C11D3/2079

Cleansing Bars with Taurine

A cleansing bar composition comprising at least one cleanser chosen from soap and surfactant; taurine, in free or salt form; and one or more hydrophobic stabilizing agents. The hydrophobic stabilizing agent prevents the crystallization of taurine on the surface of the cleansing bar. Also methods of making the cleansing bar to inhibit crystallization of taurine in a cleansing bar.

LIQUID DETERGENT COMPOSITIONS

Liquid detergent compositions can include a first surfactant which is a mixture of surfactant isomers of Formula 1 and surfactants of Formula 2:

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wherein from about 50% to about 100% by weight of the first surfactant are isomers having m+n=11; wherein between about 25% to about 50% of the mixture of surfactant isomers of Formula 1 have n=0; wherein from about 0.001% to about 25% by weight of the first surfactant are surfactants of Formula 2; and wherein X is a hydrophilic moiety; and a second surfactant including a linear alkyl benzene sulfonate.

DETERGENT COMPOSITIONS

Detergent compositions can include a surfactant; cloudiness causing perfume ingredient; and octanoic acid, nonanoic acid, decanoic acid, or a combination thereof. Also included are methods of solubilizing cloudiness causing perfume ingredients.

Fast dissolving solid detergent

A solid block or unit dosed detergent composition as described which can be utilized in a variety of applications for cleaning surfaces and objects, removing suspending soils, and rinsing easily. The detergent composition, when exposed to an aqueous solution such as water, dissolves quickly and completely to create the use solution.

SHAPED DETERGENT PRODUCT COMPRISING AMINOPOLYCARBOXYLATE

A shaped detergent product comprising 10 to 100 wt. % of a first solid phase and 0 to 90 wt. % of one or more other phases, wherein the first solid phase comprises: a) non-crystalline chiral aminopolycarboxylate; b) non-crystalline organic acid other than component a); c) at most 30 wt. % water; d) at most 50 wt. % of non-crystalline water-soluble component other than component a) or component b); e) at most 20 wt. % of homogeneously dispersed crystalline material; wherein the combination of the components a), b) and c) is present in the first solid phase in a concentration of at least 35 wt. % of the total weight of the solid phase; and wherein components a), b) and c) are present in the solid phase in a ratio of from 25 to 88 parts by weight of free acid equivalent of component a): from 10 to 60 parts by weight of free acid equivalent of component b): from 2 to 30 parts by weight of component c); and wherein the shaped detergent product comprises at least 0.5 wt. % surfactant.

ELECTRONIC DEVICE MANUFACTURING AQUEOUS SOLUTION, METHOD FOR MANUFACTURING RESIST PATTERN AND METHOD FOR MANUFACTURING DEVICE
20230167383 · 2023-06-01 ·

[Problem] To provide an electronic device manufacturing aqueous solution, which makes it possible to prevent pattern collapse or suppress non-uniformity of resist pattern width. [Means for Solution] An electronic device manufacturing aqueous solution comprising an alkylcarboxylic acid compound (A) and a solvent (B), wherein the alkylcarboxylic acid compound (A) is represented by the formula (a): A.sub.1-COOH (a), wherein A.sub.1 is C.sub.4-12 alkyl, and the solvent (B) comprises water.

Stabilized compositions comprising leuco compounds

A composition comprising: (a) a leuco composition; and (b) a stabilizing amount of an antioxidant composition. The antioxidant composition comprises at least one sterically hindered phenol and at least one substituted diarylamine, and the mole ratio of the hindered phenol to the substituted diarylamine is greater than 1:1. In another embodiment, a composition comprises (a) a leuco composition and (b) an antioxidant composition; and optionally (c) a solvent composition. The combined mass of the leuco compounds and antioxidants present in the composition is 10% or more of the total mass of the composition, and (b) the molar ratio of antioxidants present in the composition to leuco compounds present in the composition is greater than 1:1.

MECHANISM OF UREA/SOLID ACID INTERACTION UNDER STORAGE CONDITIONS AND STORAGE STABLE SOLID COMPOSITIONS COMPRISING UREA AND ACID

Solid rinsing, cleaning and/or sanitizing compositions for various applications are provided. In particular, solid compositions include a complex of urea and an acid having desirable storage stability previously unavailable in solid urea/acid compositions. Stable solid compositions are disclosed and methods of making the same to overcome conventional limitations associated with with forming kinetically and thermodynamically stable solids that utilize urea/acid compositions.

CLEANING COMPOSITION
20220056380 · 2022-02-24 ·

The present disclosure relates generally to cleaning compositions and, more specifically, to cleaning compositions containing a mannanase enzyme at a level of from 0.0001% to 2% pure enzyme by weight of total composition and an xyloglucanase enzyme.

ORGANIC ACID BASED ANTIMICROBIAL FORMULATIONS CONTAINING EXTREMELY LOW LEVELS OF SURFACTANT

The present invention is for an acidic cleaning composition which has excellent cleaning performance, low toxicity and good antimicrobial efficacy. The inventive acidic cleaning compositions are capable of sanitizing or disinfecting a variety of hard surfaces. The inventive acidic cleaning compositions can take a variety of forms, such as: disinfecting wipes, all-purpose disinfecting sprays, kitchen cleaners, bathroom cleaners, toilet cleaners, etc. The compositions may meet EPA DfE requirements, EPA category III or IV requirements, and/or be safe for use on food contact surfaces without rinsing. The compositions may include citric acid, an anionic surfactant, a non-volatile glycol solvent, a fatty acid, and water. The compositions may be free of other sanitizing acids, quaternary ammonium compounds, biguanides, peroxides, hypohalites, etc., and have a pH of less than 2.5. The composition may provide sanitization or disinfection against a target microbe within 5 minutes or less, or 4 minutes or less.