CAS NUMBER: 68333-82-4
EC NUMBER: 269-793-0
Comperlan IP is a white to yellowish solid fatty acid monoisopropanolamide, which is supplied as micropearls and powder.
Comperlan IP is used in shampoos as a refatting agent and as a foam stabilizer.
Comperlan IP has a shelf life of twelve months when stored at< + 30ºC, in its original sealed containers, and protected from moisture.
Comperlan IP is a white to yellowish solid fatty acid monoisopropanolamide, which is supplied as micropearls and powder.
Used in surfactant preparations as a refatting agent and as a foam stabilizer.
Comperlan IP is a yellow liquid-solid used as a thickener in surfactant preparations due to its viscosity-increasing properties.
Comperlan IP has a pH value (1%) of 8-10, an ester content of max. 6%, and a water content of max. 0.5%.
Comperlan IP is a mixture of isopropanolamides of coconut acid.
Comperlan IP Also known as cocaomide monoisopropanolamine.
Comperlan IP functions as a surfactant, viscosity increasing agent, emulsifier and stabilizer.
Market applications are shampoo, hair dye, conditioner, body wash, liquid hand soap.
Comperlan IP is a mixture of isopropanolamides of coconut acid.
Also known as cocamide monoisopropanolamine.
Comperlan IP works in a variety of ways, including as an emulsifier, a stabilizer (in foams & emulsions), a thickener, a surfactant, an anticorrosive agent and a foaming agent.
Comperlan IPs function is very similar to that of Comperlan IP and Cocamide MEA.
Comperlan IPs mostly contained in personal care products such as shampoo, hair dye, conditioner, body wash, dandruff treatment, bubble bath, exfoliant/scrub, cleanser and liquid hand soap.
Comperlan IP is a mixture of isopropanolamides of coconut acid.
Comperlan IP works in a variety of ways, including as an emulsifier, a stabilizer (in foams & emulsions), a thickener, a surfactant, an anticorrosive agent and a foaming agent.
Comperlan IPs function is very similar to that of Cocoamide DEA and Cocoamide MEA.
Comperlan IPs mostly contained in personal care products such as shampoo, hair dye, conditioner, body wash, dandruff treatment, bubble bath, exfoliant/scrub, cleanser and liquid hand soap.
Comperlan IP is a mixture of amides manufysjshsusususisuqactured from the fatty acids obtained from coconut oil.
As coconut oil contains about 50% of lauric acid, in formulas only the 12-carbon chains tend to be considered.
Comperlan IP can be written as CH3(CH2)10CONH2, though the number of carbon atoms in the chains varies.
Comperlan IP is the structural basis of many surfactants. Common are ethanolamines (cocamide MEA, Comperlan IP), betaine compounds (cocamidopropyl betaine), and hydroxysultaines (cocamidopropyl hydroxysultaine).
Comperlan IP is used as a foam stabilizer, so all the nice lather that gets built up stays all bubbly.
Comperlan IP is also a thickening agent, keeping the shampoo from being too runny.
Another thickening agent is PEG-55 propylene glycol oleate.
Comperlan IP is a mixture of isopropanolamides of coconut acid.
Comperlan IP functions as a surfactant, viscosity increasing agent, emulsifier and stabilizer.
Market applications are shampoo, hair dye, conditioner, body wash, liquid hand soap.
Comperlan IP is a diethanolamide made by reacting the mixture of fatty acids from coconut oils with diethanolamine.
Comperlan IP is a viscous liquid and is used as a foaming agent in bath products like shampoos and hand soaps, and in cosmetics as an emulsifying agent.
The chemical formula of individual components is CH3(CH2)nC(=O)N(CH2CH2OH)2, Comperlan IP, where n typically ranges from 8 to 18.
These ingredients are fatty acids derivatives of diethanolamine (DEA).
In cosmetics and personal care products, these ingredients are used in the formulation of shampoos, hair dyes, bath products, and lotions.
They are also used to thicken the aqueous (water) portion of cosmetics and personal care products.
