EP0833884A1 - Detergent compositions containing amines and anionic surfactants - Google Patents

Detergent compositions containing amines and anionic surfactants

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Publication number
EP0833884A1
EP0833884A1 EP95924620A EP95924620A EP0833884A1 EP 0833884 A1 EP0833884 A1 EP 0833884A1 EP 95924620 A EP95924620 A EP 95924620A EP 95924620 A EP95924620 A EP 95924620A EP 0833884 A1 EP0833884 A1 EP 0833884A1
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EP
European Patent Office
Prior art keywords
alkyl
detergent composition
liquid detergent
composition according
detergent compositions
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Application number
EP95924620A
Other languages
German (de)
French (fr)
Inventor
Joseph Paul Morelli
Dimitris Lappas
Sherri Lynn Randall
Rajan Keshav Panandiker
Jean-Pol Boutique
Chris Efstathios Housmekerides
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Procter and Gamble Co
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Procter and Gamble Co
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Publication of EP0833884A1 publication Critical patent/EP0833884A1/en
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Classifications

    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D3/00Other compounding ingredients of detergent compositions covered in group C11D1/00
    • C11D3/16Organic compounds
    • C11D3/26Organic compounds containing nitrogen
    • C11D3/30Amines; Substituted amines ; Quaternized amines
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/65Mixtures of anionic with cationic compounds
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/86Mixtures of anionic, cationic, and non-ionic compounds
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D3/00Other compounding ingredients of detergent compositions covered in group C11D1/00
    • C11D3/0005Other compounding ingredients characterised by their effect
    • C11D3/0026Low foaming or foam regulating compositions
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D3/00Other compounding ingredients of detergent compositions covered in group C11D1/00
    • C11D3/16Organic compounds
    • C11D3/26Organic compounds containing nitrogen
    • C11D3/32Amides; Substituted amides
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D3/00Other compounding ingredients of detergent compositions covered in group C11D1/00
    • C11D3/16Organic compounds
    • C11D3/38Products with no well-defined composition, e.g. natural products
    • C11D3/386Preparations containing enzymes, e.g. protease or amylase
    • C11D3/38627Preparations containing enzymes, e.g. protease or amylase containing lipase
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/02Anionic compounds
    • C11D1/12Sulfonic acids or sulfuric acid esters; Salts thereof
    • C11D1/14Sulfonic acids or sulfuric acid esters; Salts thereof derived from aliphatic hydrocarbons or mono-alcohols
    • C11D1/146Sulfuric acid esters
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/02Anionic compounds
    • C11D1/12Sulfonic acids or sulfuric acid esters; Salts thereof
    • C11D1/29Sulfates of polyoxyalkylene ethers
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/40Monoamines or polyamines; Salts thereof
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/42Amino alcohols or amino ethers
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/42Amino alcohols or amino ethers
    • C11D1/44Ethers of polyoxyalkylenes with amino alcohols; Condensation products of epoxyalkanes with amines
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/52Carboxylic amides, alkylolamides or imides or their condensation products with alkylene oxides
    • C11D1/525Carboxylic amides (R1-CO-NR2R3), where R1, R2 or R3 contain two or more hydroxy groups per alkyl group, e.g. R3 being a reducing sugar rest
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/52Carboxylic amides, alkylolamides or imides or their condensation products with alkylene oxides
    • C11D1/526Carboxylic amides (R1-CO-NR2R3), where R1, R2 or R3 are polyalkoxylated
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/38Cationic compounds
    • C11D1/52Carboxylic amides, alkylolamides or imides or their condensation products with alkylene oxides
    • C11D1/528Carboxylic amides (R1-CO-NR2R3), where at least one of the chains R1, R2 or R3 is interrupted by a functional group, e.g. a -NH-, -NR-, -CO-, or -CON- group
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/66Non-ionic compounds
    • C11D1/75Amino oxides

