in such a manner that at least one, preferably each nitrogen of the polyamine chain is thereafter described in terms of a unit that is substituted, quaternized, oxidized, or combinations thereof.
- the term "modification" as it relates to the chemical structure of the polyamines is defined as replacing a backbone - NH hydrogen atom by an R' unit (substitution), quaternizing a backbone nitrogen (quaternized) or oxidizing a backbone nitrogen to the N-oxide (oxidized).
- substitution and “substitution” are used interchangably when referring to the process of replacing a hydrogen atom attached to a backbone nitrogen with an R' unit. Quaternization or oxidation may take place in some circumstances without substitution, but substitution is preferably accompanied by oxidation or quaternization of at least one backbone nitrogen.
- linear or non-cyclic polyamine backbones that comprise the amino-functional polymer have the general formula:
- cyclic polyamine backbones that comprise the amino-functional polymer have the general formula:
- the above backbones prior to optional but preferred subsequent modification comprise primary, secondary and tertiary amine nitrogens connected by R "linking" units
- primary amine nitrogens comprising the backbone or branching chain once modified are defined as V or Z "terminal" units.
- V or Z "terminal” units when a primary amine moiety, located at the end of the main polyamine backbone or branching chain having the structure H 2 N-[R]- is modified according to the present invention, it is thereafter defined as a V "terminal" unit, or simply a V unit.
- some or all of the primary amine moieties can remain unmodified subject to the restrictions further described herein below. These unmodified primary amine moieties by virtue of their position in the backbone chain remain "terminal" units.
- a primary amine moiety located at the end of the main polyamine backbone having the structure -NH 2 is modified according to the present invention, it is thereafter defined as a Z "terminal" unit, or simply a Z units. This unit can remain unmodified subject to the restrictions further described herein below.
- secondary amine nitrogens comprising the backbone or branching chain once modified are defined as W "backbone” units.
- W backbone
- the major constituent of the backbones and branching chains of the present invention, having the structure is modified according to the present invention it is thereafter defined as a W "backbone” unit, or simply a W unit.
- some or all of the secondary amine moieties can remain unmodified. These unmodified secondary amine moieties by virtue of their position in the backbone chain remain "backbone” units.
- tertiary amine nitrogens comprising the backbone or branching chain once modified are further referred to as Y "branching" units.
- Y tertiary amine nitrogens
- a tertiary amine moiety which is a chain branch point of either the polyamine backbone or other branching chains or rings, having the structure is modified according to the present invention, it is thereafter defined as a Y "branching" unit, or simply a Y unit.
- some or all or the tertiary amine moieties can remain unmodified. These unmodified tertiary amine moieties by virtue of their position in the backbone chain remain “branching" units.
- the R units associated with the V, W and Y unit nitrogens which serve to connect the polyamine nitrogens are described herein below.
- the final modified structure of the polyamines of the present invention can be therefore represented by the general formula V (n+1) W m Y n Z for linear amino-functional polymer and by the general formula V (n-k+1) W m Y n Y ' k Z for cyclic amino-functional polymer.
- a Y' unit of the formula serves as a branch point for a backbone or branch ring.
- the polyamine backbone has the formula therefore comprising no Z terminal unit and having the formula V n-k W m Y n Y' k wherein k is the number of ring forming branching units.
- the polyamine backbones of the present invention comprise no rings.
- the ratio of the index n to the index m relates to the relative degree of branching.
- a fully non-branched linear modified polyamine according to the present invention has the formula VW m Z that is, n is equal to 0. The greater the value of n (the lower the ratio of m to n), the greater the degree of branching in the molecule.
- the value for m ranges from a minimum value of 2 to 700, preferably 4 to 400, however larger values of m, especially when the value of the index n is very low or nearly 0, are also preferred.
- Each polyamine nitrogen whether primary, secondary or tertiary, once modified according to the present invention, is further defined as being a member of one of three general classes; simple substituted, quaternized or oxidized. Those polyamine nitrogen units not modified are classed into V, W, Y, Y' or Z units depending on whether they are primary, secondary or tertiary nitrogens. That is unmodified primary amine nitrogens are V or Z units, unmodified secondary amine nitrogens are W units or Y' units and unmodified tertiary amine nitrogens are Y units for the purposes of the present invention.
- V "terminal" units having one of three forms:
- Modified secondary amine moieties are defined as W "backbone" units having one of three forms:
- modified secondary amine moieties are defined as Y' units having one of three forms:
- Modified tertiary amine moieties are defined as Y "branching" units having one of three forms:
- a primary amine unit comprising one R' unit in the form of a hydroxyethyl moiety is a V terminal unit having the formula (HOCH 2 CH 2 )HN-.
- Non-cyclic polyamine backbones according to the present invention comprise only one Z unit whereas cyclic polyamines can comprise no Z units.
- the Z "terminal” unit can be substituted with any of the R' units described further herein below, except when the Z unit is modified to form an N-oxide. In the case where the Z unit nitrogen is oxidized to an N-oxide, the nitrogen must be modified and therefore R' cannot be a hydrogen.
- the polyamines of the present invention comprise backbone R "linking" units that serve to connect the nitrogen atoms of the backbone.
- R units comprise units that for the purposes of the present invention are referred to as “hydrocarbyl R” units and “oxy R” units.
- the "hydrocarbyl" R units are C 2 -C 12 alkylene, C 4 -C 12 alkenylene, C 3 -C 12 hydroxyalkylene wherein the hydroxyl moiety may take any position on the R unit chain except the carbon atoms directly connected to the polyamine backbone nitrogens; C 4 -C 12 dihydroxyalkylene wherein the hydroxyl moieties may occupy any two of the carbon atoms of the R unit chain except those carbon atoms directly connected to the polyamine backbone nitrogens; C 8 -C 12 dialkylarylene which for the purpose of the present invention are arylene moieties having two alkyl substituent groups as part of the linking chain.
- a dialkylarylene unit has the formula although the unit need not be 1,4-substituted, but can also be 1,2 or 1,3 substituted C 2 -C 12 alkylene, preferably ethylene, 1,2-propylene, and mixtures thereof, more preferably ethylene.
- the "oxy" R units comprise -(R 1 O) x R 5 (OR 1 ) x -, -CH 2 CH(OR 2 )CH 2 O) z (R 1 O) y R 1 (OCH 2 CH(OR 2 )CH 2 ) w -, CH 2 CH(OR 2 )CH 2 -, -(R 1 O) x R 1 -, and mixtures thereof.
- R units are selected from the group consisting of C 2 -C 12 alkylene, C 3 -C 12 hydroxyalkylene, C 4 -C 12 dihydroxyalkylene, C 8 -C 12 dialkylarylene, -(R 1 O) x R 1 -, -CH 2 CH(OR 2 )CH 2 -, -(CH 2 CH(OH)CH 2 O) z (R 1 O) y R 1 (OCH 2 CH-(OH)CH 2 ) w -, -(R 1 O) x R 5 (OR 1 ) x - , more preferred R units are C 2 -C 12 alkylene, C 3 -C 12 hydroxy-alkylene, C 4 -C 12 dihydroxyalkylene, -(R 1 O) x R 1 -, -(R 1 O) x R 5 (OR 1 ) x -, -(CH 2 CH(OH)CH 2 O) z (R 1 O) y R 1 (OCH 2 CHCH
- R 1 units are C 2 -C 6 alkylene, and mixtures thereof, preferably ethylene.
- R 2 is hydrogen, and -(R 1 O) x B, preferably hydrogen.
- R 3 is C 1 -C 18 alkyl, C 7 -C 12 arylalkylene, C 7 -C 12 alkyl substituted aryl, C 6 -C 12 aryl, and mixtures thereof , preferably C 1 -C 12 alkyl, C 7 -C 12 arylalkylene, more preferably C 1 -C 12 alkyl, most preferably methyl.
- R 3 units serve as part of R' units described herein below.
- R 4 is C 1 -C 12 alkylene, C 4 -C 12 alkenylene, C 8 -C 12 arylalkylene, C 6 -C 10 arylene, preferably C 1 -C 10 alkylene, C 8 -C 12 arylalkylene, more preferably C 2 -C 8 alkylene, most preferably ethylene or butylene.
