Abstract:
Disclosed herein are compositions including (A) at least one polymer including (a) a core that bears one to 3 moieties of the general formula (I), where Z are different or the same and selected from C5-C20-alkylene where in the C5-C20-alkylene at least one C-atom is replaced by an N-atom that bears a polyalkylene chain and where the C-atoms in the C5-C20-alkylene may be non-substituted or substituted with one or more O—C1-C4- alkyl groups, A1 are different or the same and selected from C1-C12-alkylene, C6-arylene, and C3-C12-cycloalkylene where C1-C12-alkylene and C3-C12-cycloalkylene may be non-substituted or substituted with one or more O—C1-C4-alkyl groups or OH groups and wherein C3-C12-cycloalkylene may bear one to three methyl groups, or based on citric acid, X1 is selected from hydrogen, methyl, ethyl and combinations of at least two thereof, and n is in a range of from 1 to 100, and (b) polyalkylene oxide chains.
Abstract:
Described herein is a composition including (A) at least one polymer comprising including (a) a backbone that bears one to forty β-aminoalcohol groups or β-amino-(alkylenoxide) groups, (b) where some β-aminoalcohol groups or β-amino-(alkylenoxide) groups are esterified with a mono- or diacid of a polyalkylene oxide of which at least 50 mol-% of the alkylene oxide groups are ethylene oxide groups, or with the monomethyl ether of a monoacid of a polyalkylene oxide of which at least 50 mol-% of the alkylene oxide groups are ethylene oxide groups, and, optionally, (c) of which some β-aminoalcohol groups or β-amino-(alkylenoxide) groups are esterified with aliphatic C4-C10-di- or tricarboxylic acid.
Abstract:
Disclosed herein is a homogenous, storage-stable liquid enzyme preparation, including
component (a): at least one enzyme selected from the group of hydrolases (EC 3); component (b): an enzyme-stabilizing system including
(bi) at least one compound according to general formula (A)
where the variables in formula (A) are as follows: R1 is selected from H and C1-C10 alkylcarbonyl, R2, R3, R4 are independently from each other selected from H, linear C1-C5 alkyl, branched C3-C10 alkyl, C6-C10-aryl, non-substituted or substituted with one or more carboxylate or hydroxyl groups, and C6-C10-aryl-alkyl, where alkyl of the latter is selected from linear C1-C8 alkyl or branched C3-C8 alkyl, where at least one of R2, R3, and R4 is not H;
and (bii) at least one compound selected from boron containing compound and peptide stabilizer,
Abstract:
Described herein is a composition including (A) at least one polymer with an average molecular weight Mw of at least 1,500 g including, as repeating units, structural units according to general formula (I) where Z1 are the same or different and selected from hydrogen and methyl, R1 are the same or different and selected from C2-C4-alkyl, non-substituted or substituted with hydroxy or —NR2aR2b, R2a and R2b the are same or different and selected from C1-C4-alkyl, or NR2aR2b together form a C5-C6-cycloalkylenamino or 1-imidazole group, n is selected from 3 to 100, X1 is selected from O and N—R3, with R3 being selected from hydrogen and methyl, A1 are the same or different and selected from C2-C6-alkylene and (AO)y1, with AO being selected from ethylene oxide and propylene oxide and combinations thereof, and y1 being from 2 to 200, and (B) at least one anionic surfactant.
Abstract:
Disclosed herein is a polyalkylene oxide ester polymer with a weight average molecular weight Mw in the range of from 500 to 50,000 g/mol and a polydispersity PD in the range of from 2 to 6, including 10 to 560 ether groups and 2 to 51 ester groups that are interconnected with alkylene groups, which are significantly more biodegradable than conventional polyalkylene oxide polymers. Further disclosed herein are a method of preparing a polyalkylene oxide ester polymer and a method of using the polyalkylene oxide ester polymer.
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:
Disclosed herein are biodegradable polymers, a process to produce polyamines and alkoxylated polyamines, formulations and compositions including polyamines and alkoxylated polyamines, and a method of using polyamines and alkoxylated polyamines as ingredients in formulations and compositions within the field of application of fabric and home care, industrial and institutional cleaning, cosmetics, personal care, agricultural formulations, technical formulations and construction formulations.
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.