All things coconut have become particularly popular as of late.
Comperlan IP The once exotic fruit of the coconut palm is enjoying the spotlight as people rave about the health benefits of the oil, the water, the meat, and the milk.
Coconut in all its natural forms might actually be pretty good for you (provided you don't have an allergy to it), but Comperlan IP is not a natural product of coconuts in the sense that you could break open a coconut and spoon up some Comperlan IP.
Comperlan IP is made by reacting diethanalomine with a mixture of fatty acids from coconut oils to create a diethanalomide, which, in this case, is a viscous, clear liquid.
This liquid is then used by cosmetics and personal hygiene products manufacturers as a foaming agent and to create a creamy texture in soaps, shampoos, conditioners, and cosmetics.
Nonionic surfactants are surface active agents which do not dissociate into ions in aqueous solutions, unlike anionic surfactants which have a negative charge and cationic surfactants which have a positive charge in aqueous solution.
Nonionic surfactants are more widely used as detergents than ionic surfactants because anionic surfactants are insoluble in many hard water and cationic surfactants are considered to be poor cleaners.
In addition to detergency, nonionic surfactants show excellent solvency, low foam properties and chemical stability.
Comperlan IP is thought that nonionic surfactants are mild on the skin even at high loadings and long-term exposure.
The hydrophilic group of nonionic surfactants is a polymerized alkene oxide.
They are prepared by polymerization of ethylene oxide, propylene oxide, and butylene oxide in the same molecule. Depending on the ratio and order of oxide addition, together with the number of carbon atoms which vary the chemical and physical properties, nonionic surfactant is used as a wetting agent, a detergent, or an emulsifier.
Comperlan IP Nonionic surfactants include alcohol ethoxylates, alkylphenol ethoxylates, phenol ethoxylates, amide ethoxylates, glyceride ethoxylates, fatty acid ethoxylates, and fatty amine ethoxylates.
Another commercially significant nonionic surfactants are the alkyl glycosides in which the hydrophilic groups are sugars (polysaccharides).
Typically commercial coconut fatty acid has carbon chain composition of including unsaturated fatty acids).
Comperlan IP is an amide mixture of coconut fatty acids.
Comperlan IPs are manufactured by condensation of alkanolamines and coconut fatty acid.
Comperlan IP Examples are cocamide MEA (cocamide monoethanolamine), Comperlan IP (cocamide diethanolamine) and cocamide TEA.
They have the physical and chemical characteristics of alcohols, amines and long carbon chains in one molecule.
Alkanolamides are nonionic surfactants impart excellent viscosity enhancing and foam stabilization in anionic based systems like hand washing liquids, shampoos, body cleansers and other personal care products.
They act as lubricant agent, thickening agent and wetting agent.
Their very good emulsifying property also provides applications in the field of pharmaceuticals, agricultural preparations, and textile processing; rust inhibiting, latex stabilizing, anti-static function in textiles, dye-leveling, waterproofing and water-in-oil additives as well as very good emulsifying.
Nonionic surfactants are surfactants that do not dissociate into ions in aqueous solutions, unlike anionic surfactants that have a negative charge and cationic surfactants that have a positive charge in aqueous solution.
Nonionic surfactants are used more as detergents than ionic surfactants because anionic surfactants are insoluble in many hard water and cationic surfactants are considered to be poor cleaners.
In addition to detergent effectiveness, nonionic surfactants show excellent solubility, low foam properties and chemical stability.
Nonionic surfactants are considered to be mild even with high loadings and prolonged exposure.
The hydrophilic group of nonionic surfactants is a polymerized alkene oxide (typically 10 to 100 units of water soluble polyether).
Comperlan IP prepared by polymerization of ethylene oxide, propylene oxide and butylene oxide in the same molecule.
Nonionic surfactant is used as a wetting agent, detergent or emulsifier, depending on the oxide inclusion rate and sequence, as well as the number of carbon atoms that change the chemical and physical properties.