- R 5 is C 1 -C 12 alkylene, C 3 -C 12 hydroxyalkylene, C 4 -C 12 dihydroxyalkylene, C 8 -C 12 dialkylarylene, -C(O)-, -C(O)NHR 6 NHC(O)-, -C(O)(R 4 ) r C(O)-, -R 1 (OR 1 )-, -CH 2 CH(OH)CH 2 O(R 1 O) y R 1 OCH 2 CH(OH)CH 2 -, -C(O)(R 4 ) r C(O)-, -CH 2 CH(OH)CH 2 -, R 5 is preferably ethylene, -C(O)-, -C(O)NHR 6 NHC(O)-, -R 1 (OR 1 )-, -CH 2 CH(OH)CH 2 -, -CH 2 CH(OH)CH 2 O(R 1 O) y R 1 OCH 2 CH-(OH)CH 2
- the preferred "oxy" R units are further defined in terms of the R 1 , R 2 , and R 5 units.
- Preferred "oxy" R units comprise the preferred R 1 , R 2 , and R 5 units.
- the preferred cotton soil release agents of the present invention comprise at least 50% R 1 units that are ethylene.
- Preferred R 1 , R 2 , and R 5 units are combined with the "oxy" R units to yield the preferred "oxy” R units in the following manner.
- R' units are selected from the group consisting of hydrogen, C 1 -C 22 alkyl, C 3 -C 22 alkenyl, C 7 -C 22 arylalkyl, C 2 -C 22 hydroxyalkyl, -(CH 2 ) p CO 2 M, -(CH 2 ) q SO 3 M, -CH(CH 2 CO 2 M)CO 2 M, -(CH 2 ) p PO 3 M, -(R 1 O) m B, -C(O)R 3 , preferably hydrogen, C 2 -C 22 hydroxyalkylene, benzyl, C 1 -C 22 alkylene, -(R 1 O) m B, -C(O)R 3 , -(CH 2 ) p CO 2 M, -(CH 2 ) q SO 3 M, -CH(CH 2 CO 2 M)CO 2 M, more preferably C 1 -C 22 alkylene, -(R 1 O) x B, -C(O
- R' units do not comprise hydrogen atom when the V, W or Z units are oxidized, that is the nitrogens are N-oxides.
- the backbone chain or branching chains do not comprise units of the following structure:
- R' units do not comprise carbonyl moieties directly bonded to a nitrogen atom when the V, W or Z units are oxidized, that is, the nitrogens are N-oxides.
- the R' unit -C(O)R 3 moiety is not bonded to an N-oxide modified nitrogen, that is, there are no N-oxide amides having the structure or combinations thereof.
- B is hydrogen, C 1 -C 6 alkyl, -(CH 2 ) q SO 3 M, -(CH 2 ) p CO 2 M, -(CH 2 ) q (CHSO 3 M)CH 2 SO 3 M, -(CH 2 ) q (CHSO 2 M)CH 2 SO 3 M, -(CH 2 ) p PO 3 M, -PO 3 M, preferably hydrogen, -(CH 2 ) q SO 3 M, -(CH 2 ) q (CHSO 3 M)CH 2 SO 3 M, -(CH 2 ) q -(CHSO 2 M)CH 2 SO 3 M, more preferably hydrogen or -(CH 2 ) q SO 3 M.
- M is hydrogen or a water soluble cation in sufficient amount to satisfy charge balance.
- a sodium cation equally satisfies -(CH 2 ) p CO 2 M, and -(CH 2 ) q SO 3 M, thereby resulting in -(CH 2 ) p CO 2 Na, and -(CH 2 ) q SO 3 Na moieties.
- More than one monovalent cation, (sodium, potassium) can be combined to satisfy the required chemical charge balance.
- more than one anionic group may be charge balanced by a divalent cation, or more than one mono-valent cation may be necessary to satisfy the charge requirements of a poly-anionic radical.
- a -(CH 2 ) p PO 3 M moiety substituted with sodium atoms has the formula -(CH 2 ) p PO 3 Na 3 .
- Divalent cations such as calcium (Ca 2+ ) or magnesium (Mg 2+ ) may be substituted for or combined with other suitable mono-valent water soluble cations.
- Preferred cations are sodium and potassium, more preferred is sodium.
- X is a water soluble anion such as chlorine (Cl - ), bromine (Br - ) and iodine (I - ) or X can be any negatively charged radical such as sulfate (SO 4 2- ) and methosulfate (CH 3 SO 3 - ).
- indices have the following values: p has the value from 1 to 6, q has the value from 0 to 6; r has the value 0 or 1; w has the value 0 or 1, x has the value from 1 to 100; y has the value from 0 to 100; z has the value 0 or 1; m has the value from 2 to 700, preferably from 4 to 400, n has the value from 0 to 350, preferably from 0 to 200; m + n has the value of at least 5.
- x has a value lying in the range of from 1 to 20, preferably from 1 to 10.
- the preferred amino-functional polymers of the present invention comprise polyamine backbones wherein less than 50% of the R groups comprise "oxy" R units, preferably less than 20%, more preferably less than 5%, most preferably the R units comprise no "oxy" R units.
- the most preferred amino-functional polymers which comprise no "oxy" R units comprise polyamine backbones wherein less than 50% of the R groups comprise more than 3 carbon atoms.
- ethylene, 1,2-propylene, and 1,3-propylene comprise 3 or less carbon atoms and are the preferred "hydrocarbyl" R units. That is when backbone R units are C 2 -C 12 alkylene, preferred is C 2 -C 3 alkylene, most preferred is ethylene.
- the amino-functional polymers of the present invention comprise modified homogeneous and non-homogeneous polyamine backbones, wherein 100% or less of the -NH units are modified.
- the term "homogeneous polyamine backbone” is defined as a polyamine backbone having R units that are the same (i.e., all ethylene). However, this sameness definition does not exclude polyamines that comprise other extraneous units comprising the polymer backbone which are present due to an artifact of the chosen method of chemical synthesis.
- ethanolamine may be used as an "initiator" in the synthesis of polyethyleneimines, therefore a sample of polyethyleneimine that comprises one hydroxyethyl moiety resulting from the polymerization "initiator” would be considered to comprise a homogeneous polyamine backbone for the purposes of the present invention.
- a polyamine backbone comprising all ethylene R units wherein no branching Y units are present is a homogeneous backbone.
- a polyamine backbone comprising all ethylene R units is a homogeneous backbone regardless of the degree of branching or the number of cyclic branches present.
- non-homogeneous polymer backbone refers to polyamine backbones that are a composite of various R unit lengths and R unit types.
- a non-homogeneous backbone comprises R units that are a mixture of ethylene and 1,2-propylene units.
- a mixture of "hydrocarbyl” and “oxy” R units is not necessary to provide a non-homogeneous backbone.
- Preferred amino-functional polymers of the present invention comprise homogeneous polyamine backbones that are totally or partially substituted by polyethyleneoxy moieties, totally or partially quaternized amines, nitrogens totally or partially oxidized to N-oxides, and mixtures thereof.
- polyethyleneoxy moieties totally or partially quaternized amines
- nitrogens totally or partially oxidized to N-oxides, and mixtures thereof.
- backbone amine nitrogens must be modified in the same manner, the choice of modification being left to the specific needs of the formulator.
- the degree of ethoxylation is also determined by the specific requirements of the formulator.
- the preferred polyamines that comprise the backbone of the compounds of the present invention are generally polyalkyleneimines (PAI's), preferably polyethyleneimines (PEI's), or PEI's connected by moieties having longer R units than the parent PAI's or PEI's.
- PAI's polyalkyleneimines
- PEI's polyethyleneimines
- PEI's polyethyleneimines
- Preferred amine polymer backbones comprise R units that are C 2 alkylene (ethylene) units, also known as polyethylenimines (PEI's).
- Preferred PEI's have at least moderate branching, that is the ratio of m to n is less than 4:1, however PEI's having a ratio of m to n of 2:1 are most preferred.
