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ALCOHOLS, C12-14, ETHOXYLATED

Alcohols, C12-14, ethoxylated, and it is non-toxic, odorless, non-irritating, and has a hard water and acid and alkali resistance, and a excellent compatibility. 
Alcohols, C12-14, ethoxylated is primarily used as a surfactant and emulsifier. 
Alcohols, C12-14, ethoxylated can be found in products such as bath, cleansing, hair and sunscreen products. 

CAS Number: 68439-50-9
Molecular Formula: C14H30O
EINECS Number: 500-213-3

Synonyms: Alcohols, C12-14-secondary, ethoxylated, 84133-50-6, 617-534-0, Alcohols, C12-14, secondary, ethoxylated, Alcohols, C3-6 ethoxylated, secondary, DTXSID4029563, Secondary alcohols, C12-14, ethoxylated, secondary alcohol ethoxylate, Alcohols, C12-14, ethoxylated, FATTYALCOHOL(C12-C14)POLYGLYCOL(3OEO)ETHER, POLYALKOXYLATEDALIPHATICALCOHOL, Alcohol-(C12-C14), ethoxylated, Ethoxylated alcohols (C12-14), C12-14 Fatty alcohols ethoxylated, Surfonic L 24-2, Surfonic L 24-22

Alcohols, C12-14, ethoxylated used in a number of different cosmetic and skin care products using to improve the texture and feel of formulations. 
Alcohols, C12-14, ethoxylated is also used in cuticle softeners, deodorants and moisturising products.
Also its antifoaming performance is quite good .

Alcohols, C12-14, ethoxylated is a common knowledge to the science savvy what C12-14 alcohol ethoxylate are. 
Alcohols, C12-14, ethoxylateds are the largest family and the most dominant class of nonionic surfactants. Nonionic surfactants are surfactants molecules which do not go through ionization when dissolved in water. 
On the other hand, surfactants are materials or substances which reduces the surface tension between components, used mostly in detergents. 

This surfactant is best described using these terms: hydrophilic, lipophilic groups and cloud point temperature. 
Fatty alcohol ethoxylate, fatty acid alkoxylate and alkyl phenol ethoxylate are some instances of this surfactants.
Alcohols, C12-14, ethoxylated, are nonionic surfactants produced by the ethoxylation of linear or branched fatty alcohols with 12 to 14 carbon atoms. 

These alcohols are typically derived from natural sources such as coconut oil or synthetic processes, and the ethoxylation involves adding ethylene oxide units to the alcohol molecule, creating compounds with varying degrees of ethoxylation.
In practical terms, this means the molecule has a hydrophobic (water-repelling) alkyl chain from the alcohol and a hydrophilic (water-attracting) polyethylene glycol chain formed by ethoxylation. 
This dual nature allows the compound to reduce surface tension between substances, making it effective at emulsifying oils, dispersing dirt, and stabilizing mixtures of water and oil.

Alcohols, C12-14, ethoxylated is a common knowledge to the science savvy what C12-14 alcohol ethoxylate are.
Alcohols, C12-14, ethoxylated are the largest family and the most dominant class of nonionic surfactants.
Nonionic surfactants are surfactants molecules which do not go through ionization when dissolved in water.

On the other hand, surfactants are materials or substances which reduces the surface tension between components, used mostly in detergents.
Alcohols, C12-14, ethoxylated is best described using these terms: hydrophilic, lipophilic groups and cloud point temperature.
Alcohols, C12-14, ethoxylated, fatty acid alkoxylate and alkyl phenol ethoxylate are some instances of this surfactants.

Alcohols, C12-14, ethoxylated or ethoxylation is a chemical reaction which occurs when ethylene oxide combines with a substrate.
Alcohols, C12-14, ethoxylateds are commonly used in a wide range of household and industrial applications, including detergents, cleaners, textile processing, agrochemical formulations, paints, and personal care products. 

Their nonionic character means they are generally compatible with both anionic and cationic ingredients, providing versatility in formulations.
Alcohols, C12-14, ethoxylateds are valued for their cleaning power, mildness on skin, and low toxicity, although their biodegradability and environmental impact are closely monitored in regulatory and green chemistry contexts.

Boiling point: 267℃[at 101 325 Pa]
Density: 0.89[at 20℃]
vapor pressure: 1.47Pa at 38℃
Odor: at 100.00?%. bland
Water Solubility: 1.3mg/L at 20℃
LogP: 5.24 at 25℃

Alcohols, C12-14, ethoxylated are liquid, colorless, oleo-chemical non-ionic surfactant with three units of ethylene oxide produced through the reaction of ethylene oxide with c12-c14 fatty alcohol.
Alcohols, C12-14, ethoxylated is a synthetic mixture of C12-C14 alcohol and ethylene oxide of an average of 1-50 moles.
Alcohols, C12-14, ethoxylated is worth noting that the "C" in C12-14 means the range of the carbon chain units, which in this case is 12-14.