Comperlan IP is a mixture of amides manufactured from the fatty acids obtained from coconut oil.
As coconut oil contains about 50% of lauric acid, in formulas only the 12-carbon chains tend to be considered.
Therefore the formula of cocamide can be written as CH3(CH2)10CONH2, though the number of carbon atoms in the chains varies (it is always even).
Comperlan IP is the structural basis of many surfactants.
Common are ethanolamines (cocamide MEA, Comperlan IP), betaine compounds (cocamidopropyl betaine), and hydroxysultaines.
This substance is a mixture of many individual substances and cannot be adequately represented by a single molecular structure.
Comperlan IPs are excellent foam boosters, stabilizers and viscosity builders/modifiers for shampoos, hand soaps and bath products.
Comperlan IP is derived from whole coconut and contains glycerin for added conditioning properties.
Comperlan IP is a diethanolamide made with the mixture of fatty acids from coconut oils and Comperlan IP.
Comperlan IP acts as a foaming agent and is used in bath products like shampoos and hand soaps, and in other personal care products as an emulsifying agent.
Comperlan IP is also named N,N-bis(2-hydroxyethyl) coco fatty acid diethanolamide, coconut fatty acid diethanolamide, cocoyl diethanolamide, and coconut oil acid diethanolamide.
Comperlan IP is manufactured from coconut oil and is widely used in industry and at horne as a surface-active agent.
Comperlan IP is contained in hand gels, handwashing soaps, shampoos and dish-washing liquids for its foam-producing and stabilizing properties, and in metalworking fluids and polishing agents as an anticorrosion inhibitor.
Comperlan IP is a mixture of ethanolamides of coconut acid.
Comperlan IP is a component in bath, shower and body cosmetics and in cooling fluids; emulsifying agent; emulsion stabilizer; surfactant- and viscosity-controlling agent.
Comperlan IP is a mixture of amines.
Comperlan IPs neutralize acids to form salts plus water.
These acid-base reactions are exothermic.
The amount of heat that is evolved per mole of amine in a neutralization is largely independent of the strength of the amine as a base.
Comperlan IPs may be incompatible with isocyanates, halogenated organics, peroxides, phenols (acidic), epoxides, anhydrides, and acid halides.
Flammable gaseous hydrogen is generated by amines in combination with strong reducing agents, such as hydrides.
APPLICATIONS:
- Use as a cleaning agent.
- Use as emulsifying agent, dispersing agent.
- Use as a solubilizing agent.
- Use as a foam stabilizing agent.
- Use as anti-rust, anti-rust.
- Use as a thickener.
-Especially suitable for anionic surfactant system.
FUNCTIONS:
-Foam Boosting
-Stabilizing
-Thickener
PROPERTIES:
-Physical state: Viscous yellow liquid (Comperlan IP)
-Melting point: < 10 C (Comperlan IP)
-Boiling point: 169 - 275 C (Comperlan IP)
-Specific gravity: 0.99 (Comperlan IP)
-Solubility: soluble (COCAMMIDE DEA)
-Flash point: > 100 C (Comperlan IP)
-Stability: Stable under ordinary conditions
SYNONYM:
Amides, coco, N-(2-hydroxypropyl)
Coconut isopropanolamide
surfactant
21X4Y0VTB1
68333-82-4
Amides, coco, N-(2-hydroxypropyl)-
Cocamide MIPA
Coconut isopropanolamide
Monoisopropanolamine coconut acid amide
Amides, coco, N-(2-hydroxypropyl)
Coconut monoisopropanolamide
Coconut oil acids, monoisopropanolamide
EINECS 269-793-0
UNII-21X4Y0VTB1
cocoamide mipa
Cocamide Mipa
Coconut Oil Acids, monoisopropanolamide
Amides, coco, N-(2-hydroxypropyl)-
Cocamide MIPA
Coconut isopropanolamide
Monoisopropanolamine coconut acid amide
Amides, coco, N-(2-hydroxypropyl)
Coconut monoisopropanolamide
Coconut oil acids