- Preferred backbones, prior to modification have the general formula: wherein R', m and n are the same as defined herein above. Preferred PEI's will have a molecular weight greater than 200 daltons.
- the relative proportions of primary, secondary and tertiary amine units in the polyamine backbone will vary, depending on the manner of preparation.
- Each hydrogen atom attached to each nitrogen atom of the polyamine backbone chain represents a potential site for subsequent substitution, quaternization or oxidation.
- polyamines can be prepared, for example, by polymerizing ethyleneimine in the presence of a catalyst such as carbon dioxide, sodium bisulfite, sulfuric acid, hydrogen peroxide, hydrochloric acid, acetic acid.
- a catalyst such as carbon dioxide, sodium bisulfite, sulfuric acid, hydrogen peroxide, hydrochloric acid, acetic acid.
- Specific methods for preparing these polyamine backbones are disclosed in U.S. Patent 2,182,306, Ulrich et al., issued December 5, 1939; U.S. Patent 3,033,746, Mayle et al., issued May 8, 1962; U.S. Patent 2,208,095, Esselmann et al., issued July 16, 1940; U.S. Patent 2,806,839, Crowther, issued September 17, 1957; and U.S. Patent 2,553,696, Wilson, issued May 21, 1951.
- the present invention allows the formulator to have a portion of the secondary amine nitrogens ethoxylated while having other secondary amine nitrogens oxidized to N-oxides.
- This also applies to the primary amine nitrogens, in that the formulator may choose to modify all or a portion of the primary amine nitrogens with one or more substituents prior to oxidation or quaternization. Any possible combination of R' groups can be substituted on the primary and secondary amine nitrogens, except for the restrictions described herein above.
- amino-functional polymer suitable for use herein are poly(ethyleneimine) with a MW 1200, hydroxyethylated poly(ethyleneimine) from Polysciences, with a MW 2000, and 80% hydroxyethylated poly(ethyleneimine) from Aldrich. Still other suitable amino-functional polymer are oligoamine of low molecular weight. Most particularly preferred for use herein are oligoamines selected from 1,4-Bis(3-aminopropyl)piperazine, N,N-Bis(3-aminopropyl)1,3-propanediamine, and mixtures therof.
- a typical amount of amino-functional polymer to be employed in the composition of the invention is preferably up to 90% by weight, preferably from 0.01% to 50% active by weight, more preferably from 0.1% to 20% by weight and most preferably from 0.5% to 15% by weight of the composition.
- compositions of the present invention can further contain a crystal growth inhibitor component, preferably an organodiphosphonic acid component, and/or organo monophosphonic acid, incorporated preferably at a level of from 0.01% to 5%, more preferably from 0.1% to 2% by weight of the compositions.
- a crystal growth inhibitor component preferably an organodiphosphonic acid component, and/or organo monophosphonic acid, incorporated preferably at a level of from 0.01% to 5%, more preferably from 0.1% to 2% by weight of the compositions.
- organo diphosphonic acid it is meant herein an organo diphosphonic acid which does not contain nitrogen as part of its chemical structure. This definition therefore excludes the organo aminophosphonates, which however may be included in compositions of the invention as heavy metal ion sequestrant components.
- the organo diphosphonic acid is preferably a C 1 -C 4 diphosphonic acid, more preferably a C 2 diphosphonic acid, such as ethylene diphosphonic acid, or most preferably ethane 1-hydroxy-1,1-diphosphonic acid (HEDP) and may be present in partially or fully ionized form, particularly as a salt or complex.
- HEDP ethane 1-hydroxy-1,1-diphosphonic acid
- crystal growth inhibitor are the organic monophosphonic acid Organo monophosphonic acid or one of its salts or complexes is also suitable for use herein as a CGI.
- organo monophosphonic acid it is meant herein an organo monophosphonic acid which does not contain nitrogen as part of its chemical structure. This definition therefore excludes the organo aminophosphonates, which however may be included in compositions of the invention as heavy metal ion sequestrants.
- the organo monophosphonic acid component may be present in its acid form or in the form of one of its salts or complexes with a suitable counter cation.
- any salts/complexes are water soluble, with the alkali metal and alkaline earth metal salts/complexes being especially preferred.
- a prefered organo monophosphonic acid is 2-phosphonobutane-1,2,4-tricarboxylic acid commercially available from Bayer under the tradename of Bayhibit.
- Still other components may be suitable for use in the present invention are as follows:
- Soil Release agents are desirably used in fabric care compositions of the present invention. Any polymeric soil release agent known to those skilled in the art can optionally be employed in the compositions of this invention. Polymeric soil release agents are characterized by having both hydrophilic segments, to hydrophilize the surface of hydrophobic fibers, such as polyester and nylon, and hydrophobic segments, to deposit upon hydrophobic fibers and remain adhered thereto through completion of washing and rinsing cycles and, thus, serve as an anchor for the hydrophilic segments. This can enable stains occurring subsequent to treatment with the soil release agent to be more easily cleaned in later washing procedures.
- soil release agents will generally comprise from 0.01% to 10.0%, by weight, of the detergent compositions herein, typically from 0.1% to 5%, preferably from 0.2% to 3.0%.
- soil release agents include the METOLOSE SM100, METOLOSE SM200 manufactured by Shin-etsu Kagaku Kogyo K.K., SOKALAN type of material, e.g., SOKALAN HP-22, available from BASF (Germany), ZELCON 5126 (from Dupont) and MILEASE T (from ICI).
- composition When the composition is formulated as a softening composition, it will also comprises a fabric softening compound.
- Typical levels of incorporation of the softening compound in the composition are of from 1% to 80% by weight, preferably from 5% to 75%, more preferably from 15% to 70%, and even more preferably from 19% to 65%, by weight of the composition.
- Typical of the cationic softening components are the quaternary ammonium compounds or amine precursors thereof as defined hereinafter.
- An example of a preferred fabric softener active is a mixture of quaternized amines having the formula: wherein R is preferably methyl; R 1 is a linear or branched alkyl or alkenyl chain comprising at least 11 atoms, preferably at least 15 atoms.
- the unit -O 2 CR 1 represents a fatty acyl unit which is typically derived from a triglyceride source.
- the triglyceride source is preferably derived from tallow, partially hydrogenated tallow, lard, partially hydrogenated lard, vegetable oils and/or partially hydrogenated vegetable oils, such as, canola oil, safflower oil, peanut oil, sunflower oil, corn oil, soybean oil, tall oil, rice bran oil, and mixtures of these oils.
- the preferred fabric softening actives of the present invention are the Diester and/or Diamide Quaternary Ammonium (DEQA) compounds, the diesters and diamides having the formula: wherein R, R 1 , X, and n are the same as defined herein above for formulas (1) and (2), and Q has the formula:
- DEQA Diester and/or Diamide Quaternary Ammonium
- These preferred fabric softening actives are formed from the reaction of an amine with a fatty acyl unit to form an amine intermediate having the formula: wherein R is preferably methyl, Q and R 1 are as defined herein before; followed by quaternization to the final softener active.
- Non-limiting examples of preferred amines which are used to form the DEQA fabric softening actives according to the present invention include methyl bis(2-hydroxyethyl)amine having the formula: methyl bis(2-hydroxypropyl)amine having the formula: methyl (3-aminopropyl) (2-hydroxyethyl)amine having the formula: methyl bis(2-aminoethyl)amine having the formula: triethanol amine having the formula: di(2-aminoethyl) ethanolamine having the formula:
- the counterion, X (-) above can be any softener-compatible anion, preferably the anion of a strong acid, for example, chloride, bromide, methylsulfate, ethylsulfate, sulfate, nitrate, more preferably chloride or methyl sulfate.
- the anion can also, but less preferably, carry a double charge in which case X (-) represents half a group.
- Tallow and canola oil are convenient and inexpensive sources of fatty acyl units which are suitable for use in the present invention as R 1 units.
- the following are non-limiting examples of quaternary ammonium compounds suitable for use in the compositions of the present invention.