Alcohols, C12-14, ethoxylated is primarily produced through the synthesis between or reaction of ethylene oxide alongside fatty alcohol in the presence of acidic catalyst like zinc chloride, alkali catalyst like potassium hydroxide, or other catalysts.
Other types of catalysts that can be involved in this ethoxylation reaction include: sodium hydroxide, sodium laurate, Magnesium perchlorate, Tin tetrachloride and phosphotungstic acid.

Wilfaret Alcohols, C12-14, ethoxylateds are non-ionic surfactants. They generally take the form of a thick liquid. 
They are mainly used in cleaning agents, detergents, home care and emulsifier production. 
Chemicals such as alcohol ethoxylates, SLES and SLS can also be manufactured from methyl esters. 

Alcohols, C12-14, ethoxylated, ethoxylated are a class of synthetic nonionic surfactants formed by reacting fatty alcohols containing carbon chains of 12 to 14 carbon atoms with ethylene oxide (EO). 
This reaction produces molecules that have both hydrophobic (non-polar) and hydrophilic (polar) components, making them effective surface-active agents.
Derived primarily from natural fatty alcohols sourced from coconut oil or palm kernel oil, though synthetic routes using petrochemical feedstocks are also common.

Alcohols, C12-14, ethoxylated is performed under controlled conditions using an alkaline catalyst such as potassium or sodium hydroxide, and the degree of ethoxylation is adjusted depending on the desired solubility and performance.
Many forms are readily biodegradable, especially those derived from linear alcohols, but branched-chain ethoxylates degrade more slowly and may cause environmental concern.
At high concentrations, they can be toxic to aquatic organisms, hence discharge regulations must be followed.

Generally considered low in toxicity and non-irritating to skin and eyes at typical use levels, although concentrated forms may cause irritation.
These compounds significantly lower the surface tension of water, typically reducing it from 72 mN/m to below 30 mN/m, allowing better spreading and wetting on surfaces.
Their ability to stabilize oil-in-water or water-in-oil emulsions makes them highly effective in cleaning formulations, cosmetics, and even agricultural sprays.

They generate moderate, stable foam, which is usually desirable in personal care and cleaning products. Foam level can be adjusted by blending with other surfactants.
The ethoxylated chain enhances the penetration of liquids into fabrics, solid surfaces, or plant leaves, which is critical for detergents and agrochemical formulations.

Uses Of Alcohols, C12-14, ethoxylated:
Alcohols, C12-14, ethoxylated can be used as an antistatic agent and emulsifier in cosmetics, but it has a high possibility of causing skin irritation and acne.
Alcohols, C12-14, ethoxylated can be used as an antistatic agent and emulsier in cosmetics, but it has a high possibility of causing skin irritation and acne.
Alcohols, C12-14, ethoxylated has defoaming properties.

Alcohols, C12-14, ethoxylated can be used as an antistatic agent and emulsier in cosmetics.
Alcohols, C12-14, ethoxylated should be noted that there is a higher possibility of causing skin allergies and acne.
Alcohols, C12-14, ethoxylated is used in the following products: washing & cleaning products, metal surface treatment products, inks and toners, textile treatment products and dyes, coating products, lubricants and greases, pH regulators and water treatment products, adhesives and sealants and polymers.

Alcohols, C12-14, ethoxylated is used in the following areas: printing and recorded media reproduction, municipal supply (e.g. electricity, steam, gas, water) and sewage treatment and formulation of mixtures and/or re-packaging.
Alcohols, C12-14, ethoxylated is used for the manufacture of: chemicals, textile, leather or fur, machinery and vehicles and fabricated metal products.
Release to the environment of Alcohols, C12-14, ethoxylated can occur from industrial use: in processing aids at industrial sites, in the production of articles and of substances in closed systems with minimal release.

Alcohols, Alcohols, C12-14, ethoxylated is used in the following products: washing & cleaning products, plant protection products, fertilisers, air care products, coating products, lubricants and greases and polishes and waxes.
Other release to the environment of Alcohols, C12-14, ethoxylated is likely to occur from: indoor use (e.g. machine wash liquids/detergents, automotive care products, paints and coating or adhesives, fragrances and air fresheners) and outdoor use.

