Abstract:
An alkaline detergent is described which includes the use of a copolymer in combination with an alkali metal hydroxide. The detergent maintains cleaning functions and also prevents hard water scaling, for example at application temperatures of between 145-180 degrees Fahrenheit and with a pH of 9.5 to about 13.
Abstract:
Provided are personal care compositions comprising a first surfactant comprising sodium lauryl sulfate and a second surfactant having a structure represented by wherein each a has a value of about 1 to about 110, b has a value of about 16 to about 70, and at least one R group is SO3, and the other R group is SO3 or hydrogen. Also provided are methods of producing personal care compositions and methods of ameliorating skin or mucosal membrane irritation due to sodium lauryl sulfate.
Abstract:
A highly alkaline detergent is described which includes the use of a carboxylic acid terpolymer in combination with an alkali metal hydroxide. The detergent maintains cleaning functions and also prevents hard water scaling at application temperatures, for example at temperatures of between about 145-180 degrees Fahrenheit and, for example, at a pH of 9.5 to about 13.
Abstract:
Methods and compositions for cleaning industrial equipment (e.g. biofuel or corn ethanol plant equipment) in place at high temperatures using acidic methane sulfonic acid compositions having a low pH.
Abstract:
Provided are personal care compositions comprising a first surfactant comprising sodium lauryl sulfate and a second surfactant having a structure represented by wherein each a has a value of about 1 to about 110, b has a value of about 16 to about 70, and at least one R group is SO3, and the other R group is SO3 or hydrogen. Also provided are methods of producing personal care compositions and methods of ameliorating skin or mucosal membrane irritation due to sodium lauryl sulfate.
Abstract:
Methods and compositions for cleaning industrial equipment (e.g. biofuel or corn ethanol plant equipment) in place at high temperatures using acidic methane sulfonic acid compositions having a low pH.
Abstract:
Methods and compositions for cleaning industrial equipment (e.g. biofuel or corn ethanol plant equipment) in place at high temperatures using acidic methane sulfonic acid compositions having a low pH.
Abstract:
A solid cleaning composition includes a solidified surfactant blend. The solidified surfactant blend includes (1) at least one metal alkyl ether sulfate having the formula: wherein the first metal is sodium, potassium, magnesium, or calcium, a is 1 or 2, AO is ethylene oxide, propylene oxide, or combinations thereof, x is 0.1 to 3, and y is 11 to 13. The solidified surfactant blend also includes a (2) solid surfactant and optionally (3) polyethylene glycol. Furthermore, (1) and (2) are present in a weight ratio of from 30:70 to 70:30 based on a total weight of the solidified surfactant blend. The solid cleaning composition has non-cohesive powder flow properties as determined using a Brookfield powder flow tester.
Abstract:
An alkaline detergent is described which includes the use of a copolymer in combination with an alkali metal hydroxide. The detergent maintains cleaning functions and also prevents hard water scaling, for example at application temperatures of between 145-180 degrees Fahrenheit and with a pH of 9.5 to about 13.
Abstract:
Surfactant systems and compositions incorporating the same are disclosed for use as rinse aids on plastics and other wares. The surfactant systems and compositions include both liquid and solid formulations, along with methods of use for treating plastics and other wares. The surfactant systems and compositions provide synergistic combinations allowing lower actives in composition formulations of the plastic-compatible surfactant systems providing good sheeting, wetting and drying properties.