- the term "tallowyl” as used herein below indicates the R 1 unit is derived from a tallow triglyceride source and is a mixture of fatty alkyl or alkenyl units.
- canolyl refers to a mixture of fatty alkyl or alkenyl units derived from canola oil.
- quaternay ammoniun softening compounds are methylbis(tallowamidoethyl)(2-hydroxyethyl)ammonium methylsulfate and methylbis(hydrogenated tallowamidoethyl)(2-hydroxyethyl)ammonium methylsulfate; these materials are available from Witco Chemical Company under the trade names Varisoft® 222 and Varisoft® 110, respectively.
- the level of unsaturation contained within the tallow, canola, or other fatty acyl unit chain can be measured by the Iodine Value (IV) of the corresponding fatty acid, which in the present case should preferably be in the range of from 5 to 100 with two categories of compounds being distinguished, having a IV below or above 25.
- IV Iodine Value
- fabric softener actives are derived from fatty acyl groups wherein the terms “tallowyl” and canolyl” in the above examples are replaced by the terms “cocoyl, palmyl, lauryl, oleyl, ricinoleyl, stearyl, palmityl,” which correspond to the triglyceride source from which the fatty acyl units are derived.
- These alternative fatty acyl sources can comprise either fully saturated, or preferably at least partly unsaturated chains.
- R units are preferably methyl, however, suitable fabric softener actives are described by replacing the term "methyl” in the above examples in Table II with the units "ethyl, ethoxy, propyl, propoxy, isopropyl, butyl, isobutyl and t-butyl.
- the counter ion, X in the examples of Table II can be suitably replaced by bromide, methylsulfate, formate, sulfate, nitrate, and mixtures thereof.
- the anion, X is merely present as a counterion of the positively charged quaternary ammonium compounds. The scope of this invention is not considered limited to any particular anion.
- the pH of the compositions herein is an important parameter of the present invention. Indeed, it influences the stability of the quaternary ammonium or amine precursors compounds, especially in prolonged storage conditions.
- the pH as defined in the present context, is measured in the neat compositions at 20 °C. While these compositions are operable at pH of less than about 6.0, for optimum hydrolytic stability of these compositions, the neat pH, measured in the above-mentioned conditions, must preferably be in the range of from 2.0 to 5, preferably in the range of 2.5 to 4.5, preferably 2.5 to 3.5.
- the pH of these compositions herein can be regulated by the addition of a Bronsted acid.
- Suitable acids include the inorganic mineral acids, carboxylic acids, in particular the low molecular weight (C 1 -C 5 ) carboxylic acids, and alkylsulfonic acids.
- Suitable inorganic acids include HCl, H 2 SO 4 , HNO 3 and H 3 PO 4 .
- Suitable organic acids include formic, acetic, citric, methylsulfonic and ethylsulfonic acid.
- Preferred acids are citric, hydrochloric, phosphoric, formic, methylsulfonic acid, and benzoic acids.
- the diester when specified, it will include the monoester that is normally present in manufacture. For softening, under no/low detergent carry-over laundry conditions the percentage of monoester should be as low as possible, preferably no more than about 2.5%. However, under high detergent carry-over conditions, some monoester is preferred.
- the overall ratios of diester to monoester are from 100:1 to 2:1, preferably from 50:1 to 5:1, more preferably from 13:1 to 8:1. Under high detergent carry-over conditions, the di/monoester ratio is preferably about 11:1.
- the level of monoester present can be controlled in the manufacturing of the softener compound.
- Mixtures of actives of formula (1) and (2) may also be prepared.
- Examples of the above class cationic nitrogenous salts are the well-known dialkyldi methylammonium salts such as ditallowdimethylammonium chloride, ditallowdimethylammonium methylsulfate, di(hydrogenatedtallow)dimethylammonium chloride, distearyldimethylammonium chloride, dibehenyldimethylammonium chloride. Di(hydrogenatedtallow)di methylammonium chloride and ditallowdimethylammonium chloride are preferred.
- dialkyldimethyl ammonium salts examples include di(hydrogenatedtallow)dimethylammonium chloride (trade name Adogen® 442), ditallowdimethylammonium chloride (trade name Adogen® 470, Praepagen® 3445), distearyl dimethylammonium chloride (trade name Arosurf ® TA-100), all available from Witco Chemical Company.
- Dibehenyldimethylammonium chloride is sold under the trade name Kemamine Q-2802C by Humko Chemical Division of Witco Chemical Corporation.
- Dimethylstearylbenzyl ammonium chloride is sold under the trade names Varisoft® SDC by Witco Chemical Company and Ammonyx® 490 by Onyx Chemical Company.
- Suitable amine fabric softening compounds for use herein, which may be in amine form or cationic form are selected from:
- Compound (iii) is the compound having the formula: wherein R 1 is derived from oleic acid.
- softening active can also encompass mixed softening active agents.
- Preferred among the classes of softener compounds disclosed herein before are the diester or diamido quaternary ammonium fabric softening active compound (DEQA).
- DEQA diester or diamido quaternary ammonium fabric softening active compound
- Fully formulated fabric softening compositions may contain, in addition to the hereinbefore described components, one or more of the following ingredients.
- the liquid carrier employed in the instant compositions is preferably at least primarily water due to its low cost, relative availability, safety, and environmental compatibility.
- the level of water in the liquid carrier is preferably at least about 50%, most preferably at least about 60%, by weight of the carrier.
- Mixtures of water and low molecular weight, e.g., ⁇ about 200, organic solvent, e.g., lower alcohols such as ethanol, propanol, isopropanol or butanol are useful as the carrier liquid.
- Low molecular weight alcohols include monohydric, dihydric (glycol) trihydric (glycerol), and higher polyhydric (polyols) alcohols.
- compositions of the present invention may comprise one or more solvents which provide increased ease of formulation.
- ease of formulation solvents are all disclosed in WO 97/03169. This is particularly the case when formulating liquid, clear fabric softening compositions.
- the ease of formulation solvent system preferably comprises less than about 40%, preferably from 10% to 35%, more preferably from 12% to 25%, and even more preferably from 14% to 20%, by weight of the composition.
- the ease of formulation solvent is selected to minimize solvent odor impact in the composition and to provide a low viscosity to the final composition.
- isopropyl alcohol is not very effective and has a strong odor.
- n-Propyl alcohol is more effective, but also has a distinct odor.
- butyl alcohols also have odors but can be used for effective clarity/stability, especially when used as part of a ease of formulation solvent system to minimize their odor.
- the alcohols are also selected for optimum low temperature stability, that is they are able to form compositions that are liquid with acceptable low viscosities and translucent, preferably clear, down to about 40°F (about 4.4°C) and are able to recover after storage down to about 20°F (about minus 6.7°C).
- Suitable solvents can be selected based upon their octanol/water partition coefficient (P) as defined in WO 97103169.
- the ease of formulation solvents herein are selected from those having a ClogP of from 0.15 to 0.64, preferably from 0.25 to 0.62, and more preferably from 0.40 to 0.60, said ease of formulation solvent preferably being at least somewhat asymmetric, and preferably having a melting, or solidification, point that allows it to be liquid at, or near room temperature. Solvents that have a low molecular weight and are biodegradable are also desirable for some purposes.
- the more assymetric solvents appear to be very desirable, whereas the highly symmetrical solvents such as 1,7-heptanediol, or 1,4-bis(hydroxymethyl) cyclohexane, which have a center of symmetry, appear to be unable to provide the essential clear compositions when used alone, even though their ClogP values fall in the preferred range.
- the most preferred ease of formulation solvents can be identified by the appearance of the softener vesicles, as observed via cryogenic electron microscopy of the compositions that have been diluted to the concentration used in the rinse. These dilute compositions appear to have dispersions of fabric softener that exhibit a more unilamellar appearance than conventional fabric softener compositions. The closer to uni-lamellar the appearance, the better the compositions seem to perform. These compositions provide surprisingly good fabric softening as compared to similar compositions prepared in the conventional way with the same fabric softener active.