Definitions

  • the present invention relates to detergent compositions containing surfactants selected from amines. More particularly, the invention is directed to detergent compositions containing anionic surfactants selected from the group consisting of alkyl alkoxylated sulfates and alkyl sulfates, said composition further containing specific tertiary amines.
  • Detergent compositions useful for cleaning purposes such as laundering of fabrics, have commonly utilized a variety of surfactants.
  • the ability of surfactants to clean a large variety of soils and stains from fabrics present in the typical load of laundry is of high importance in the evaluation of detergent performance.
  • the relative ability of each surfactant to meet various performance criteria is among others depending on the presence of cosurfactants.
  • LAS Linear alkyl benzene sulfonate surfactants
  • a surfactant system comprising anionic surfactants selected from the group consisting of alkyl alkoxylated sulfates and alkyl sulfates, said surfactant system further comprising a cosurfactant selected from the group of tertiary amines.
  • Liquid detergent compositions formulated with said surfactant system are extremely useful when the liquid detergent compositions are in direct contact with the fabrics such as during pretreatment.
  • the amines according to the present invention are particulary suitable because of their acceptable environmental profile and good odor characteristics.
  • EP 160 762, EP 137 615 and EP 137 616 disclose liquid detergents which comprise cyclohexylamine.
  • EP 177 165 discloses detergent compositions which comprise anionics, cellulase and a variety of tertiary amines.
  • EP 11 340 discloses softening through the wash detergent compositions which comprise tertiary amines and clay.
  • DE 32 07 487, GB 2 094 826, GB 2 095 275 and EP 137 397 disclose compositions which comprise anionics and quaternary ammonium compounds.
  • EP 120 528 discloses compositions comprising anionics, as well as tertiary amines.
  • EP 26 528 and EP 26 529 disclose compositions comprising anionics and quaternary ammonium compounds.
  • the detergent compositions according to the present invention comprise anionic surfactants selected from the group of alkyl alkoxy sulfates and alkyl sulfates, characterized in that said detergent composition further comprises specific tertiary amines.
  • the detergent compositions preferably comprise at least 5%, more preferably from 10% to 65% and most preferably from 15% to 40% by weight of the surfactant system as described hereinabove.
  • the weight ratio of the amine cosurfactant to the alkyl alkoxylated sulfates and alkyl sulfates is from 1:1 to 1:250, more preferably from 1:5 to 1:100 and most preferably from 1:10 to 1:40.
  • the detergent compositions according to the present invention comprise anionic surfactants selected from the group of alkylalkoxy sulfates and alkyl sulfates.
  • the alkyl alkoxylated sulfate surfactants hereof are water soluble salts or acids of the formula RO(A) m S03M wherein R is an unsubstituted C ⁇ o ⁇ c 24 alkyl or hydroxyalkyi group having a C10-C2 alkyl component, preferably a C ⁇ 2 ⁇ Cig alkyl or hydroxyalkyi, more preferably Ci2 ⁇ c 15 alkyl or hydroxyalkyi, A is an ethoxy or propoxy unit, m is greater than zero, typically between about 0.5 and about 6, more preferably between about 0.5 and about 3, and M is H or a cation which can be, for example, a metal cation (e.g., sodium, potassium, lithium, calcium, magnesium, etc.), ammonium or substituted-ammonium cation.
  • R is an unsubstituted C ⁇ o ⁇ c 24 alkyl or hydroxyalkyi group having a C10-C2 alkyl component,
  • Alkyl ethoxylated sulfates as well as alkyl propoxylated sulfates are contemplated herein.
  • Specific examples of substituted ammonium cations include ethanol-, triethanol-, methyl-, dimethyl, trimethyl-ammonium cations and quaternary ammonium cations such as tetramethyl-ammonium and dimethyl piperidinium cations and those derived from alkylamines such as ethylamine, diethylamine, triethylamine, mixtures thereof, and the like.
  • Exemplary surfactants are Ci2 ⁇ c 15 alkyl polyethoxylate (1.0) sulfate (Ci ⁇ -Ci ⁇ E(1.0)M) , C12- C ⁇ 5 alkyl polyethoxylate (2.25) sulfate (C12-C15E(2.25)M) , c 12 -c 15 alkyl polyethoxylate (3.0) sulfate (Ci2- Ci5E(3.0)M), and C12-C15 alkyl polyethoxylate (4.0) sulfate ( C 12- 15 E ( 4 -°) M ) / wherein M is conveniently selected from sodium and potassium.
  • the alkyl sulfate surfactants hereof are water soluble salts or acids of the formula ROSO3M wherein R preferably is a C ⁇ o ⁇ C24 hydrocarbyl, preferably an alkyl or hydroxyalkyi having a C ⁇ o ⁇ Ci8 alkyl component, more preferably a Ci2 -C 15 alkyl or hydroxyalkyi, and M is H or a cation, e.g., an alkali metal cation (e.g. sodium, potassium, lithium) , or ammonium or substituted ammonium (e.g.
  • R preferably is a C ⁇ o ⁇ C24 hydrocarbyl, preferably an alkyl or hydroxyalkyi having a C ⁇ o ⁇ Ci8 alkyl component, more preferably a Ci2 -C 15 alkyl or hydroxyalkyi
  • M is H or a cation, e.g., an alkali metal cation (e.g. sodium, potassium, lithium) ,
  • methyl-, dimethyl-, and trimethyl ammonium cations and quaternary ammonium cations such as tetramethyl ⁇ ammonium and dimethyl piperidinium cations and quaternary ammonium cations derived from alkylamines such as ethylamine, diethylamine, triethylamine, and mixtures thereof, and the like) .
  • the amines as used herein refer to tertiary amines which are believed to form a mixed micelle with the anionic surfactant.
  • the tertiary amines according to the present invention have the formula
  • R ⁇ is C4-C1O' preferably Cg-C ⁇ n alkyl; n is 2-4, preferably n is 3; R2 is C1-C4 or
  • R3 I (CH2-CH-0) X H, whereby x is 1-5, R3 is H or C1-C2 alkyl.
  • the tertiary amines according to the present invention can be made by conventional processing such as condensation processes :
  • amine cosurfactant and anionic surfactant herein form complexes which enhance packing of the surfactants at the. oil/water interface, thereby lowering interfacial tension and improving detergency.
  • the amine surfactants would be at least partially protonated in the product and during the wash thus can form positively charged species capable of complexing with the anionic surfactant.
  • Another aspect of the invention relates to the surprising finding that low amounts of certain tertiary amines of the present invention provide suds control to the detergent compositions formulated therewith.
  • the amounts in which the amines are used for controlling the suds are from 0.1 to 10%, preferably from 0.1 to 5%, most preferably from 0.5 to 4% by weight of the detergent composition.
  • a liquid detergent composition comprising the surfactant system of the present invention mixed with detergent ingredients.
  • a wide range of surfactants can be used in the detergent composition of the present invention.
  • the detergent compositions according to the present invention will preferably comprise a surfactant system which is substantially free of linear alkylbenzene sulfonate surfactant.
  • alkyl ester sulfonate surfactants including linear esters of C8-C20 carboxylic acids (i.e., fatty acids) which are sulfonated with gaseous SO3 according to "The Journal of the American Oil Chemists Society", 52 (1975), pp. 323- 329.
  • Suitable starting materials would include natural fatty substances as derived from tallow, palm oil, etc.
  • the preferred alkyl ester sulfonate surfactant, especially for laundry applications, comprise alkyl ester sulfonate surfactants of the structural formula :
  • R 3 is a C8-C20 hydrocarbyl, preferably an alkyl, or combination thereof
  • R 4 is a C ⁇ -Cg hydrocarbyl, preferably an alkyl, or combination thereof
  • M is a cation which forms a water soluble salt with the alkyl ester sulfonate.
  • Suitable salt-forming cations include metals such as sodium, potassium, and lithium, and substituted or unsubstituted ammonium cations, such as monoethanolamine, diethanolamine, and triethanolamine.
  • R 3 is C ⁇ o ⁇ C ⁇ 6 alkyl
  • R 4 is methyl, ethyl or isopropyl.
  • the methyl ester sulfonates wherein R 3 is c 10- 16 alkyl.
  • anionic surfactants useful for detersive purposes can also be included in the laundry detergent compositions of the present invention.
  • These can include salts (including, for example, sodium, potassium, ammonium, and substituted ammonium salts such as mono-, di- and triethanolamine salts) of soap, Cg-C22 primary of secondary alkanesulfonates, Cg-C24 olefinsulfonates, sulfonated polycarboxylic acids prepared by sulfonation of the pyrolyzed product of alkaline earth metal citrates, e.g., as described in British patent specification No.
  • alkylpolyglycolethersulfates (containing up to 10 moles of ethylene oxide) ; alkyl glycerol sulfonates, fatty acyl glycerol sulfonates, fatty oleoyl glycerol sulfates, alkyl phenol ethylene oxide ether sulfates, paraffin sulfonates, alkyl phosphates, isethionates such as the acyl isethionates, N-acyl taurates, alkyl succinamates and sulfosuccinates, monoesters of sulfosuccinates (especially saturated and unsaturated C 2 ⁇ c 18 monoesters) and diesters of sulfosuccinates (especially saturated and unsaturated c 6 ⁇ 12 diesters), sulfates of alkylpolysaccharides such as the sulfates of alkylpolysaccharides such as the sul
