Patent classifications
C11D1/28
Systems and Methods for Manufacturing Solid Granules
A method of manufacturing a solid granule for use as or in a cleaning agent includes providing an anionic surfactant component having at least one anionic sulfonate surfactant and at least one anionic fatty alcohol-based sulfate surfactant; providing a granule-forming agent; mixing the anionic surfactant component and the granule-forming agent into a solid mixture; receiving the solid mixture in a granulation device, the granulation device having a first roller cutter and a second roller cutter, the first roller cutter includes a plurality of first blades and a plurality of first grooves, the second roller cutter having a plurality of second blades and a plurality of second grooves; cutting the solid mixture into a rough granule by cooperating the first blades with the second blades; and polishing the rough granule into the solid granule by friction rubbing between the first grooves and the second grooves.
POROUS DISSOLVABLE SOLID STRUCTURE
A porous dissolvable solid can include an isethionate surfactant; an non-sulfate anionic surfactant; and an amphoteric surfactant, a zwitterionic surfactant, or a combination thereof.
Aqueous surfactant compositions
Aqueous surfactant compositions containing an alpha-sulfo fatty acid disalt, a sulfoketone, a betaine, a soap, an inorganic salt of sulfuric acid, and water. The compositions have good foaming ability, a pleasant sensory feel to the foam, good skin compatibility, and are suitable for cosmetic products, detergents, and cleaners.
COMPOSITION FOR SURFACE TREATMENT AND METHOD OF PRODUCING THE SAME, SURFACE TREATMENT METHOD, AND METHOD OF PRODUCING SEMICONDUCTOR SUBSTRATE
The purpose of the present invention is to provide means for sufficiently removing residues on a surface of an object which has been polished including silicon nitride, silicon oxide, or polysilicon.
Provided is a composition for surface treatment including an anionic surfactant having a molecular weight of 1,000 or less and water, the composition having a pH of less than 7, wherein a ratio of a molecular weight of a hydrophilic moiety to a molecular weight of a hydrophobic moiety (the molecular weight of the hydrophilic moiety/the molecular weight of the hydrophobic moiety) of the anionic surfactant is 0.4 or more (in which the hydrophobic moiety is a hydrocarbon group having 4 or more carbon atoms and the hydrophilic moiety is a part excluding the hydrophobic moiety and a counterion), and the composition for surface treatment is used for surface treatment of an object which has been polished including at least one selected from the group consisting of silicon nitride, silicon oxide, and polysilicon.
COMPOSITION FOR SURFACE TREATMENT AND METHOD OF PRODUCING THE SAME, SURFACE TREATMENT METHOD, AND METHOD OF PRODUCING SEMICONDUCTOR SUBSTRATE
The purpose of the present invention is to provide means for sufficiently removing residues on a surface of an object which has been polished including silicon nitride, silicon oxide, or polysilicon.
Provided is a composition for surface treatment including an anionic surfactant having a molecular weight of 1,000 or less and water, the composition having a pH of less than 7, wherein a ratio of a molecular weight of a hydrophilic moiety to a molecular weight of a hydrophobic moiety (the molecular weight of the hydrophilic moiety/the molecular weight of the hydrophobic moiety) of the anionic surfactant is 0.4 or more (in which the hydrophobic moiety is a hydrocarbon group having 4 or more carbon atoms and the hydrophilic moiety is a part excluding the hydrophobic moiety and a counterion), and the composition for surface treatment is used for surface treatment of an object which has been polished including at least one selected from the group consisting of silicon nitride, silicon oxide, and polysilicon.
LAUNDRY DETERGENT COMPOSITION
A liquid detergent composition is provided. The composition can be configured to provide high cleaning performance without the requirement of the inclusion of many components found in typical liquid laundry detergent compositions. The compositions may include a majority of an aqueous base, a surfactant system, a builder, and optionally further ingredients, such as a chelator and a fragrance.
Laundry detergent composition
The present invention provides a domestic laundry cleaning composition, said composition comprising an anionic charged surfactant, an alkyl ether carboxylic acid dispersant, a lipase enzyme; and a protease enzyme.