- Particularly preferred ease of formulation solvents include hexanediols such as 1,2-Hexanediol and 2-Ethyl-1,3-hexanediol and pentanediols such as 2,2,4-Trimethyl-1,3-pentanediol.
- compositions containing both saturated and unsaturated diester quaternary ammonium compounds can be prepared that are stable without the addition of concentration aids.
- the compositions of the present invention may require organic and/or inorganic concentration aids to go to even higher concentrations and/or to meet higher stability standards depending on the other ingredients.
- concentration aids which typically can be viscosity modifiers may be needed, or preferred, for ensuring stability under extreme conditions when particular softener active levels are used.
- the surfactant concentration aids are typically selected from the group consisting of (1) single long chain alkyl cationic surfactants; (2) nonionic surfactants; (3) amine oxides; (4) fatty acids; and (5) mixtures thereof.
- the total level is from 2% to 25%, preferably from 3% to 17%, more preferably from 4% to 15%, and even more preferably from 5% to 13% by weight of the composition.
- These materials can either be added as part of the active softener raw material, (I), e.g., the mono-long chain alkyl cationic surfactant and/or the fatty acid which are reactants used to form the biodegradable fabric softener active as discussed hereinbefore, or added as a separate component.
- the total level of dispersibility aid includes any amount that may be present as part of component (I).
- Inorganic viscosity/dispersibility control agents which can also act like or augment the effect of the surfactant concentration aids, include water-soluble, ionizable salts which can also optionally be incorporated into the compositions of the present invention.
- ionizable salts can be used. Examples of suitable salts are the halides of the Group IA and IIA metals of the Periodic Table of the Elements, e.g., calcium chloride, magnesium chloride, sodium chloride, potassium bromide, and lithium chloride.
- the ionizable salts are particularly useful during the process of mixing the ingredients to make the compositions herein, and later to obtain the desired viscosity.
- the amount of ionizable salts used depends on the amount of active ingredients used in the compositions and can be adjusted according to the desires of the formulator. Typical levels of salts used to control the composition viscosity are from 20 to 20,000 parts per million (ppm), preferably from 20 to 11,000 ppm, by weight of the composition.
- Alkylene polyammonium salts can be incorporated into the composition to give viscosity control in addition to or in place of the water-soluble, ionizable salts above.
- these agents can act as scavengers, forming ion pairs with anionic detergent carried over from the main wash, in the rinse, and on the fabrics, and may improve softness performance.
- alkylene polyammonium salts include I-lysine monohydrochloride and 1,5-diammonium 2-methyl pentane dihydrochloride.
- Stabilizers can be present in the compositions of the present invention.
- the term "stabilizer,” as used herein, includes antioxidants and reductive agents. These agents are present at a level of from 0% to 2%, preferably from 0.01% to 0.2%, more preferably from 0.035% to 0.1% for antioxidants, and more preferably from 0.01% to 0.2% for reductive agents. These assure good odor stability under long term storage conditions for the compositions and compounds stored in molten form. The use of antioxidants and reductive agent stabilizers is especially critical for low scent products (low perfume).
- antioxidants examples include a mixture of ascorbic acid, ascorbic palmitate, propyl gallate, available from Eastman Chemical Products, Inc., under the trade names Tenox® PG and Tenox S-1; a mixture of BHT (butylated hydroxytoluene), BHA (butylated hydroxyanisole), propyl gallate, and citric acid, available from Eastman Chemical Products, Inc., under the trade name Tenox-6; butylated hydroxytoluene, available from UOP Process Division under the trade name Sustane® BHT; tertiary butylhydroquinone, Eastman Chemical Products, Inc., as Tenox TBHQ; natural tocopherols, Eastman Chemical Products, Inc., as Tenox GT-1/GT-2; and butylated hydroxyanisole, Eastman Chemical Products, Inc., as BHA; long chain esters (C 8 -C 22 ) of gallic acid, e.g., dodecyl
- reductive agents examples include sodium borohydride, hypophosphorous acid, Irgafos® 168, and mixtures thereof.
- bactericides used in the compositions of this invention include glutaraldehyde, formaldehyde, 2-bromo-2-nitro-propane-1,3-diol sold by Inolex Chemicals, located in Philadelphia, Pennsylvania, under the trade name Bronopol®, and a mixture of 5-chloro-2-methyl-4-isothiazoline-3-one and 2-methyl-4-isothiazoline-3-one sold by Rohm and Haas Company under the trade name Kathon 1 to 1,000 ppm by weight of the agent.
- the present invention can contain a perfume. Suitable perfumes are disclosed in U.S. Pat. 5,500,138.
- perfume includes fragrant substance or mixture of substances including natural (i.e., obtained by extraction of flowers, herbs, leaves, roots, barks, wood, blossoms or plants), artificial (i.e., a mixture of different nature oils or oil constituents) and synthetic (i.e., synthetically produced) odoriferous substances.
- natural i.e., obtained by extraction of flowers, herbs, leaves, roots, barks, wood, blossoms or plants
- artificial i.e., a mixture of different nature oils or oil constituents
- synthetic i.e., synthetically produced
- perfumes are complex mixtures of a plurality of organic compounds.
- perfume ingredients useful in the perfumes of the present invention compositions include, but are not limited to, hexyl cinnamic aldehyde; amyl cinnamic aldehyde; amyl salicylate; hexyl salicylate; terpineol; 3,7-dimethyl- cis -2,6-octadien-1-ol; 2,6-dimethyl-2-octanol; 2,6-dimethyl-7-octen-2-ol; 3,7-dimethyl-3-octanol; 3,7-dimethyl- trans -2,6-octadien-1-ol; 3,7-dimethyl-6-octen-1-ol; 3,7-dimethyl-1-octanol; 2-methyl-3-(para-tert-butylphenyl)-propionaldehyde; 4-(4-hydroxy-4-methylpentyl)-3-cyclohexene-1-carbox
- fragrance materials include, but are not limited to, orange oil; lemon oil; grapefruit oil; bergamot oil; clove oil; dodecalactone gamma; methyl-2-(2-pentyl-3-oxo-cyclopentyl) acetate; beta-naphthol methylether; methyl-beta-naphthylketone; coumarin; decylaldehyde; benzaldehyde; 4-tert-butylcyclohexyl acetate; alpha,alpha-dimethylphenethyl acetate; methylphenylcarbinyl acetate; Schiff's base of 4-(4-hydroxy-4-methylpentyl)-3-cyclohexene-1-carboxaldehyde and methyl anthranilate; cyclic ethyleneglycol diester of tridecandioic acid; 3,7-dimethyl-2,6-octadiene-1-nitrile; i
- perfume components are geraniol; geranyl acetate; linalool; linalyl acetate; tetrahydrolinalool; citronellol; citronellyl acetate; dihydromyrcenol; dihydromyrcenyl acetate; tetrahydromyrcenol; terpinyl acetate; nopol; nopyl acetate; 2-phenylethanol; 2-phenylethyl acetate; benzyl alcohol; benzyl acetate; benzyl salicylate; benzyl benzoate; styrallyl acetate; dimethylbenzylcarbinol; trichloromethylphenylcarbinyl methylphenylcarbinyl acetate; isononyl acetate; vetiveryl acetate; vetiverol; 2-methyl-3-(p-tert-butylphenyl)-propanal; 2-methyl-3-(
- the perfumes useful in the present invention compositions are substantially free of halogenated materials and nitromusks.
- Suitable solvents, diluents or carriers for perfumes ingredients mentioned above are for examples, ethanol, isopropanol, diethylene glycol, monoethyl ether, dipropylene glycol, diethyl phthalate, triethyl citrate.
- the amount of such solvents, diluents or carriers incorporated in the perfumes is preferably kept to the minimum needed to provide a homogeneous perfume solution.
- Perfume can be present at a level of from 0% to 10%, preferably from 0.1% to 5%, and more preferably from 0.2% to 3%, by weight of the finished composition.
- Fabric softener compositions of the present invention provide improved fabric perfume deposition.
