Patent classifications
C11D3/08
CLEANING COMPOSITIONS COMPRISING DISPERSINS VIII
Cleaning compositions may include a mix of enzymes that include dispersins and proteases. Said compositions may be used in cleaning processes and/or for deep cleaning of organic stains, and for removal or reduction of components of organic matter.
METHOD OF MAKING A SPRAY-DRIED LAUNDRY DETERGENT PARTICLE
A method of making a spray-dried laundry detergent particle, wherein the method includes the steps: (a) forming an aqueous laundry detergent slurry, wherein the slurry includes: (i) from 1 wt% to 40 wt% anionic detersive surfactant; (ii) from 0.1 wt% to 3.5 wt% polyepoxy succinic acid polymer; and (iii) from 10 wt% to 80 wt% water, and (b) spray drying the slurry formed in step (a) to form a spray-dried laundry detergent particle.
METHOD OF MAKING A SPRAY-DRIED LAUNDRY DETERGENT PARTICLE
A method of making a spray-dried laundry detergent particle, wherein the method includes the steps: (a) forming an aqueous laundry detergent slurry, wherein the slurry includes: (i) from 1 wt% to 40 wt% anionic detersive surfactant; (ii) from 0.1 wt% to 3.5 wt% polyepoxy succinic acid polymer; and (iii) from 10 wt% to 80 wt% water, and (b) spray drying the slurry formed in step (a) to form a spray-dried laundry detergent particle.
Compositions and methods of removing lipstick using branched polyamines
Methods of cleaning waxy, oily and/or greasy soils, including lipsticks and lip gloss, are disclosed. Methods of removing lipstick and lip gloss stains in laundry applications are disclosed through application of alkaline cleaning compositions comprising branched polyamines.
Compositions and methods of removing lipstick using branched polyamines
Methods of cleaning waxy, oily and/or greasy soils, including lipsticks and lip gloss, are disclosed. Methods of removing lipstick and lip gloss stains in laundry applications are disclosed through application of alkaline cleaning compositions comprising branched polyamines.
High alkaline cleaners, cleaning systems and methods of use for cleaning zero trans fat soils
The present disclosure relates to high alkaline cleaners, cleaning systems and methods for removing polymerized zero trans fat soils. The high alkaline cleaner of the present invention generally includes one or more alkaline wetting and saponifying agent(s), a chelating/sequestering system and a surface modifying-threshold agent system. In various embodiments, the cleaners may include, at least one cleaning agent comprising a surfactant or surfactant system and/or a solvent or solvent system and/or a cleaning booster such as a peroxide or sulfite type additive. The cleaners may also include one or more components to modify the composition form and/or the application method in some embodiments. All components described above may also be optimized optionally, to provide emulsification of a composition (both as a usable product or a concentrate that can be diluted to form a usable product). The use of the high alkaline cleaner of the present invention has demonstrated enhanced cleaning characteristics especially at higher temperatures (100° F. to about 200° F.) but also shows enhanced cleaning at ambient temperatures.
High alkaline cleaners, cleaning systems and methods of use for cleaning zero trans fat soils
The present disclosure relates to high alkaline cleaners, cleaning systems and methods for removing polymerized zero trans fat soils. The high alkaline cleaner of the present invention generally includes one or more alkaline wetting and saponifying agent(s), a chelating/sequestering system and a surface modifying-threshold agent system. In various embodiments, the cleaners may include, at least one cleaning agent comprising a surfactant or surfactant system and/or a solvent or solvent system and/or a cleaning booster such as a peroxide or sulfite type additive. The cleaners may also include one or more components to modify the composition form and/or the application method in some embodiments. All components described above may also be optimized optionally, to provide emulsification of a composition (both as a usable product or a concentrate that can be diluted to form a usable product). The use of the high alkaline cleaner of the present invention has demonstrated enhanced cleaning characteristics especially at higher temperatures (100° F. to about 200° F.) but also shows enhanced cleaning at ambient temperatures.
Solid perfume-containing composition
A solid particulate composition including, based on the total weight of the composition, a) 20 to 95 wt. % of at least one water-soluble carrier material selected from hydrous salts of which the water vapor partial pressure corresponds, at a specific temperature in the range from 30 to 100° C., to the H.sub.2O partial pressure of the saturated solution of salt; b) 0.1 to 20 wt. % fragrance; and c) 0.1 to 30 wt. % of at least one textile-care compound. The invention further relates to the use and a method for the preparation of a solid particulate composition.
Solid perfume-containing composition
A solid particulate composition including, based on the total weight of the composition, a) 20 to 95 wt. % of at least one water-soluble carrier material selected from hydrous salts of which the water vapor partial pressure corresponds, at a specific temperature in the range from 30 to 100° C., to the H.sub.2O partial pressure of the saturated solution of salt; b) 0.1 to 20 wt. % fragrance; and c) 0.1 to 30 wt. % of at least one textile-care compound. The invention further relates to the use and a method for the preparation of a solid particulate composition.
ANHYDROUS AUTODISH FORMULATION
A method of washing glassware is provided including: providing automatic dishwashing apparatus; providing soiled glassware; placing soiled glassware in automatic dishwashing apparatus; providing wash water; providing rinse water; selecting anhydrous mixed powder or mixed granule comprising: 2.5-5 wt % of oxidized maltodextrin, wherein oxidized maltodextrin has Degree of Oxidation of 0.4-1.7; 10-25 wt % of amino acid based builder; 20-75 wt % of additional builder, wherein additional builder includes at least one of sodium citrate, sodium carbonate and sodium percarbonate; 2.5-7.5 wt % of bleach activator; 0.5-10 wt % of nonionic surfactant; 0.5-1 wt % of phosphonate; 1-6 wt % of enzyme; 5-15 wt % of filler; and <1 wt % water; placing selected anhydrous mixed powder or mixed granule in automatic dishwashing apparatus; contacting selected anhydrous mixed powder or mixed granule with wash water to form combination; contacting soiled glassware with combination to provide treated glassware; and then contacting treated glassware with rinse water to provide cleaned glassware.