  • Resin acids and hydrogenated resin acids are also suitable, such as rosin, hydrogenated rosin, and resin acids and hydrogenated resin acids present in or derived from tall oil. Further examples are described in "Surface Active Agents and Detergents" (Vol. I and II by Schwartz, Perry and Berch) . A variety of such surfactants are also generally disclosed in U.S. Patent 3,929,678, issued December 30, 1975 to Laughlin, et al. at Column 23, line 58 through Column 29, line 23 (herein incorporated by reference) .
  • the laundry detergent compositions of the present invention typically comprise from about 1% to about 40%, preferably from about 5% to about 25% by weight of such anionic surfactants.
  • One class of nonionic surfactants useful in the present invention are condensates of ethylene oxide with a hydrophobic moiety to provide a surfactant having an average hydrophilic-iipophilic balance (HLB) in the range from 8 to 17, preferably from 9.5 to 14, more preferably from 12 to 14.
  • HLB hydrophilic-iipophilic balance
  • the hydrophobic (lipophilic) moiety may be aliphatic or aromatic in nature and the length of the polyoxyethylene group which is condensed with any particular hydrophobic group can be readily adjusted to yield a water-soluble compound having the desired degree of balance between hydrophilic and hydrophobic elements.
  • nonionic surfactants of this type are the Cg-C 5 primary alcohol ethoxylates containing 3-12 moles of ethylene oxide per mole of alcohol, particularly the 2 _c l5 primary alcohols containing 5-8 moles of ethylene oxide per mole of alcohol.
  • Another class of nonionic surfactants comprises alkyl polyglucoside compounds of general formula
  • Z is a moiety derived from glucose; R is a saturated hydrophobic alkyl group that contains from 12 to 18 carbon atoms; t is from 0 to 10 and n is 2 or 3; x is from 1.3 to 4, the compounds including less than 10% unreacted fatty alcohol and less than 50% short chain alkyl polyglucosides.
  • Compounds of this type and their use in detergent are disclosed in EP-B 0 070 077, 0 075 996 an 0 094 118.
  • nonionic surfactants are poly hydroxy fatty acid amide surfactants of the formula
  • R 1 is H, or R 1 is _4 hydrocarbyl, 2-hydroxy ethyl, 2-hydroxy propyl or a mixture thereof
  • R 2 is C5_3 ⁇ hydrocarbyl
  • Z is a polyhydroxyhydrocarbyl having a linear hydrocarbyl chain with at least 3 hydroxyls directly connected to the chain, or an alkoxylated derivative thereof.
  • R 1 is methyl
  • R 2 is a straight C ⁇ _ ⁇ 5 alkyl or alkenyl chain such as coconut alkyl or mixtures thereof
  • Z is derived from a reducing sugar such as glucose, fructose, maltose, lactose, in a reductive amination reaction.
  • compositions of the present invention may comprise amine oxide in accordance with the general formula
  • the structure (I) provides one long-chain moiety R (EO) (PO) (BO) and two x y z short chain moieties, CH R' .
  • R' is preferably selected
  • R 1 is a primary or branched hydrocarbyl moiety which can be saturated or unsaturated, preferably, R is a primary alkyl moiety.
  • R is a hydrocarbyl moiety having chainlength of from about 8 to about 18.
  • amine oxides are illustrated by C12-14 alkyldimethyl amine oxide,hexadecyl dimethylamine oxide, octadecylamine oxide 1 and their hydrates, especially the dihydrates as disclosed in.U.S.
  • the invention also encompasses amine oxides wherein x+y+z is different from zero, specifically x+y+z is from about 1 to about 10, R is a primary alkyl group containing 8 to about 24 carbons, preferably from about 12 to about 16 carbon atoms; in these embodiments y + z is preferably 0 and x is preferably from about 1 to about 6, more preferably from about 2 to about 4; EO represents ethyleneoxy; PO represents propyleneoxy; and BO represents butyleneoxy.
  • amine oxides can be prepared by conventional synthetic methods, e.g., by the reaction of alkylethoxysulfates with dimethylamine followed by oxidation of the ethoxylated amine with hydrogen peroxide.
  • Highly preferred amine oxides herein are solids at ambient temperature, more preferably they have melting- points in the range 30°C to 90°C.
  • Amine oxides suitable for use herein are made commercially by a number of suppliers, including Akzo Chemie, Ethyl Corp., and Procter & Gamble. See McCutcheon's compilation and Kirk-Othmer review article for alternate amine oxide manufacturers.
  • Preferred commercially available amine oxides are the solid, dihydrate ADMOX 16 and ADMOX 18, ADMOX 12 and especially ADMOX 14 from Ethyl Corp.
  • Preferred embodiments include hexadecyldimethylamine oxide dihydrate, dodecyldimethylamine oxide dihydrate, octadecyldimethylamine oxide dihydrate, hexadecyltris (ethyleneoxy)dimethyl-amine oxide, and tetradecyldimethylamine oxide dihydrate.
  • R' H
  • R 1 CH OH
  • the laundry detergent compositions of the present invention typically comprise nonionic surfactants in the weight ratio of anionic surfactant to nonionic surfactant from 6:1 to 1:3, preferably from 5:1 to 2:1.
  • Cationic detersive surfactants suitable for use in the laundry detergent compositions of the present invention are those having one long-chain hydrocarbyl group.
  • cationic surfactants include the ammonium surfactants such as alkyldimethylammonium halogenides, and those surfactants having the formula :
  • R 2 is an alkyl or alkyl benzyl group having from about 8 to about 18 carbon atoms in the alkyl chain
  • each R 3 is selected from the group consisting of -CH2CH2-, - CH 2 CH(CH3)-, -CH 2 CH(CH 2 OH)-, -CH 2 CH2CH 2 -, and mixtures thereof
  • each R 4 is selected from the group consisting of c l ⁇ c 4 alkyl, C1-C4 hydroxyalkyi, benzyl ring structures formed by joining the two R 4 groups, -CH2CHOH- CHOHCOR 6 CHOHCH2 ⁇ H wherein R 6 is any hexose or hexose polymer having a molecular weight less than about 1000, and hydrogen when y is not 0
  • R ⁇ is the same as R 4 or is an alkyl chain wherein the total number of carbon atoms of R 2 plus R5 is not more than about 18
  • each y is from 0 to about 10
  • Preferred cationic surfactants are the water-soluble quaternary ammonium compounds useful in the present composition having the formula :
  • R ⁇ is C8-C ⁇ g alkyl
  • each of R2, R3 and R4 is independently C1-C4 alkyl, C1-C4 hydroxy alkyl, benzyl, and -(C2H4 ⁇ ) x H where x has a value from 1 to 5, and X is an anion.
  • R2, R3 or R4 should be benzyl.
  • the preferred alkyl chain length for R ⁇ is C 2 ⁇ c 15 particularly where the alkyl group is a mixture of chain lengths derived from coconut or palm kernel fat or is derived synthetically by olefin build up or OXO alcohols synthesis.
  • Preferred groups for 2R3 and R4 are methyl and hydroxyethyl groups and the anion X may be selected from halide, methosulphate, acetate and phosphate ions.
  • quaternary ammonium compounds of formulae (i) for use herein are : coconut trimethyl ammonium chloride or bromide; coconut methyl dihydroxyethyl ammonium chloride or bromide; decyl triethyl ammonium chloride; decyl dimethyl hydroxyethyl ammonium chloride or bromide;
  • CH2-0-C(0)-C ⁇ 2-14 alkyl and R2R3R4 are methyl).
  • Other cationic surfactants useful herein are also described in U.S. Patent 4,228,044, Cambre, issued October 14, 1980.
  • the laundry detergent compositions of the present invention typically comprise from 0.5% to about 5%, preferably from about 1% to about 3% by weight of such cationic surfactants.
  • compositions according to the present invention may further comprise a builder system.
  • a builder system Any conventional builder system is suitable for use herein including aluminosilicate materials, silicates, polycarboxylates and fatty acids, materials such as ethylenediamine tetraacetate, metal ion sequestrants such as aminopolyphosphonates, particularly ethylenediamine tetramethylene phosphonic acid and diethylene triamine pentamethylenephosphonic acid.
  • phosphate builders can also be used herein.
  • Suitable polycarboxylates builders for use herein include citric acid, preferably in the form of a water- soluble salt, derivatives of succinic acid of the formula R-CH(COOH)CH2 (COOH) wherein R is C10-20 alkyl or alkenyl, preferably C12-16, or wherein R can be substituted with hydroxyl, sulfo sulfoxyl or sulfone substituents.
  • Specific examples include lauryl succinate , myristyl succinate, palmityl succinate 2-dodecenylsuccinate, 2-tetradecenyl succinate.
  • Succinate builders are preferably used in the form of their water-soluble salts, including sodium, potassium, ammonium and alkanolammonium salts.
  • suitable polycarboxylates are oxodisuccinates and mixtures of tartrate monosuccinic and tartrate disuccinic acid such as described in US 4,663,071.
  • suitable fatty acid builders for use herein are saturated or unsaturated C10-18 fatty acids, as well as the corresponding soaps.
  • Preferred saturated species have from 12 to 16 carbon atoms in the alkyl chain.
  • the preferred unsaturated fatty acid is oleic acid.