Aqueous surfactant compositions
Aqueous surfactant compositions containing one or more alpha-sulfo fatty acid disalt (A) of general formula (I),
R.sup.1CH(SO.sub.3M.sup.1)COOM.sup.2(I), in which the radical R.sup.1 is a linear or branched alkyl or alkenyl radical having 6 to 18 carbon atoms and the radicals M.sup.1 and M.sup.2, independently of one another, are selected from H, Li, Na, K, Ca/2, Mg/2, ammonium, and alkanolamine, one or more N-acyl amino acid compound (B) selected from glycinates of general formula (IIa), sarcosinates of general formula (IIb), -alaninates of general formula (IIc), and -alaninates of general formula (IId)
R.sup.23CONHCH.sub.2COOM.sup.13(IIa)
R.sup.23CON(CH.sub.3)CH.sub.2COOM.sup.13(IIb)
R.sup.23CONHCH(CH.sub.3)COOM.sup.13(IIc)
R.sup.23CONHCH.sub.2CH.sub.2COOM.sup.13(IId), wherein the radical R.sup.23 in the compounds (IIa), (IIb), (IIc) and (IId) is a linear or branched alkyl or alkenyl radical having 7 to 19 carbon atoms and the radical M.sup.13 is selected from H, Li, Na, K, Ca/2, Mg/2, ammonium, and alkanolamine, and water. The compositions have good foaming ability, pleasant sensory properties of the foam, and good skin compatibility, and are suitable for use as cosmetic agents, detergents, and cleaners.
Aqueous surfactant compositions
Aqueous surfactant compositions containing one or more alpha-sulfo fatty acid disalt (A) of general formula (I),
R.sup.1CH(SO.sub.3M.sup.1)COOM.sup.2(I), in which the radical R.sup.1 is a linear or branched alkyl or alkenyl radical having 6 to 18 carbon atoms and the radicals M.sup.1 and M.sup.2, independently of one another, are selected from H, Li, Na, K, Ca/2, Mg/2, ammonium, and alkanolamine, one or more N-acyl amino acid compound (B) selected from glycinates of general formula (IIa), sarcosinates of general formula (IIb), -alaninates of general formula (IIc), and -alaninates of general formula (IId)
R.sup.23CONHCH.sub.2COOM.sup.13(IIa)
R.sup.23CON(CH.sub.3)CH.sub.2COOM.sup.13(IIb)
R.sup.23CONHCH(CH.sub.3)COOM.sup.13(IIc)
R.sup.23CONHCH.sub.2CH.sub.2COOM.sup.13(IId), wherein the radical R.sup.23 in the compounds (IIa), (IIb), (IIc) and (IId) is a linear or branched alkyl or alkenyl radical having 7 to 19 carbon atoms and the radical M.sup.13 is selected from H, Li, Na, K, Ca/2, Mg/2, ammonium, and alkanolamine, and water. The compositions have good foaming ability, pleasant sensory properties of the foam, and good skin compatibility, and are suitable for use as cosmetic agents, detergents, and cleaners.
Aqueous surfactant compositions
Aqueous surfactant compositions containing one or more alpha-sulfo fatty acid disalt (A) of general formula (I),
R.sup.1CH(SO.sub.3M.sup.1)COOM.sup.2(I), in which the radical R.sup.1 is a linear or branched alkyl or alkenyl radical having 6 to 18 carbon atoms and the radicals M.sup.1 and M.sup.2, independently of one another, are selected from the group consisting of H, Li, Na, K, Ca/2, Mg/2, ammonium, and alkanolamine, one or more alkanolamide (B) selected from the group of compounds of general formula (IIa), (IIb) and (IIc),
R.sup.13CONR.sup.14R.sup.15(IIa)
R.sup.13CONR.sup.14R.sup.16(IIb)
R.sup.13CONR.sup.14R.sup.17(IIc) wherein the radical R.sup.13 in compounds (IIa) is a linear or branched alkyl radical having 6 to 18 carbon atoms and the radicals R.sup.14 and R.sup.15, independently of each other, are a linear or branched hydroxyalkyl group having 1 to 4 carbon atoms; wherein the radical R.sup.13 in compounds (IIb) is a linear or branched alkyl radical having 6 to 18 carbon atoms, the radical R.sup.14 is a linear or branched hydroxyalkyl group having 1 to 4 carbon atoms and the radical R.sup.16 is hydrogen; and wherein the radical R.sup.13 in compounds (IIc) is a linear or branched alkyl radical having 6 to 18 carbon atoms, the radical R.sup.14 is a linear or branched hydroxyalkyl group having 1 to 4 carbon atoms and the radical R.sup.17 is an alkyl group having 1 to 4 carbon atoms; and water, are disclosed. These compositions have good foaming ability, pleasant sensory properties of the foam, good skin compatibility, and are suitable for cosmetic agents as well as detergents and cleaners.