Patent classifications
C11D3/16
SOLID FREE-FLOWING PARTICULATE LAUNDRY DETERGENT COMPOSITION
A solid free-flowing particulate laundry detergent composition, wherein the composition including a detersive surfactant, an iron-based bleach catalyst and a peroxygen-based bleach, and the composition having an equilibrium pH at 20 C. at a concentration of 10 g/l in deionized water of 10.0 or less.
System and a process of a fabric material
A water-soluble antimicrobial liquid delivery, quality control tracking and monitoring system and method can be directly integrated into commercial laundry equipment and operational systems.
ANTIMICROBIAL AND ANTICANCER CATIONIC PHTHALOCYANINE COMPOUNDS
Substituted phthalocyanines for the generation of singlet oxygen in which one or more of the substituents bear a cationically charged N-alkylated pyridine.
Cleaning composition and method for enhanced sealant adhesion
Methods comprising the steps of contacting a surface with a liquid composition comprising a cleaning agent, an adhesion promoter, and at least one dye, the surface having a first surface contamination; transitioning at least one portion of the surface in the first surface contamination state to a second surface contamination state and simultaneously distributing the at least one dye and at least one adhesion promoter on the surface associated with the second surface contamination state, the second surface contamination state having reduced or eliminated surface contamination, the transitioning step simultaneously cleaning and preparing the at least one portion of the surface for adhesion to another material; and identifying remaining surface in the first surface contamination state, and compositions adapted for the method thereof.
System and a process of a fabric material
A water-soluble antimicrobial liquid delivery, quality control tracking and monitoring system and method can be directly integrated into commercial laundry equipment and operational systems.
Process for the preparation of lightly-branched hydrophobes and the corresponding surfactants and applications thereof
Processes to prepare lightly branched surfactant products comprise combining at least one olefin and a coordination-insertion catalyst under conditions such that at least one oligomer product is formed. The surfactant products comprise a main carbon chain containing an average of between 0.5 and 2.5 branches, wherein more than 50% of the branches are ethyl branches, wherein the branches are located more than one carbon away from each end of the main carbon chain in more than 20% of surfactant product molecules.
Detergent composition comprising a carbinol functional trisiloxane
A detergent composition comprises a trisiloxane having at least one carbinol functional group. The trisiloxane comprises the reaction product of (A) an initial trisiloxane and (B) an organic compound. Component (A) has a pendant silicon-bonded functional group selected from a hydrogen atom, an epoxy-containing group, an ethylenically unsaturated group, and an amine group. Typically, component (A) is free of certain terminal silicon-bonded functional groups and is free of polyoxyalkylene groups. Component (B) has a functional group reactive with the pendant silicon-bonded functional group of component (A), and has at least one hydroxyl functional group. The trisiloxane may be of the following general formula (I): (R.sup.1.sub.3SiO.sub.1/2)(R.sup.1R.sup.3SiO.sub.2/2)(R.sup.1.sub.3SiO.sub.1/2) (I). In formula (I), each R.sup.1 is an independently selected hydrocarbyl group. R.sup.3 may be selected from the groups (i) to (x) described herein, each of the groups having at least one carbinol group. Typically, the trisiloxane has 1-6 carbinol groups.
Method for treating a semiconductor device
A method of treating a sensor array including a plurality of sensors and an isolation structure, where a sensor of the plurality of sensors has a sensor pad exposed at a surface of the sensor array and the isolation structure is disposed between the sensor pad and sensor pads of other sensors of the plurality of sensors, comprises exposing the sensor pad and the isolation structure to a non-aqueous organo-silicon solution including an organo-silicon compound and a first non-aqueous carrier; applying an acid solution including an organic acid and a second non-aqueous carrier to the sensor pad; and rinsing the acid solution from the sensor pad and the isolation structure.
Fractionator For Separating Solubilized Rubber From A Co-Solvent Based Miscella And Related Processes
Provided herein is a fractionator and related process for separating solubilized rubber from a co-solvent based miscella.
Fractionator For Separating Solubilized Rubber From A Co-Solvent Based Miscella And Related Processes
Provided herein is a fractionator and related process for separating solubilized rubber from a co-solvent based miscella.