  • Other preferred builder system for liquid compositions is based on dodecenyl succinic acid and citric acid.
  • Detergency builder salts are normally included in amounts of from 3% to 50% by weight of the composition preferably from 5% to 30% and most usually from 5% to 25% by weight.
  • Preferred detergent compositions of the present invention may further comprise one or more enzymes which provide cleaning performance and/or fabric care benefits.
  • Said enzymes include enzymes selected from cellulases, hemicellulases, peroxidases, proteases, gluco-amylases, amylases, lipases, cutinases, pectinases, xylanases, reductases, oxidases, phenoloxidases, lipoxygenases, ligninases, pullulanases, tannases, pentosanases, malanases, ⁇ -glucanases, arabinosidases or mixtures thereof.
  • a preferred combination is a detergent composition having a cocktail of conventional applicable enzymes like protease, amylase, lipase, cutinase and/or cellulase in conjunction with the lipolytic enzyme variant D96L at a level of from 50 LU to 8500 LU per liter wash solution.
  • the cellulases usable in the present invention include both bacterial or fungal cellulase. Preferably, they will have a pH optimum of between 5 and 9.5. Suitable cellulases are disclosed in U.S. Patent 4,435,307, Barbesgoard et al, which discloses fungal cellulase produced from Humicola insolens. Suitable cellulases are also disclosed in GB-A- 2.075.028; GB-A-2.095.275 and DE-OS-2.247.832.
  • cellulases examples include cellulases produced by a strain of Humicola insolens (Humicola grisea var. thermoidea), particularly the Humicola strain DSM 1800.
  • suitable cellulases are cellulases originated from Humicola insolens having a molecular weight of about 50KDa, an isoelectric point of 5.5 and containing 415 amino acids.
  • suitable cellulases are the cellulases having color care benefits. Examples of such cellulases are cellulases described in European patent application No. 91202879.2, filed November 6, 1991 (Novo) .
  • Peroxidase enzymes are used in combination with oxygen sources, e.g. percarbonate, perborate, persulfate, hydrogen peroxide, etc. They are used for "solution bleaching", i.e. to prevent transfer of dyes or pigments removed from substrates during wash operations to other substrates in the wash solution.
  • Peroxidase enzymes are known in the art, and include, for example, horseradish peroxidase, ligninase, and haloperoxidase such as chloro- and bromo- peroxidase.
  • Peroxidase-containing detergent compositions are disclosed, for example, in PCT International Application WO 89/099813 and in European Patent application EP No. 91202882.6, filed on November 6, 1991.
  • Said cellulases and/or peroxidases are normally incorporated in the detergent composition at levels from 0.0001% to 2% of active enzyme by weight of the detergent composition.
  • protease enzymes include those sold under the tradenames Alcalase, Savinase, Primase, Durazym, and Esperase by Novo Nordisk A/S (Denmark) , those sold under the tradename Maxatase, Maxacal and Maxapem by Gist-Brocades, those sold by Genencor International, and those sold under the tradename Opticlean and Optimase by Solvay Enzymes. Also proteases described in our co-pending application USSN 08/136,797 can be included in the detergent composition of the invention. Protease enzyme may be incorporated into the compositions in accordance with the invention at a level of from 0.0001% to 2% active enzyme by weight of the composition.
  • a preferred protease herein referred to as "Protease D” is a carbonyl hydrolase variant having an amino acid sequence not found in nature, which is derived from a precursor carbonyl hydrolase by substituting a different amino acid for the amino acid residue at a position in said carbonyl hydrolase equivalent to position +76, preferably also in combination with one or more amino acid residue positions equivalent to those selected from the group consisting of +99, +101, +103, +104, +107, +123, +27, +105, +109, +126, +128, +135, +156, +166, +195, +197, +204, +206, +210, +216, +217, +218, +222, +260, +265, and/or +274 according to the numbering of Bacill us amyloliquefaciens subtilisin, as described in the concurrently filed patent application of A. Baeck et al. entitled "Protease- Containing Cleaning Compositions" having U.S. Serial No. 08/322
  • Highly preferred enzymes that can be included . in the detergent compositions of the present invention include lipases. It has been found that the cleaning performance on greasy soils is synergistically improved by using lipases.
  • Suitable lipase enzymes include those produced by microorganisms of the Pseudomonas group, such as Pseudomonas stutzeri ATCC 19.154, as disclosed in British Patent 1,372,034.
  • Suitable lipases include those which show a positive immunological cross-reaction with the antibody of the lipase, produced by the microorganism Pseudomonas fl uorescens IAM 1057. This lipase is available from Amano Pharmaceutical Co.
  • Lipase P (Amano, " hereinafter referred to as "Amano- P”.
  • lipases such as Ml Lipase R and Lipomax R (Gist-Brocades) .
  • Highly preferred lipases are the D96L lipolytic enzyme variant of the native lipase derived from Humicola lanuginosa as described in US Serial No. 08/341,826.
  • the Humicola lanuginosa strain DSM 4106 is used. This enzyme is incorporated into the composition in accordance with the invention at a level of from 50 LU to 8500 LU per liter wash solution.
  • the variant D96L is present at a level of from 100 LU to 7500 LU per liter of wash solution. More preferably at a level of from 150 LU to 5000 LU per liter of wash solution.
  • D96L lipolytic enzyme variant is meant the lipase variant as described in patent application WO 92/05249 viz. wherein the native lipase ex Humicola lanuginosa aspartic acid (D) residue at position 96 is changed to Leucine (L) . According to this nomenclature said substitution of aspartic acid to Leucine in position 96 is shown as : D96L.
  • cutinases [EC 3.1.1.50] which can be considered as a special kind of lipase, namely lipases which do not require interfacial activation. Addition of cutinases to detergent compositions have been described in e.g. WO-A-88/09367 (Genencor) .
  • the lipases and/or cutinases are normally incorporated in the detergent composition at levels from 0.0001% to 2% of active enzyme by weight of the detergent composition.
  • Amylases (& and/or ⁇ ) can be included for removal of carbohydrate-based stains. Suitable amylases are Termamyl R (Novo Nordisk) , Fungamyl R and BAN R (Novo Nordisk) .
  • the above-mentioned enzymes may be of any suitable origin, such as vegetable, animal, bacterial, fungal and yeast origin.
  • Said enzymes are normally incorporated in the detergent composition at levels from 0.0001% to 2% of active enzyme by weight of the detergent composition.
  • Other suitable detergent ingredients that can be added are enzyme oxidation scavengers which are described in Copending European Patent application 92870018.6 filed on January 31, 1992. Examples of such enzyme oxidation scavengers are ethoxylated tetraethylene polyamines.
  • detergent compositions may be employed, such as soil-suspending agents, soil-release polymers, abrasives, bactericides, tarnish inhibitors, coloring agents, foam control agents, corrosion inhibitors and perfumes.
  • the liquid compositions according to the present invention are in "concentrated form"; in such case. the liquid detergent compositions according to the present invention will contain a lower amount of water, compared to conventional liquid detergents.
  • the level of water is less than 50%, preferably less than 30% by weight of the detergent compositons.
  • Said concentrated products provide advantages to the consumer, who has a product which can be used in lower amounts and to the producer, who has lower shipping costs.
  • liquid compositions are especially effective when applied directly to soils and stains in a pretreatment step.
  • the detergent compositions of the present invention can also be used as detergent additive products. Such additive products are intended to supplement or boost the performance of conventional detergent compositions.
  • the detergent compositions according to the present invention include compositions which are to be used for cleaning of substrates, such as fabrics, fibers, hard surfaces, skin etc., for example hard surface cleaning compositions (with or without abrasives), laundry detergent compositions, automatic and non-automatic dishwashing compositions.
  • substrates such as fabrics, fibers, hard surfaces, skin etc.
  • hard surface cleaning compositions with or without abrasives
  • laundry detergent compositions automatic and non-automatic dishwashing compositions.
  • liquid detergent compositions are made :
  • Amylase (300KNU/g) 0. .1 0. ,1 0. ,1 0. ,1 0.1 Lipase D96/L(lOOKNU/g) 0. .15 0. .15 0.15 0.15 0.15 0.15 0.15 0.15 0.15 0.15 Protease (34g/l) 0. .5 0. ,5 0. .5 0.5 0.5 Endo-A (5000 CEVU/g) 0. .05 0. .05 0. .05 ⁇ 0. .05 0.5 Carezyme (5000 CEVU/g) 0. .09 0. .09 0. .09 ' 0. .09 0.9 Terephthalate-based polymer 0. .5 0. .5 - 0. .3 0.3 Boric acid 2. .4 2. .4 2. .8 2. .8 2.4