- Perfume ingredients may also be suitably added as releasable fragrances, for example, as pro-perfumes or pro-fragrances as described in U.S. 5,652,205 Hartman et al., issued July 29, 1997, WO95/04809, WO96/02625, WO 98/07811 filed 19 August 1997 and claiming priority of 19 August 1996, and EP-A-0,752,465.
- compositions and processes herein can optionally employ one or more enzymes such as lipases, proteases, cellulase, amylases and peroxidases.
- a preferred enzyme for use herein is a cellulase enzyme. Indeed, this type of enzyme will further provide a color care benefit to the treated fabric.
- Cellulases usable herein include both bacterial and fungal types, preferably having a pH optimum between 5 and 9.5. U.S.
- 4,435,307 discloses suitable fungal cellulases from Humicola insolens or Humicola strain DSM1800 or a cellulase 212-producing fungus belonging to the genus Aeromonas , and cellulase extracted from the hepatopancreas of a marine mollusk, Dolabella Auricula Solander. Suitable cellulases are also disclosed in GB-A-2.075.028; GB-A-2.095.275 and DE-OS-2.247.832. CAREZYME® and CELLUZYME® (Novo) are especially useful.
- compositions herein will typically comprise from 0.001% to 5%, preferably 0.01%-1% by weight of a commercial enzyme preparation.
- activity units are preferred (e.g. CEVU or cellulase Equivalent Viscosity Units).
- compositions of the present invention can contain cellulase enzymes at a level equivalent to an activity from 0.5 to 1000 CEVU/gram of composition.
- Cellulase enzyme preparations used for the purpose of formulating the compositions of this invention typically have an activity comprised between 1,000 and 10,000 CEVU/gram in liquid form, around 1,000 CEVU/gram in solid form.
- the present invention can include optional components conventionally used in textile treatment compositions, for example: brighteners, chlorine scavengers such the non-polymeric one described in EP-A-0,841,391, colorants; surfactants; anti-shrinkage agents; fabric crisping agents; spotting agents; germicides; fungicides; anti-oxidants such as butylated hydroxy toluene, anticorrosion agents, antifoam agents, sun-protection agents such as described in EP-A-0,773,987.
- brighteners chlorine scavengers such the non-polymeric one described in EP-A-0,841,391, colorants
- surfactants anti-shrinkage agents
- fabric crisping agents fabric crisping agents
- spotting agents germicides
- fungicides fungicides
- anti-oxidants such as butylated hydroxy toluene, anticorrosion agents, antifoam agents, sun-protection agents such as described in EP-A-
- the present invention can also include other compatible ingredients, including those as disclosed in WO96/02625, WO96/21714, and WO96121715, and dispersible polyolefin such as Velustrol® as disclosed in co-pending application WO 97/28235.
- the present invention can also contain optional chelating agents such as ethylenediamine-N,N'-disuccinic acid, (S,S) isomer in the form of its sodium salt (EDDS).
- adjunct ingredients may also be used to provide fully-formulated deteregent compositions.
- Typical of such conventional deteresive ingredients include detersive surfactants, builders, bleaching compounds, and mixtures thereof, such as described in WO 98/20098.
- the colour care composition can take a variety of physical forms including liquid such as aqueous or non-aqueous compositions and solid forms such as solid particulate forms. Such compositions may be applied onto a substrate such as a dryer sheet product, used as a rinse added product, or as a spray or foam product.
- a method for preventing or reducing the colour fading of fabrics which comprises the steps of contacting the fabric with a composition of the invention. Also herein provided is the use of said composition of the invention to prevent or reduce the colour fading of fabrics
- the treated fabric had better fabric appearance, especially in term of their color protection, compared to fabrics which had not been treated with such a composition of the invention.
- the method is performed in a domestic process.
- domestic process it is meant any step conventional to domestic laundering such as soaking, washing, rinsing, and/or spraying as well as by means of a dryer sheet onto which is adsorbed the composition.
- the contacting occurs in the step of a laundering process, preferably a rinse step of a laundry process, which more preferably occurs at a temperature range below 30°C, preferably between 5 and 25°C.
- Step A)-The ethoxylation is conducted in a 2 gallon (7,57 L) stirred stainless steel autoclave equipped for temperature measurement and control, pressure measurement, vacuum and inert gas purging, sampling, and for introduction of ethylene oxide as a liquid.
- a ⁇ 20 lb. (9,07 kg) net cylinder of ethylene oxide (ARC) is set up to deliver ethylene oxide as a liquid by a pump to the autoclave with the cylinder placed on a scale so that the weight change of the cylinder could be monitored.
- PEI polyethyleneimine
- the autoclave is then sealed and purged of air (by applying vacuum to minus 28'' Hg followed by pressurization with nitrogen to 250 psia, then venting to atmospheric pressure).
- the autoclave contents are heated to 130 °C while applying vacuum.
- the autoclave is charged with nitrogen to about 250 psia while cooling the autoclave to about 105 °C.
- Ethylene oxide is then added to the autoclave incrementally over time while closely monitoring the autoclave pressure, temperature, and ethylene oxide flow rate.
- the ethylene oxide pump is turned off and cooling is applied to limit any temperature increase resulting from any reaction exotherm.
- the temperature is maintained between 100 and 110 °C while the total pressure is allowed to gradually increase during the course of the reaction.
- the temperature is increased to 110 °C and the autoclave is allowed to stir for an additional hour. At this point, vacuum is applied to remove any residual unreacted ethylene oxide.
- Step B)- The reaction mixture is then deodorized by passing about 100 cu. ft. (2,83 m 3 ) of inert gas (argon or nitrogen) through a gas dispersion frit and through the reaction mixture while agitating and heating the mixture to 130 °C.
- inert gas argon or nitrogen
- the final reaction product is cooled slightly and collected in glass containers purged with nitrogen.
- Step A and B Vacuum is continuously applied while the autoclave is cooled to about 50 °C while introducing 376 g of a 25% sodium methoxide in methanol solution (1.74 moles, to achieve a 10% catalyst loading based upon PEI nitrogen functions).
- the methoxide solution is sucked into the autoclave under vacuum and then the autoclave temperature controller setpoint is increased to 130 °C.
- a device is used to monitor the power consumed by the agitator. The agitator power is monitored along with the temperature and pressure.
- Agitator power and temperature values gradually increase as methanol is removed from the autoclave and the viscosity of the mixture increases and stabilizes in about 1 hour indicating that most of the methanol has been removed.
- the mixture is further heated and agitated under vacuum for an additional 30 minutes. Vacuum is removed and the autoclave is cooled to 105 °C while it is being charged with nitrogen to 250 psia and then vented to ambient pressure. The autoclave is charged to 200 psia with nitrogen. Ethylene oxide is again added to the autoclave incrementally as before while closely monitoring the autoclave pressure, temperature, and ethylene oxide flow rate while maintaining the temperature between 100 and 110 °C and limiting any temperature increases due to reaction exotherm.
- PEI 1800 E3, PEI 1800 E4, PEI 1800 E15 and PEI 1800 E20 can be prepared by the above method by adjusting the reaction time and the relative amount of ethylene oxide used in the reaction.
- Step A)-The ethoxylation is conducted in a 2 gallon (7,57 L) stirred stainless steel autoclave equipped for temperature measurement and control, pressure measurement, vacuum and inert gas purging, sampling, and for introduction of ethylene oxide as a liquid.
- a ⁇ 20 lb. (9,07 kg) net cylinder of ethylene oxide (ARC) is set up to deliver ethylene oxide as a liquid by a pump to the autoclave with the cylinder placed on a scale so that the weight change of the cylinder could be monitored.
- a 750 g portion of polyethyleneimine (PEI) (having a listed average molecular weight of 1200 equating to about 0.625 moles of polymer and 17.4 moles of nitrogen functions) is added to the autoclave.
- the autoclave is then sealed and purged of air (by applying vacuum to minus 28'' Hg followed by pressurization with nitrogen to 250 psia, then venting to atmospheric pressure).
- the autoclave contents are heated to 130 °C while applying vacuum.
- the autoclave is charged with nitrogen to about 250 psia while cooling the autoclave to about 105 °C.