Other release to the environment of Alcohols, C12-14, ethoxylated is likely to occur from: indoor use in long-life materials with low release rate (e.g. flooring, furniture, toys, construction materials, curtains, foot-wear, leather products, paper and cardboard products, electronic equipment) and outdoor use in long-life materials with low release rate (e.g. metal, wooden and plastic construction and building materials).
Alcohols, C12-14, ethoxylated can be found in complex articles, with no release intended: vehicles and machinery, mechanical appliances and electrical/electronic products (e.g. computers, cameras, lamps, refrigerators, washing machines).

Alcohols, C12-14, ethoxylated can be found in products with material based on: fabrics, textiles and apparel (e.g. clothing, mattress, curtains or carpets, textile toys), paper (e.g. tissues, feminine hygiene products, nappies, books, magazines, wallpaper), plastic (e.g. food packaging and storage, toys, mobile phones), metal (e.g. cutlery, pots, toys, jewellery) and leather (e.g. gloves, shoes, purses, furniture).
Alcohols, C12-14, ethoxylated is used in the following products: washing & cleaning products, coating products, adhesives and sealants, polishes and waxes, fillers, putties, plasters, modelling clay and polymers.

Alcohols, C12-14, ethoxylated is used in the following areas: municipal supply (e.g. electricity, steam, gas, water) and sewage treatment, formulation of mixtures and/or re-packaging, printing and recorded media reproduction and building & construction work.
This substance is used for the manufacture of: chemicals and.
Other release to the environment of Alcohols, C12-14, ethoxylated is likely to occur from: indoor use (e.g. machine wash liquids/detergents, automotive care products, paints and coating or adhesives, fragrances and air fresheners) and outdoor use.

Alcohols, C12-14, ethoxylated is used in the following products: inks and toners, washing & cleaning products, coating products, fillers, putties, plasters, modelling clay, finger paints and photo-chemicals.
Release to the environment of Alcohols, C12-14, ethoxylated can occur from industrial use: formulation of mixtures and in processing aids at industrial sites.
Alcohols, C12-14, ethoxylated is used in the following products: washing & cleaning products, metal surface treatment products, inks and toners, textile treatment products and dyes, coating products, lubricants and greases, pH regulators and water treatment products, adhesives and sealants and polymers.

Alcohols, C12-14, ethoxylated is used in the following areas: printing and recorded media reproduction, municipal supply (e.g. electricity, steam, gas, water) and sewage treatment and formulation of mixtures and/or re-packaging.
Alcohols, C12-14, ethoxylated is used for the manufacture of: chemicals, textile, leather or fur, machinery and vehicles and fabricated metal products.
Release to the environment of Alcohols, C12-14, ethoxylated can occur from industrial use: in processing aids at industrial sites, in the production of articles and of substances in closed systems with minimal release.

Alcohols, C12-14, ethoxylated is used in liquid detergents, all-purpose cleaners, dishwashing liquids, and laundry detergents for its ability to dissolve grease and remove particulate soils.
Found in metal cleaners, degreasing agents, car washes, and hard surface cleaners due to strong emulsifying and dispersing capabilities.
Acts as an emulsifier, foam booster, or solubilizer in shampoos, body washes, and facial cleansers; chosen for its low skin irritation and mildness.

Functions as a wetting agent, scouring agent, and dye-leveling agent, improving the penetration of dyes and finishes.
Enhances the spreading and absorption of herbicides or pesticides by helping them adhere to plant surfaces and mix more effectively in water.
Alcohols, C12-14, ethoxylated is used as a dispersant for pigments or to improve flow properties of emulsions.

Safety Profile Of Alcohols, C12-14, ethoxylated:
Developmental toxicity, multigenerational and fertility data and mutagenicity data for Laureth-4 were negative. 
The Cosmetic Ingredient Review (CIR) Expert Panel concluded that Laureth-4 can only be used in cosmetics when formulated to be non-irritating can be safely used in cosmetics.
This is due to the fact that the ingredients in laureth-4 may irritate the skin.

Although Alcohols, Alcohols, C12-14, ethoxylated are generally considered low in toxicity, especially at typical use concentrations in commercial products, they can present hazards under certain conditions, particularly in concentrated or industrial forms.
Concentrated forms can cause moderate skin irritation, especially with repeated or prolonged contact. 
In diluted formulations (like shampoos or cleaners), they are usually well tolerated.

Alcohols, C12-14, ethoxylated can be irritating to the eyes, potentially causing redness, tearing, and discomfort. Eye contact should be avoided.
Inhalation of mist or vapor from heated or sprayed forms (during industrial processing) may cause mild respiratory tract irritation.

Accidental ingestion of concentrated ethoxylates may lead to gastrointestinal irritation, including nausea or diarrhea, though severe toxicity is rare unless large quantities are ingested.
Some products may not be classified as hazardous if sufficiently diluted or purified. 
However, industrial formulations with high concentrations may require hazard labeling, SDS documentation, and protective measures in use.


 

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