Abstract

A liquid detergent composition comprising anionic surfactants selected from the group of alkyl alkoxy sulfates and alkyl sulfates, characterized in that said detergent composition further comprises a tertiary amine having formula (1), wherein R1 is C4-C10, preferably C8-C10 alkyl; n is 2-4, preferably n is 3; R2 is C1-C4 or formula (2), whereby x is 1-5, R3 is H or C1-C2 alkyl.

Description

DETERGENT COMPOSITIONS CONTAINING AMINES AND ANIONIC SURFACTANTS
Field of the invention
The present invention relates to detergent compositions containing surfactants selected from amines. More particularly, the invention is directed to detergent compositions containing anionic surfactants selected from the group consisting of alkyl alkoxylated sulfates and alkyl sulfates, said composition further containing specific tertiary amines.
Background of the invention
Detergent compositions useful for cleaning purposes, such as laundering of fabrics, have commonly utilized a variety of surfactants. The ability of surfactants to clean a large variety of soils and stains from fabrics present in the typical load of laundry is of high importance in the evaluation of detergent performance. Unfortunately, the relative ability of each surfactant to meet various performance criteria is among others depending on the presence of cosurfactants.
The recent trend towards partial or total replacement of Linear alkyl benzene sulfonate surfactants (LAS) has urged the detergent formulators to rebalance their formulations with different surfactants. For example, quaternary ammonium salts are less efficient in boosting the greasy cleaning performance in Nil-LAS formulations.
There is thus a standing desire for performance and flexibility reasons to make available a surfactant system capable of providing optimum detergency performance which is equivalent to that of LAS-containing detergents.
The above objective has been met by a surfactant system comprising anionic surfactants selected from the group consisting of alkyl alkoxylated sulfates and alkyl sulfates, said surfactant system further comprising a cosurfactant selected from the group of tertiary amines.
It has been surprisingly found that detergent compositions containing said surfactant system exhibit detergency performance equivalent to that of LAS-containing detergents.
In addition, it has been found that a small amount of certain tertiary amines according to the present invention constitutes an efficient and compatible sud suppressing system. This additional benefit allows to use the amines in a dual function, e.g. surfactant and suds suppressor, thereby facilitating the formulation of concentrated liquid detergents.
Liquid detergent compositions formulated with said surfactant system are extremely useful when the liquid detergent compositions are in direct contact with the fabrics such as during pretreatment. The amines according to the present invention are particulary suitable because of their acceptable environmental profile and good odor characteristics.
Amines have been described in the art in liquid detergent compositions. EP 160 762, EP 137 615 and EP 137 616 disclose liquid detergents which comprise cyclohexylamine. EP 177 165 discloses detergent compositions which comprise anionics, cellulase and a variety of tertiary amines. EP 11 340 discloses softening through the wash detergent compositions which comprise tertiary amines and clay. DE 32 07 487, GB 2 094 826, GB 2 095 275 and EP 137 397 disclose compositions which comprise anionics and quaternary ammonium compounds. EP 120 528 discloses compositions comprising anionics, as well as tertiary amines.
EP 26 528 and EP 26 529 disclose compositions comprising anionics and quaternary ammonium compounds.
Summary of the invention
The detergent compositions according to the present invention comprise anionic surfactants selected from the group of alkyl alkoxy sulfates and alkyl sulfates, characterized in that said detergent composition further comprises specific tertiary amines.
The detergent compositions preferably comprise at least 5%, more preferably from 10% to 65% and most preferably from 15% to 40% by weight of the surfactant system as described hereinabove.
Preferably, the weight ratio of the amine cosurfactant to the alkyl alkoxylated sulfates and alkyl sulfates is from 1:1 to 1:250, more preferably from 1:5 to 1:100 and most preferably from 1:10 to 1:40. Detailed description of the Invention
The detergent compositions according to the present invention comprise anionic surfactants selected from the group of alkylalkoxy sulfates and alkyl sulfates.
Alkyl alkoxylated sulfates and/or alkyl sulfates
The alkyl alkoxylated sulfate surfactants hereof are water soluble salts or acids of the formula RO(A)mS03M wherein R is an unsubstituted Cιo~c24 alkyl or hydroxyalkyi group having a C10-C2 alkyl component, preferably a Cχ2~ Cig alkyl or hydroxyalkyi, more preferably Ci2~c15 alkyl or hydroxyalkyi, A is an ethoxy or propoxy unit, m is greater than zero, typically between about 0.5 and about 6, more preferably between about 0.5 and about 3, and M is H or a cation which can be, for example, a metal cation (e.g., sodium, potassium, lithium, calcium, magnesium, etc.), ammonium or substituted-ammonium cation. Alkyl ethoxylated sulfates as well as alkyl propoxylated sulfates are contemplated herein. Specific examples of substituted ammonium cations include ethanol-, triethanol-, methyl-, dimethyl, trimethyl-ammonium cations and quaternary ammonium cations such as tetramethyl-ammonium and dimethyl piperidinium cations and those derived from alkylamines such as ethylamine, diethylamine, triethylamine, mixtures thereof, and the like. Exemplary surfactants are Ci2~c15 alkyl polyethoxylate (1.0) sulfate (Ci^-Ci^E(1.0)M) , C12- Cχ5 alkyl polyethoxylate (2.25) sulfate (C12-C15E(2.25)M) , c12-c15 alkyl polyethoxylate (3.0) sulfate (Ci2- Ci5E(3.0)M), and C12-C15 alkyl polyethoxylate (4.0) sulfate (C12- 15E(4-°)M) / wherein M is conveniently selected from sodium and potassium.
The alkyl sulfate surfactants hereof are water soluble salts or acids of the formula ROSO3M wherein R preferably is a Cιo~C24 hydrocarbyl, preferably an alkyl or hydroxyalkyi having a Cιo~Ci8 alkyl component, more preferably a Ci2-C15 alkyl or hydroxyalkyi, and M is H or a cation, e.g., an alkali metal cation (e.g. sodium, potassium, lithium) , or ammonium or substituted ammonium (e.g. methyl-, dimethyl-, and trimethyl ammonium cations and quaternary ammonium cations such as tetramethyl¬ ammonium and dimethyl piperidinium cations and quaternary ammonium cations derived from alkylamines such as ethylamine, diethylamine, triethylamine, and mixtures thereof, and the like) .
The amine
The amines as used herein refer to tertiary amines which are believed to form a mixed micelle with the anionic surfactant. The tertiary amines according to the present invention have the formula
Ri—C—NH—(CH2jr-N—(R2)
wherein R^ is C4-C1O' preferably Cg-C^n alkyl; n is 2-4, preferably n is 3; R2 is C1-C4 or
R3 I (CH2-CH-0)XH, whereby x is 1-5, R3 is H or C1-C2 alkyl.
The tertiary amines according to the present invention can be made by conventional processing such as condensation processes :
RCOOH + H2N(CH2)3NMe2 → RCONH(CH2) 3N e2 + H20
While not intending to be limited by theory, it is believed that the amine cosurfactant and anionic surfactant herein form complexes which enhance packing of the surfactants at the. oil/water interface, thereby lowering interfacial tension and improving detergency. The amine surfactants would be at least partially protonated in the product and during the wash thus can form positively charged species capable of complexing with the anionic surfactant.
Another aspect of the invention relates to the surprising finding that low amounts of certain tertiary amines of the present invention provide suds control to the detergent compositions formulated therewith. The amounts in which the amines are used for controlling the suds are from 0.1 to 10%, preferably from 0.1 to 5%, most preferably from 0.5 to 4% by weight of the detergent composition.
Detergent ingredients
In another embodiment of the present invention, a liquid detergent composition is provided comprising the surfactant system of the present invention mixed with detergent ingredients. A wide range of surfactants can be used in the detergent composition of the present invention. The detergent compositions according to the present invention will preferably comprise a surfactant system which is substantially free of linear alkylbenzene sulfonate surfactant.
A typical listing of anionic, nonionic, ampholytic and zwitterionic classes, and species of these surfactants, is given in US Patent 3,664,961 issued to Norris on May 23, 1972.
Other suitable anionic surfactants that can be used are alkyl ester sulfonate surfactants including linear esters of C8-C20 carboxylic acids (i.e., fatty acids) which are sulfonated with gaseous SO3 according to "The Journal of the American Oil Chemists Society", 52 (1975), pp. 323- 329. Suitable starting materials would include natural fatty substances as derived from tallow, palm oil, etc. The preferred alkyl ester sulfonate surfactant, especially for laundry applications, comprise alkyl ester sulfonate surfactants of the structural formula :
ι3 _ CH(S03M) - C(O) OR'
wherein R3 is a C8-C20 hydrocarbyl, preferably an alkyl, or combination thereof, R4 is a C^-Cg hydrocarbyl, preferably an alkyl, or combination thereof, and M is a cation which forms a water soluble salt with the alkyl ester sulfonate. Suitable salt-forming cations include metals such as sodium, potassium, and lithium, and substituted or unsubstituted ammonium cations, such as monoethanolamine, diethanolamine, and triethanolamine. Preferably, R3 is Cιo~ Cχ6 alkyl, and R4 is methyl, ethyl or isopropyl. Especially preferred are the methyl ester sulfonates wherein R3 is c10- 16 alkyl.