- Ethylene oxide is then added to the autoclave incrementally over time while closely monitoring the autoclave pressure, temperature, and ethylene oxide flow rate.
- the ethylene oxide pump is turned off and cooling is applied to limit any temperature increase resulting from any reaction exotherm.
- the temperature is maintained between 100 and 110 °C while the total pressure is allowed to gradually increase during the course of the reaction.
- Step B)- The reaction mixture is then deodorized by passing about 100 cu. ft. (2,83 m 3 ) of inert gas (argon or nitrogen) through a gas dispersion frit and through the reaction mixture while agitating and heating the mixture to 130 °C.
- inert gas argon or nitrogen
- the final reaction product is cooled slightly and collected in glass containers purged with nitrogen. In other preparations the neutralization and deodorization is accomplished in the reactor before discharging the product.
- Step A If a PEI 1200 E 7 is desired, the following step of catalyst addition will be included between Step A and B.
- Vacuum is continuously applied while the autoclave is cooled to about 50 °C while introducing 376 g of a 25% sodium methoxide in methanol solution (1.74 moles, to achieve a 10% catalyst loading based upon PEI nitrogen functions).
- the methoxide solution is sucked into the autoclave under vacuum and then the autoclave temperature controller setpoint is increased to 130 °C.
- a device is used to monitor the power consumed by the agitator.
- the agitator power is monitored along with the temperature and pressure. Agitator power and temperature values gradually increase as methanol is removed from the autoclave and the viscosity of the mixture increases and stabilizes in about 1 hour indicating that most of the methanol has been removed.
- the mixture is further heated and agitated under vacuum for an additional 30 minutes. Vacuum is removed and the autoclave is cooled to 105 °C while it is being charged with nitrogen to 250 psia and then vented to ambient pressure. The autoclave is charged to 200 psia with nitrogen. Ethylene oxide is again added to the autoclave incrementally as before while closely monitoring the autoclave pressure, temperature, and ethylene oxide flow rate while maintaining the temperature between 100 and 110 °C and limiting any temperature increases due to reaction exotherm. After the addition of 4500 g of ethylene oxide (resulting in a total of 7 moles of ethylene oxide per mole of PEI nitrogen function) is achieved over several hours, the temperature is increased to 110 ° C and the mixture stirred for an additional hour.
- reaction mixture is then collected in nitrogen purged containers and eventually transferred into a 22 L three neck round bottomed flask equipped with heating and agitation.
- the strong alkali catalyst is neutralized by adding 167 g methanesulfonic acid (1.74 moles).
- PEI 1200 E2, PEI 1200 E4, PEI 1200 E15 and PEI 1200 E20 can be prepared by the above method by adjusting the reaction time and the relative amount of ethylene oxide used in the reaction.
- compositions for use as dryer-added sheets are in accordance with the invention I II III * ⁇ IV * ⁇ V VI DOEQA 40 25 - - - - DHEQA - - 20 - - - DTDMAMS - - 20 12 60 SDASA 30 30 20 30 20 - Glycosperse S-20 - - 10 - - - Glycerol Monostearate - - - 20 10 - Clay 4 4 3 4 4 - Perfume 0.7 1.1 0.7 1.6 2.6 1.4 PEI 1800 E1 - 5 - - - - PEI 1200 E1 - - 4 2.2 - - PEI 1800 E3 2 - - - 5 7.0 Dye fix 2 2 5 4 2.2 5 3 Divalent salt 1 5 3 10 2 5 6 HEDP 0.2 - 0.5 - - 0.7 Glycolic - 0.2 - 0.2 - - Polycarboxylic - 0.2 - - 0.4
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- Chemical & Material Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Oil, Petroleum & Natural Gas (AREA)
- Wood Science & Technology (AREA)
- Organic Chemistry (AREA)
- Inorganic Chemistry (AREA)
- Health & Medical Sciences (AREA)
- Emergency Medicine (AREA)
- Detergent Compositions (AREA)
- Treatments For Attaching Organic Compounds To Fibrous Goods (AREA)
- Chemical Or Physical Treatment Of Fibers (AREA)
- Coloring (AREA)
- Silicates, Zeolites, And Molecular Sieves (AREA)
- Luminescent Compositions (AREA)
Claims (11)
- Farbpflegezusammensetzung, umfassend:i) ein Farbstofffixiermittel, undii) zwischen 3 und 10 Gew.-% der Zusammensetzung eines zweiwertigen Salzes.
- Zusammensetzung nach Anspruch 1, wobei das Farbstofffixiermittel ein kationisches Farbstofffixiermittel ist.
- Zusammensetzung nach Anspruch 1, wobei das Farbstofffixiermittel ein Cellulose-reaktives Farbstofffixiermittel ist, vorzugsweise das Cellulose-reaktive Farbstofffixiermittel ein Produkt ist, enthaltend die reaktive Gruppe der Reaktivfarbstoffklassen, gewählt aus Halogentriazinprodukten, Vinylsulfonverbindungen, Epichlorhydrinderivaten, Hydroxyethylenharnstoffderivaten, Formaldehydkondensationsprodukten, Polycarboxylaten, Glyoxal und Glutaraldehydderivaten und Mischungen hiervon.
- Zusammensetzung nach Anspruch 3, wobei das Cellulose-reaktive Farbstofffixiermittel ein Formaldehydkondensationsprodukt ist, gewählt aus den Kondensationsprodukten, abgeleitet aus Formaldehyd und einer Gruppe, gewählt aus einer Aminogruppe, einer Iminogruppe, einer Phenolgruppe, einer Harnstoffgruppe, einer Cyanamidgruppe und einer aromatischen Gruppe.
- Zusammensetzung nach mindestens einem der Ansprüche 1-4, wobei das Farbstofffixiermittel in einer Menge von 0,01 bis 50 Gew.-%, vorzugsweise 0.01 bis 25 Gew.-% der Zusammensetzung vorliegt.
- Zusammensetzung nach mindestens einem der Ansprüche 1-5, wobei das zweiwertige Salz aus Erdalkalimetallsalzen hergestellt ist, vorzugsweise gewählt aus Magnesium, Calcium und Mischungen hiervon.
- Zusammensetzung nach mindestens einem der Ansprüche 1-6, wobei das zweiwertige Salz aus Magnesiumsulfat, Magnesiumbicarbonat, Magnesiumchlorid, Magnesiumborat, Magnesiumcitrat und Mischungen hiervon gewählt ist, weiter vorzugsweise aus Magnesiumsulfat. Magnesiumchlorid und Mischungen hiervon gewählt ist.
- Verwendung einer Farbpflegezusammensetzung, umfassend:i) ein Farbstofffixiermittel, undii) zwischen 3 und 10 Gew.-% der Zusammensetzung eines zweiwertigen Salzes;
- Verfahren zur Verhinderung oder Verringerung des Farbverblassens von Textilien, umfassend die Schritte des Kontaktierens der Textilien mit einer Zusammensetzung gemäß mindestens einem der Ansprüche 1-7.
- Verfahren nach Anspruch 9, wobei das Verfahren bei einem häuslichen Prozess durchgeführt wird.
- Verfahren nach Anspruch 10, wobei das Verfahren bei einem Spülprozess durchgeführt wird.
