Abstract:
Described herein is a detergent composition including (A) at least one polymer including (a) a core that includes one to 3 moieties of general formula (I), where Z are different or the same and are selected from the group consisting of C2-C12-alkylene and C3-C12-cycloalkylene A1 are different or the same and are: selected from the group consisting of C1-C12-alkylene, C6-arylene, and C3-C12-cycloalkylene, or based on citric acid, X1 is selected from the group consisting of hydrogen, methyl, ethyl, and combinations of at least two of the foregoing, n is in a range of 1 to 100; and (b) polyalkylene oxide chains.
Abstract:
Composition containing (A) at least one salt of an organic ester of choline or of a derivative of choline, and (B) at least one surfactant selected from amphoteric and anionic and non-ionic surfactants.
Abstract:
The present invention relates to a modified polysaccharide obtainable by a process comprising the step of treating a polysaccharide with gaseous or liquid SO2, a laundry detergent composition comprising said modified polysaccharide, the use of said modified polysaccharide to increase whiteness of a washed fabric, the use of said modified polysaccharide as anti-greying agent in aqueous laundry processes, the use of said modified polysaccharide as a rheology modifier for homecare applications and the use of said modified polysaccharide in the manufacture of a liquid laundry composition. Further aspects of the invention are a method for preparing a laundry detergent composition comprising said modified polysaccharide.
Abstract:
The present invention is directed towards aqueous formulations comprising (A) at least one alkoxylated polypropylenimine, (B) at least one non-ionic surfactant, selected from (B1) alkyl polyglycosides and (B2) alkoxylated C8-C14-Guerbet alcohols.
Abstract:
The present invention relates to a process for preparing a polymer composition, in which an α,β-ethylenically unsaturated carboxylic acid is subjected to a free-radical polymerization in the presence of at least one polyether component, to the polymer composition obtainable by this process and to the use thereof.
Abstract:
The present invention is directed towards a liquid detergent composition comprising (A) at least one chelating agent selected from alkali metal salts of methyl glycine diacetate and glutamic acid diacetate, (B) at least one anionic surfactant according to the general formula (I) CnH2n+1—O(CH2CH2O)x—SO3M (I) (C) at least one non-ionic surfactant according to the general formula (II), CmH2m+1—O(AO)yH (II) the weight ratio of all chelating agent (A) to all anionic surfactant (B) being in the range of from 1:1 to 1:8, with the integers being defined as follows: n being a number in the range of from 10 to 18, m being a number in the range of from 10 to 18, M being selected from alkali metals, AO being different or identical and selected from ethylene oxide, propylene oxide, and butylene oxide, x being a number in the range of from 1 to 5, y being different or identical and selected from numbers in the range of from 1 to 12.
Abstract:
Disclosed herein are compositions including
(A) at least one polymer including (a) a core obtained by reacting a diamine H2N—Z—NH2 with a compound having a total number TN of carboxyl groups per molecule in the range of from 3 to 10, where Z is selected from C3-C12-cycloalkylene that may be non-substituted or substituted with one or more O—C1-C4-alkyl groups and where C3-C12-cycloalkylene may bear one to three methyl groups, and where carboxyl groups are selected from COOH and COOX1 with X1 being selected from C1-C4-alkyl, or two carboxyl groups together form an anhydride group, (b) polyalkylene oxide chains, and (B) at least one hydrolase.
Abstract:
Use of solid formulations with a residual moisture content in the range from 0.1 to 15% by weight, comprising (A) at least one compound selected from aminocarboxylates and polyaminocarboxylates, and (B) at least one cationic (co)polymer with a cationic charge density of at least 5 milliequivalents/g, (C) at least one silicate selected from sodium silicates, potassium silicates and alumosilicates, (D) optionally at least one compound selected from alkali metal percarbonate, alkali metal perborate and alkali metal persulfate, and (E) optionally, polyvinyl alcohol as or for producing formulations for washing dishes and kitchen utensils.
Abstract:
The present invention relates to a process for preparing a polymer composition, in which an α,β-ethylenically unsaturated carboxylic acid is subjected to a free-radical polymerization in the presence of at least one polyether component, to the polymer composition obtainable by this process and to the use thereof.