Other anionic surfactants useful for detersive purposes can also be included in the laundry detergent compositions of the present invention. These can include salts (including, for example, sodium, potassium, ammonium, and substituted ammonium salts such as mono-, di- and triethanolamine salts) of soap, Cg-C22 primary of secondary alkanesulfonates, Cg-C24 olefinsulfonates, sulfonated polycarboxylic acids prepared by sulfonation of the pyrolyzed product of alkaline earth metal citrates, e.g., as described in British patent specification No. 1,082,179, c8-c24 alkylpolyglycolethersulfates (containing up to 10 moles of ethylene oxide) ; alkyl glycerol sulfonates, fatty acyl glycerol sulfonates, fatty oleoyl glycerol sulfates, alkyl phenol ethylene oxide ether sulfates, paraffin sulfonates, alkyl phosphates, isethionates such as the acyl isethionates, N-acyl taurates, alkyl succinamates and sulfosuccinates, monoesters of sulfosuccinates (especially saturated and unsaturated C 2~c18 monoesters) and diesters of sulfosuccinates (especially saturated and unsaturated c6~ 12 diesters), sulfates of alkylpolysaccharides such as the sulfates of alkylpolyglucoside (the nonionic nonsulfated compounds being described below) , and alkyl polyethoxy carboxylates such as those of the formula RO(Cf-2CH2θ) ]C-CH2C00-M+ wherein R is a Cg-C22 alkyl, k is an integer from 0 to 10, and M is a soluble salt-forming cation. Resin acids and hydrogenated resin acids are also suitable, such as rosin, hydrogenated rosin, and resin acids and hydrogenated resin acids present in or derived from tall oil. Further examples are described in "Surface Active Agents and Detergents" (Vol. I and II by Schwartz, Perry and Berch) . A variety of such surfactants are also generally disclosed in U.S. Patent 3,929,678, issued December 30, 1975 to Laughlin, et al. at Column 23, line 58 through Column 29, line 23 (herein incorporated by reference) .
When included therein, the laundry detergent compositions of the present invention typically comprise from about 1% to about 40%, preferably from about 5% to about 25% by weight of such anionic surfactants.
One class of nonionic surfactants useful in the present invention are condensates of ethylene oxide with a hydrophobic moiety to provide a surfactant having an average hydrophilic-iipophilic balance (HLB) in the range from 8 to 17, preferably from 9.5 to 14, more preferably from 12 to 14. The hydrophobic (lipophilic) moiety may be aliphatic or aromatic in nature and the length of the polyoxyethylene group which is condensed with any particular hydrophobic group can be readily adjusted to yield a water-soluble compound having the desired degree of balance between hydrophilic and hydrophobic elements.
Especially preferred nonionic surfactants of this type are the Cg-C 5 primary alcohol ethoxylates containing 3-12 moles of ethylene oxide per mole of alcohol, particularly the 2_cl5 primary alcohols containing 5-8 moles of ethylene oxide per mole of alcohol. Another class of nonionic surfactants comprises alkyl polyglucoside compounds of general formula
RO (CnH2nO)tZx
wherein Z is a moiety derived from glucose; R is a saturated hydrophobic alkyl group that contains from 12 to 18 carbon atoms; t is from 0 to 10 and n is 2 or 3; x is from 1.3 to 4, the compounds including less than 10% unreacted fatty alcohol and less than 50% short chain alkyl polyglucosides. Compounds of this type and their use in detergent are disclosed in EP-B 0 070 077, 0 075 996 an 0 094 118.
Very suitable as nonionic surfactants are poly hydroxy fatty acid amide surfactants of the formula
R2 - C(O) - NfR1) - Z,
wherein R1 is H, or R1 is _4 hydrocarbyl, 2-hydroxy ethyl, 2-hydroxy propyl or a mixture thereof, R2 is C5_3χ hydrocarbyl, and Z is a polyhydroxyhydrocarbyl having a linear hydrocarbyl chain with at least 3 hydroxyls directly connected to the chain, or an alkoxylated derivative thereof. Preferably, R1 is methyl, R2 is a straight Cχχ_χ5 alkyl or alkenyl chain such as coconut alkyl or mixtures thereof, and Z is derived from a reducing sugar such as glucose, fructose, maltose, lactose, in a reductive amination reaction.
Highly preferred nonionics are amine oxide surfactants. The compositions of the present invention may comprise amine oxide in accordance with the general formula
I:
1 R (EO) (PO) (BO) N(O) (CH R') .qH 0 (I) x y Z 2 2 2
In general, it can be seen that the structure (I) provides one long-chain moiety R (EO) (PO) (BO) and two x y z short chain moieties, CH R' . R' is preferably selected
2 from hydrogen, methyl and -CH2OH. In general R1 is a primary or branched hydrocarbyl moiety which can be saturated or unsaturated, preferably, R is a primary alkyl moiety. When x+y+z = 0, R is a hydrocarbyl moiety having chainlength of from about 8 to about 18. When x+y+z is different from 0, R may be somewhat longer, having a chainlength in the range C 2~c24- τ^e general formula also encompasses amine oxides wherein x+y+z = 0, Ri = Cg-Cig' RI
= H and q = 0-2, preferably 2. These amine oxides are illustrated by C12-14 alkyldimethyl amine oxide,hexadecyl dimethylamine oxide, octadecylamine oxide1 and their hydrates, especially the dihydrates as disclosed in.U.S.
Patents 5,075,501 and 5,071,594, incorporated herein by reference.
The invention also encompasses amine oxides wherein x+y+z is different from zero, specifically x+y+z is from about 1 to about 10, R is a primary alkyl group containing 8 to about 24 carbons, preferably from about 12 to about 16 carbon atoms; in these embodiments y + z is preferably 0 and x is preferably from about 1 to about 6, more preferably from about 2 to about 4; EO represents ethyleneoxy; PO represents propyleneoxy; and BO represents butyleneoxy. Such amine oxides can be prepared by conventional synthetic methods, e.g., by the reaction of alkylethoxysulfates with dimethylamine followed by oxidation of the ethoxylated amine with hydrogen peroxide.
Highly preferred amine oxides herein are solids at ambient temperature, more preferably they have melting- points in the range 30°C to 90°C. Amine oxides suitable for use herein are made commercially by a number of suppliers, including Akzo Chemie, Ethyl Corp., and Procter & Gamble. See McCutcheon's compilation and Kirk-Othmer review article for alternate amine oxide manufacturers. Preferred commercially available amine oxides are the solid, dihydrate ADMOX 16 and ADMOX 18, ADMOX 12 and especially ADMOX 14 from Ethyl Corp. Preferred embodiments include hexadecyldimethylamine oxide dihydrate, dodecyldimethylamine oxide dihydrate, octadecyldimethylamine oxide dihydrate, hexadecyltris (ethyleneoxy)dimethyl-amine oxide, and tetradecyldimethylamine oxide dihydrate.
Whereas in certain of the preferred embodiments R' = H, there is some latitude with respect to having R' slightly larger than H. Specifically, the invention further encompasses embodiments wherein R1 = CH OH, such as hexadecylbis (2- hydroxyethyl)amine oxide, tallowbis(2- hydroxyethyl) amine oxide, stearylbis (2-hydroxyethyl)amine oxide and oleylbis (2- hydroxyethyl) amine oxide, dodecyldimethylamine oxide dihydrate.
When included therein, the laundry detergent compositions of the present invention typically comprise nonionic surfactants in the weight ratio of anionic surfactant to nonionic surfactant from 6:1 to 1:3, preferably from 5:1 to 2:1.
Cationic detersive surfactants suitable for use in the laundry detergent compositions of the present invention are those having one long-chain hydrocarbyl group. Examples of such cationic surfactants include the ammonium surfactants such as alkyldimethylammonium halogenides, and those surfactants having the formula :
[R2 (OR3)y] [R4 (OR3)y]2R5N+X-
wherein R2 is an alkyl or alkyl benzyl group having from about 8 to about 18 carbon atoms in the alkyl chain, each R3 is selected from the group consisting of -CH2CH2-, - CH2CH(CH3)-, -CH2CH(CH2OH)-, -CH2CH2CH2-, and mixtures thereof; each R4 is selected from the group consisting of cl~c4 alkyl, C1-C4 hydroxyalkyi, benzyl ring structures formed by joining the two R4 groups, -CH2CHOH- CHOHCOR6CHOHCH2θH wherein R6 is any hexose or hexose polymer having a molecular weight less than about 1000, and hydrogen when y is not 0; R^ is the same as R4 or is an alkyl chain wherein the total number of carbon atoms of R2 plus R5 is not more than about 18; each y is from 0 to about 10 and the sum of the y values is from 0 to about 15; and X is any compatible anion.
Preferred cationic surfactants are the water-soluble quaternary ammonium compounds useful in the present composition having the formula :
R!R2R3R4N+X- (i)
wherein R^ is C8-Cχg alkyl, each of R2, R3 and R4 is independently C1-C4 alkyl, C1-C4 hydroxy alkyl, benzyl, and -(C2H4θ)xH where x has a value from 1 to 5, and X is an anion. Not more than one of R2, R3 or R4 should be benzyl.
The preferred alkyl chain length for R^ is C 2~c15 particularly where the alkyl group is a mixture of chain lengths derived from coconut or palm kernel fat or is derived synthetically by olefin build up or OXO alcohols synthesis. Preferred groups for 2R3 and R4 are methyl and hydroxyethyl groups and the anion X may be selected from halide, methosulphate, acetate and phosphate ions.
Examples of suitable quaternary ammonium compounds of formulae (i) for use herein are : coconut trimethyl ammonium chloride or bromide; coconut methyl dihydroxyethyl ammonium chloride or bromide; decyl triethyl ammonium chloride; decyl dimethyl hydroxyethyl ammonium chloride or bromide;
C 2-15 dimethyl hydroxyethyl ammonium chloride or bromide; coconut dimethyl hydroxyethyl ammonium chloride or bromide; myristyl trimethyl ammonium methyl sulphate; lauryl dimethyl benzyl ammonium chloride or bromide; lauryl dimethyl (ethenoxy)4 ammonium chloride or bromide; choline esters (compounds of formula (i) wherein R^ is -
CH2-0-C(0)-Cχ2-14 alkyl and R2R3R4 are methyl). Other cationic surfactants useful herein are also described in U.S. Patent 4,228,044, Cambre, issued October 14, 1980.
When included therein, the laundry detergent compositions of the present invention typically comprise from 0.5% to about 5%, preferably from about 1% to about 3% by weight of such cationic surfactants.
The compositions according to the present invention may further comprise a builder system. Any conventional builder system is suitable for use herein including aluminosilicate materials, silicates, polycarboxylates and fatty acids, materials such as ethylenediamine tetraacetate, metal ion sequestrants such as aminopolyphosphonates, particularly ethylenediamine tetramethylene phosphonic acid and diethylene triamine pentamethylenephosphonic acid. Though less preferred for obvious environmental reasons, phosphate builders can also be used herein.
Suitable polycarboxylates builders for use herein include citric acid, preferably in the form of a water- soluble salt, derivatives of succinic acid of the formula R-CH(COOH)CH2 (COOH) wherein R is C10-20 alkyl or alkenyl, preferably C12-16, or wherein R can be substituted with hydroxyl, sulfo sulfoxyl or sulfone substituents. Specific examples include lauryl succinate , myristyl succinate, palmityl succinate 2-dodecenylsuccinate, 2-tetradecenyl succinate. Succinate builders are preferably used in the form of their water-soluble salts, including sodium, potassium, ammonium and alkanolammonium salts.