Priority Applications (11)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP98870174A EP0979861B1 (de) | 1998-08-03 | 1998-08-03 | Gewebepflegmittel |
AT98870174T ATE284947T1 (de) | 1998-08-03 | 1998-08-03 | Gewebepflegmittel |
DE69828162T DE69828162T2 (de) | 1998-08-03 | 1998-08-03 | Gewebepflegmittel |
JP2000563755A JP2002522651A (ja) | 1998-08-03 | 1999-08-03 | 布地保護組成物 |
BRPI9912711-3A BR9912711B1 (pt) | 1998-08-03 | 1999-08-03 | composições de cuidados com tecido, uso das mesmas e método para prevenir ou reduzir o desbotamento da cor dos tecidos. |
CA002338762A CA2338762C (en) | 1998-08-03 | 1999-08-03 | Fabric care compositions |
CN99810185A CN1314938A (zh) | 1998-08-03 | 1999-08-03 | 织物护理组合物 |
US09/762,081 US6830593B1 (en) | 1998-08-03 | 1999-08-03 | Fabric care compositions |
PCT/US1999/017558 WO2000008128A1 (en) | 1998-08-03 | 1999-08-03 | Fabric care compositions |
AU52526/99A AU5252699A (en) | 1998-08-03 | 1999-08-03 | Fabric care compositions |
US10/970,421 US20050108835A1 (en) | 1998-08-03 | 2004-10-21 | Fabric care compositions |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP98870174A EP0979861B1 (de) | 1998-08-03 | 1998-08-03 | Gewebepflegmittel |
Publications (2)
Publication Number | Publication Date |
---|---|
EP0979861A1 EP0979861A1 (de) | 2000-02-16 |
EP0979861B1 true EP0979861B1 (de) | 2004-12-15 |
Family
ID=8237080
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP98870174A Expired - Lifetime EP0979861B1 (de) | 1998-08-03 | 1998-08-03 | Gewebepflegmittel |
Country Status (10)
Country | Link |
---|---|
US (1) | US20050108835A1 (de) |
EP (1) | EP0979861B1 (de) |
JP (1) | JP2002522651A (de) |
CN (1) | CN1314938A (de) |
AT (1) | ATE284947T1 (de) |
AU (1) | AU5252699A (de) |
BR (1) | BR9912711B1 (de) |
CA (1) | CA2338762C (de) |
DE (1) | DE69828162T2 (de) |
WO (1) | WO2000008128A1 (de) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8206462B2 (en) | 2009-03-20 | 2012-06-26 | Henkel Ag & Co. Kgaa | Use of polymers comprising carboxyl groups in combination with bivalent cations for creating a protective layer |
Families Citing this family (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2002048302A1 (en) * | 2000-12-15 | 2002-06-20 | Unilever Plc | Laundry composition |
EP1239025A3 (de) * | 2001-03-03 | 2003-09-03 | Clariant GmbH | Waschmittel und Wäschebehandlungsmittel enthaltend farbübertragungsinhibierend Farbfixiermittel |
DE10150724A1 (de) * | 2001-03-03 | 2003-04-17 | Clariant Gmbh | Waschmittel und Wäschebehandlungsmittel enthaltend ein oder mehrere farbübertragungsinhibierende Farbfixiermittel |
JPWO2003069399A1 (ja) * | 2002-02-14 | 2005-06-09 | ソニー株式会社 | 液晶表示装置 |
US20050192206A1 (en) * | 2004-02-27 | 2005-09-01 | O'brien Janese C. | Methods and instructions for installing and removing a fabric conditioning article in a dryer |
US7531490B2 (en) * | 2004-10-01 | 2009-05-12 | Kao Corporation | Detergent composition comprising calcium gluconate and a mixture of calcium ion sequestering agents |
DE102006012018B3 (de) * | 2006-03-14 | 2007-11-15 | Henkel Kgaa | Farbschützendes Waschmittel |
CN104532626A (zh) * | 2014-12-17 | 2015-04-22 | 黄涛 | 一种纯天然防褪色剂 |
US20200181832A1 (en) * | 2016-11-03 | 2020-06-11 | Basf Se | Colorant catcher material |
US11873466B2 (en) * | 2020-10-29 | 2024-01-16 | Henkel Ag & Co. Kgaa | Opacified liquid detergent composition comprising a fatty acid/calcium salt mixture |
Family Cites Families (17)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3049446A (en) * | 1960-02-05 | 1962-08-14 | Sun Chemical Corp | Process for the manufacture of urea, glyoxal and formaldehye reaction product useful for improving cellulosic textile materials |
US4208173A (en) * | 1975-06-06 | 1980-06-17 | United Merchants And Manufacturers, Inc. | Method for treating fabrics |
US4347145A (en) * | 1978-09-19 | 1982-08-31 | United Merchants & Manufacturers, Inc. | Foam composition for treating textile materials and method of preparation |
US4345063A (en) * | 1979-11-08 | 1982-08-17 | Sun Chemical Corporation | Glyoxal/cyclic urea condensates |
US4300898A (en) * | 1979-11-08 | 1981-11-17 | Sun Chemical Corporation | Compositions for treating textile fabrics |
US4605418A (en) * | 1983-03-09 | 1986-08-12 | Diamond Shamrock Chemicals Company | Aftertreatment of dyed cellulosic materials |
GB9013784D0 (en) * | 1990-06-20 | 1990-08-08 | Unilever Plc | Process and composition for treating fabrics |
US5460736A (en) * | 1994-10-07 | 1995-10-24 | The Procter & Gamble Company | Fabric softening composition containing chlorine scavengers |
BR9607542A (pt) * | 1995-03-03 | 1997-12-23 | Procter & Gamble | Composição para lavanderia contendo fixadores de corante e celulase |
GB2310849A (en) * | 1996-03-08 | 1997-09-10 | Procter & Gamble | Crystalline layered silicate |
EP0811680A1 (de) * | 1996-06-03 | 1997-12-10 | The Procter & Gamble Company | Textilweichmacherzusammensetzungen |
DE59710645D1 (de) * | 1996-08-15 | 2003-10-02 | Clariant Finance Bvi Ltd | Wasserlösliche Harnstoffderivat-Polymere mit quaternären Ammonium-Gruppen und deren Verwendung |
AU7162796A (en) * | 1996-09-19 | 1998-04-14 | Procter & Gamble Company, The | Color care compositions |
WO1998017758A1 (en) * | 1996-10-18 | 1998-04-30 | The Procter & Gamble Company | Detergent compositions |
CN1170916C (zh) * | 1996-12-31 | 2004-10-13 | 普罗格特-甘布尔公司 | 含有固色剂的洗衣洗涤剂组合物 |
US6020302A (en) * | 1997-09-18 | 2000-02-01 | The Procter & Gamble Company | Color care compositions |
US6830593B1 (en) * | 1998-08-03 | 2004-12-14 | The Procter & Gamble Company | Fabric care compositions |
-
1998
- 1998-08-03 EP EP98870174A patent/EP0979861B1/de not_active Expired - Lifetime
- 1998-08-03 DE DE69828162T patent/DE69828162T2/de not_active Expired - Lifetime
- 1998-08-03 AT AT98870174T patent/ATE284947T1/de not_active IP Right Cessation
-
1999
- 1999-08-03 AU AU52526/99A patent/AU5252699A/en not_active Abandoned
- 1999-08-03 BR BRPI9912711-3A patent/BR9912711B1/pt not_active IP Right Cessation
- 1999-08-03 CN CN99810185A patent/CN1314938A/zh active Pending
- 1999-08-03 CA CA002338762A patent/CA2338762C/en not_active Expired - Fee Related
- 1999-08-03 WO PCT/US1999/017558 patent/WO2000008128A1/en not_active Application Discontinuation
- 1999-08-03 JP JP2000563755A patent/JP2002522651A/ja not_active Withdrawn
-
2004
- 2004-10-21 US US10/970,421 patent/US20050108835A1/en not_active Abandoned
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8206462B2 (en) | 2009-03-20 | 2012-06-26 | Henkel Ag & Co. Kgaa | Use of polymers comprising carboxyl groups in combination with bivalent cations for creating a protective layer |
Also Published As
Publication number | Publication date |
---|---|
CA2338762A1 (en) | 2000-02-17 |
WO2000008128A1 (en) | 2000-02-17 |
CN1314938A (zh) | 2001-09-26 |
BR9912711A (pt) | 2001-05-02 |
EP0979861A1 (de) | 2000-02-16 |
DE69828162T2 (de) | 2005-12-22 |
US20050108835A1 (en) | 2005-05-26 |
CA2338762C (en) | 2007-04-10 |
DE69828162D1 (de) | 2005-01-20 |
AU5252699A (en) | 2000-02-28 |
JP2002522651A (ja) | 2002-07-23 |
BR9912711B1 (pt) | 2009-08-11 |
ATE284947T1 (de) | 2005-01-15 |
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