Abstract:
Described herein, a transparent soap bar for cleaning the skin including a soap surfactant, a synthetic surfactant, a fragrance component, an amine component, an antioxidant salt, wherein the transparent soap bar has a percent transmittance (%T) value of greater than 40% as measured using the method of Measurement of % Transmittance.
Abstract:
L'invention concerne l'utilisation de diesters d'acide carboxylique particuliers pour le traitement de textiles, et plus particulièrement pour le nettoyage de souillures de peinture sur des fibres textiles, dans le but d'amélioration les performances de nettoyage. Selon l'invention, on utilise un diester d'acide dicarboxylique répondant à la formule (I): R 1 -OOC-A-COO-R 2 (I) où - les groupes R 1 et R 2 , identiques ou différents, représentent un groupe alkyle, aryle, alkyaryle, ou arylalkyle, linéaire ou branché, cyclique ou non cyclique, en C 1 -C 20 , - le groupe A représente un groupe alkylène divalent branché en C 3 -C 10 .
Abstract:
A soap bar composition comprising 40-85% soap and 0.1-10% of a branched chain nonionic fatty acid ethoxylate surfactant. Preferably the fatty acid ethoxylate surfactant has an EO number no greater than 7.
Abstract:
A process for the use of an aqueous cleaning composition to remove organic material from a substrate. The cleaning composition preferably includes a nonionic surfactant and may also include a glycol ether solvent.
Abstract:
A collection of silicon oxide nanoparticles have an average diameter from about 5 nm to about 100 nm. The collection of silicon oxide nanoparticles effectively include no particles with a diameter greater than about four times the average diameter. The particles generally have a spherical morphology. Methods for producing the nanoparticles involve laser pyrolysis. The silicon oxide nanoparticles are effective for the production of improved polishing compositions including compositions useful for chemical-mechanical polishing.
Abstract:
The invention relates to bar composition comprising minimum floor levels of C 10 soap while minimizing ratio of unsaturated C 18 soap to caprate. Such bars provide enhanced rapid, antibacterial activity. Disclsoed is a soap bar composition comprising: a) 25 to 85%, preferably 35 to 75% by weight of C 8 to C 24 fatty acid soap comprising: (i) C10 soap at 8% or 15% or greater, more preferably 16 to 32% by weight of total bar composition; and, (ii) unsaturated C 18 soap, wherein weight ratio of said unsaturated C 18 soap to C 10 (caprate) soap is 1.2 to 0.1. b) 1 to 45 % organic and inorganic adjuvant materials by weight of the composition; and, c) 5 to 30%, preferably 13 to 28% water by weight of the composition, wherein excess of C 10 soap to unsaturated C 18 soap is at least 6%.
Abstract:
The present invention relates to stabilized foam control compositions, their method of preparation, and their use. The stabilized foam control compositions can be used to control foam in a wide variety of processes and products.
Abstract:
A non-chrome process for the pretreatment of substrate surfaces to simultaneously clean them and improve their bonding strength for organic coatings such as adhesives, protective primers, sealants, paints, composites and similar materials conventionally bonded to such substrates, including non-chromated or chromated curable organic resin protective coatings applied directly to bare aluminum substrates. The invention involves the use of novel wipe solvent compositions containing a major volume of an environmentally-safe volatile organic solvent which has a low composite vapor pressure or is otherwise exempt from federal, state or local regulations, and a minor volume of a polyfunctional coupling agent, preferably of the silane type.
Abstract:
A collection of silicon oxide nanoparticles have an average diameter from about 5 nm to about 100 nm. The collection of silicon oxide nanoparticles effectively include no particles with a diameter greater than about four times the average diameter. The particles generally have a spherical morphology. Methods for producing the nanoparticles involve laser pyrolysis. The silicon oxide nanoparticles are effective for the production of improved polishing compositions including compositions useful for chemical-mechanical polishing.