Other suitable polycarboxylates are oxodisuccinates and mixtures of tartrate monosuccinic and tartrate disuccinic acid such as described in US 4,663,071. Especially for the liquid execution herein, suitable fatty acid builders for use herein are saturated or unsaturated C10-18 fatty acids, as well as the corresponding soaps. Preferred saturated species have from 12 to 16 carbon atoms in the alkyl chain. The preferred unsaturated fatty acid is oleic acid. Other preferred builder system for liquid compositions is based on dodecenyl succinic acid and citric acid.
Detergency builder salts are normally included in amounts of from 3% to 50% by weight of the composition preferably from 5% to 30% and most usually from 5% to 25% by weight.
Optional detergent ingredients :
Preferred detergent compositions of the present invention may further comprise one or more enzymes which provide cleaning performance and/or fabric care benefits. Said enzymes include enzymes selected from cellulases, hemicellulases, peroxidases, proteases, gluco-amylases, amylases, lipases, cutinases, pectinases, xylanases, reductases, oxidases, phenoloxidases, lipoxygenases, ligninases, pullulanases, tannases, pentosanases, malanases, β-glucanases, arabinosidases or mixtures thereof.
A preferred combination is a detergent composition having a cocktail of conventional applicable enzymes like protease, amylase, lipase, cutinase and/or cellulase in conjunction with the lipolytic enzyme variant D96L at a level of from 50 LU to 8500 LU per liter wash solution.
The cellulases usable in the present invention include both bacterial or fungal cellulase. Preferably, they will have a pH optimum of between 5 and 9.5. Suitable cellulases are disclosed in U.S. Patent 4,435,307, Barbesgoard et al, which discloses fungal cellulase produced from Humicola insolens. Suitable cellulases are also disclosed in GB-A- 2.075.028; GB-A-2.095.275 and DE-OS-2.247.832.
Examples of such cellulases are cellulases produced by a strain of Humicola insolens (Humicola grisea var. thermoidea), particularly the Humicola strain DSM 1800. Other suitable cellulases are cellulases originated from Humicola insolens having a molecular weight of about 50KDa, an isoelectric point of 5.5 and containing 415 amino acids. Especially suitable cellulases are the cellulases having color care benefits. Examples of such cellulases are cellulases described in European patent application No. 91202879.2, filed November 6, 1991 (Novo) .
Peroxidase enzymes are used in combination with oxygen sources, e.g. percarbonate, perborate, persulfate, hydrogen peroxide, etc. They are used for "solution bleaching", i.e. to prevent transfer of dyes or pigments removed from substrates during wash operations to other substrates in the wash solution. Peroxidase enzymes are known in the art, and include, for example, horseradish peroxidase, ligninase, and haloperoxidase such as chloro- and bromo- peroxidase. Peroxidase-containing detergent compositions are disclosed, for example, in PCT International Application WO 89/099813 and in European Patent application EP No. 91202882.6, filed on November 6, 1991.
Said cellulases and/or peroxidases are normally incorporated in the detergent composition at levels from 0.0001% to 2% of active enzyme by weight of the detergent composition.
Preferred commercially available protease enzymes include those sold under the tradenames Alcalase, Savinase, Primase, Durazym, and Esperase by Novo Nordisk A/S (Denmark) , those sold under the tradename Maxatase, Maxacal and Maxapem by Gist-Brocades, those sold by Genencor International, and those sold under the tradename Opticlean and Optimase by Solvay Enzymes. Also proteases described in our co-pending application USSN 08/136,797 can be included in the detergent composition of the invention. Protease enzyme may be incorporated into the compositions in accordance with the invention at a level of from 0.0001% to 2% active enzyme by weight of the composition.
A preferred protease herein referred to as "Protease D" is a carbonyl hydrolase variant having an amino acid sequence not found in nature, which is derived from a precursor carbonyl hydrolase by substituting a different amino acid for the amino acid residue at a position in said carbonyl hydrolase equivalent to position +76, preferably also in combination with one or more amino acid residue positions equivalent to those selected from the group consisting of +99, +101, +103, +104, +107, +123, +27, +105, +109, +126, +128, +135, +156, +166, +195, +197, +204, +206, +210, +216, +217, +218, +222, +260, +265, and/or +274 according to the numbering of Bacill us amyloliquefaciens subtilisin, as described in the concurrently filed patent application of A. Baeck et al. entitled "Protease- Containing Cleaning Compositions" having U.S. Serial No. 08/322,676, filed October 13, 1994, which is incorporated herein by reference in its entirety.
Highly preferred enzymes that can be included.in the detergent compositions of the present invention include lipases. It has been found that the cleaning performance on greasy soils is synergistically improved by using lipases. Suitable lipase enzymes include those produced by microorganisms of the Pseudomonas group, such as Pseudomonas stutzeri ATCC 19.154, as disclosed in British Patent 1,372,034. Suitable lipases include those which show a positive immunological cross-reaction with the antibody of the lipase, produced by the microorganism Pseudomonas fl uorescens IAM 1057. This lipase is available from Amano Pharmaceutical Co. Ltd., Nagoya, Japan, under the trade name Lipase P "Amano, " hereinafter referred to as "Amano- P". Further suitable lipases are lipases such as Ml LipaseR and LipomaxR (Gist-Brocades) . Highly preferred lipases are the D96L lipolytic enzyme variant of the native lipase derived from Humicola lanuginosa as described in US Serial No. 08/341,826. Preferably the Humicola lanuginosa strain DSM 4106 is used. This enzyme is incorporated into the composition in accordance with the invention at a level of from 50 LU to 8500 LU per liter wash solution. Preferably the variant D96L is present at a level of from 100 LU to 7500 LU per liter of wash solution. More preferably at a level of from 150 LU to 5000 LU per liter of wash solution. By D96L lipolytic enzyme variant is meant the lipase variant as described in patent application WO 92/05249 viz. wherein the native lipase ex Humicola lanuginosa aspartic acid (D) residue at position 96 is changed to Leucine (L) . According to this nomenclature said substitution of aspartic acid to Leucine in position 96 is shown as : D96L.
Also suitable are cutinases [EC 3.1.1.50] which can be considered as a special kind of lipase, namely lipases which do not require interfacial activation. Addition of cutinases to detergent compositions have been described in e.g. WO-A-88/09367 (Genencor) .
The lipases and/or cutinases are normally incorporated in the detergent composition at levels from 0.0001% to 2% of active enzyme by weight of the detergent composition.- '
Amylases (& and/or β) can be included for removal of carbohydrate-based stains. Suitable amylases are TermamylR (Novo Nordisk) , FungamylR and BANR (Novo Nordisk) .
The above-mentioned enzymes may be of any suitable origin, such as vegetable, animal, bacterial, fungal and yeast origin.
Said enzymes are normally incorporated in the detergent composition at levels from 0.0001% to 2% of active enzyme by weight of the detergent composition. Other suitable detergent ingredients that can be added are enzyme oxidation scavengers which are described in Copending European Patent application 92870018.6 filed on January 31, 1992. Examples of such enzyme oxidation scavengers are ethoxylated tetraethylene polyamines.
Other components used in detergent compositions may be employed, such as soil-suspending agents, soil-release polymers, abrasives, bactericides, tarnish inhibitors, coloring agents, foam control agents, corrosion inhibitors and perfumes.
Preferably, the liquid compositions according to the present invention are in "concentrated form"; in such case. the liquid detergent compositions according to the present invention will contain a lower amount of water, compared to conventional liquid detergents. The level of water is less than 50%, preferably less than 30% by weight of the detergent compositons.
Said concentrated products provide advantages to the consumer, who has a product which can be used in lower amounts and to the producer, who has lower shipping costs.
The liquid compositions are especially effective when applied directly to soils and stains in a pretreatment step.
The detergent compositions of the present invention can also be used as detergent additive products. Such additive products are intended to supplement or boost the performance of conventional detergent compositions.
The detergent compositions according to the present invention include compositions which are to be used for cleaning of substrates, such as fabrics, fibers, hard surfaces, skin etc., for example hard surface cleaning compositions (with or without abrasives), laundry detergent compositions, automatic and non-automatic dishwashing compositions.
The following examples are meant to exemplify compositions of the present inventions, but are not necessarily meant to limit the scope of the invention.
EXAMPLE I
The following liquid detergent compositions are made :
% by weight of the detergent compositions
A B C D E
Lineair alkylbenzene sulfonate 18 c12~c15 Alkyl ethoxylated sulfate - 2 8 11 5 Cg-Cχo propyl dimethyl amine 2 2 2 2 1 Cχ2-C14 alkyldimethyl amine oxide 2 c12~c15 Alkyl sulfate -_ 17 12 7 8 C 2~cl4 N-methyl glucamide - 5 4 4 3 Cχ2~c14 fatty alcohol ethoxylate 12 6 1 1 1 12~c18 Fatty acid 11 Ll 4 4 3 Citric acid anhydrous 5 1 3 3 2 Diethylene triamine penta methylene phosphonic acid 1 1 1 1 0.5 Monoethanolamine 11 8 5 5 2 Sodium hydroxide 1 1 2. .5 1 1.5 Propanediol 12. ,7 14. .5 13. ,1 10. 0 8 Ethanol 1. ,8 1. 8 4. 7 5. 4 1
Amylase (300KNU/g) 0. .1 0. ,1 0. ,1 0. ,1 0.1 Lipase D96/L(lOOKNU/g) 0. .15 0. .15 0.15 0.15 0.15 Protease (34g/l) 0. .5 0. ,5 0. .5 0.5 0.5 Endo-A (5000 CEVU/g) 0. .05 0. .05 0. .05 ι 0. .05 0.5 Carezyme (5000 CEVU/g) 0. .09 0. .09 0. .09 ' 0. .09 0.9 Terephthalate-based polymer 0. .5 0. .5 - 0. .3 0.3 Boric acid 2. .4 2. .4 2. .8 2. .8 2.4
Sodium xylene sulfonate 3 DC 3225C 1 1 1 1 1 2-butyl-octanol 0, .03 0 .04 0. .04 I 0. .03 0.03 Branched silicone 0, .3 0. .3 0, .3 0. .3 0.3 Water & Minors up to 1 1 ( υ 1Λu1-δ. The above liquid detergent compositions (A-E) are found to be very efficient in the removal of greasy/oily soils under various usage conditions while having a controlled suds profile. The same results were obtained when Cg-Cχo amidopropyldimethylamine was replaced in Compositions (A-E) by Cg- amidopropyldimethylamine and Cχo amido propylamine dimethylamine .

Claims

What is claimed is:
1. A liquid detergent compositions comprising anionic surfactants selected from the group of alkyl alkoxy sulfates and alkyl sulfates, characterized in that said detergent composition further comprises a tertiary amine having the formula
wherein R is C ~C n, preferably Cg-Cχo alkyl; n is 2-4, preferably n is 3; R is C1-C4 or 3 .
I (CH2-CH-0)XH, whereby x is 1-5, R3 is H or C -C2 alkyl.
2. A liquid detergent composition according to claim 1 having a tertiary formula as defined in claim 1 wherein Rx is a Cg-Cχo alkyl and n is 3.
3. A liquid detergent composition according to claims 1-2 wherein the weight ratio of the tertiary amine to the alkyl alkoxylated sulfates and alkyl sulfates is from 1:1 to 1:250, more preferably from 1:5 to 1:100 and most preferably from 1:10 to 1:40.
4. A liquid detergent composition according to Claim 3 wherein the anionic surfactants are selected from the alkyl ethoxylated sulfate and C 2-C s alkyl sulfate.
5. A liquid detergent composition according to Claims 1-4 further comprising a nonionic surfactant selected from the polyhydroxy fatty acid amides and/or amine oxides.
6. A liquid detergent composition according to claim 5 wherein said amine oxide is C 2-C 4 alkyl dimethyl amine oxide.
7. A liquid detergent composition according to Claims 1-6 further comprising other surfactants, builders, enzymes and other conventional detergent ingredients.
8. A liquid detergent composition according to Claims 1-7 which is free of linear alkylbenzene sulfonate surfactant.
9. Use of the tertiary amines as defined in claims 1-2 in detergent compositions for the controlling of suds
10. Use of a liquid detergent composition according to Claims 1-9 for pretreatment of fabrics.
EP95924620A 1994-10-13 1995-06-20 Detergent compositions containing amines and anionic surfactants Withdrawn EP0833884A1 (en)

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Families Citing this family (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE59507049D1 (en) * 1995-03-01 1999-11-18 Weigert Chem Fab Cleaning agents for surgical instruments
AR003725A1 (en) * 1995-09-29 1998-09-09 Procter & Gamble LIQUID DETERGENT COMPOSITIONS CONTAINING AN AMINE, ALKYL SULPHATE AND ADDITIONAL ANIONIC SURFACTANT.
DE19646587A1 (en) * 1996-11-12 1998-05-14 Clariant Gmbh New fatty alcohol sulfates and alkyl ether sulfates with trialkylammonium counterions and their preparation and use
ES2201337T3 (en) * 1996-12-31 2004-03-16 THE PROCTER & GAMBLE COMPANY COMPOSITIONS OF LIQUID DETERGENTS, VERY WATERY, THICKENED.
US5916575A (en) * 1997-01-27 1999-06-29 The Procter & Gamble Company Cleaning products
US6740627B1 (en) 1999-02-08 2004-05-25 The Procter & Gamble Company Diols and polymeric glycols in dishwashing detergent compositions
AR017744A1 (en) * 1999-02-08 2001-09-12 Procter & Gamble POLYMERIC GLYCOLS AND DIOLES FOR IMPROVED DETERGENT COMPOSITIONS FOR THE WASHING OF VAJILLA
AR017746A1 (en) * 1999-09-16 2001-09-12 Procter & Gamble DETERGENT COMPOSITIONS FOR WASHING DISHES CONTAINING COLOR STABILIZING PHOSPHONATES
DE10045289A1 (en) 2000-09-13 2002-03-28 Henkel Kgaa Fast-drying detergent and cleaning agent, especially hand dishwashing liquid
EP1354872A1 (en) 2002-04-17 2003-10-22 Kao Corporation Sulfuric acid ester amine salts, sulfonic acid amine salts, production thereof and softener composition
JP5396707B2 (en) * 2007-11-07 2014-01-22 ライオンハイジーン株式会社 Cleaning composition
WO2010057976A1 (en) * 2008-11-21 2010-05-27 Thermphos Trading Gmbh Liquid surface treatment composition with phosphonic acid derivatives neutralized with a binary amine system
WO2010057973A1 (en) * 2008-11-21 2010-05-27 Thermphos Trading Gmbh Solid surface treatment composition containing amine neutralized phosphonate
US7723281B1 (en) * 2009-01-20 2010-05-25 Ecolab Inc. Stable aqueous antimicrobial enzyme compositions comprising a tertiary amine antimicrobial
JP6097639B2 (en) * 2013-06-10 2017-03-15 株式会社Adeka Cleaning composition and method of using the same
JP6118664B2 (en) * 2013-06-28 2017-04-19 ライオン株式会社 Liquid detergent for dishwashers
JP6118663B2 (en) * 2013-06-28 2017-04-19 ライオン株式会社 Dishwasher cleaner
JP6118662B2 (en) * 2013-06-28 2017-04-19 ライオン株式会社 Liquid detergent for dishwashers
JP6118660B2 (en) * 2013-06-28 2017-04-19 ライオン株式会社 Dishwasher cleaner
KR101859464B1 (en) * 2013-06-28 2018-05-21 라이온 가부시키가이샤 Detergent for dishwasher
JP6238451B2 (en) * 2014-04-16 2017-11-29 ライオン株式会社 Liquid detergent for textile products
US11591546B2 (en) * 2017-01-20 2023-02-28 Ecolab Usa Inc. Cleaning compositions employing extended chain anionic surfactants
US11306274B2 (en) 2017-06-26 2022-04-19 Kao Corporation Liquid detergent composition for hard surfaces
DE102017223459A1 (en) * 2017-12-20 2019-06-27 Henkel Ag & Co. Kgaa Detergent containing amine oxide and sugar surfactants

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU5503373A (en) * 1972-06-06 1974-11-07 Colgate Palmolive Co Low-foaming detergent composition
GB1375639A (en) * 1973-07-24 1974-11-27
DE2648304A1 (en) * 1975-10-31 1977-05-05 Procter & Gamble Europ LIQUID DETERGENT
DE3661640D1 (en) * 1985-05-28 1989-02-09 Unilever Nv Liquid cleaning and softening compositions

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO9700929A1 *

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TR199501261A2 (en) 1996-06-21
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BR9408622A (en) 1997-09-16
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