Coconut amine ethoxylate functions as a wetting, emulsifying, and cleaning agent, particularly effective in degreasing formulations and in both spray and dip cleaning systems.
With its slight cationic nature, Coconut amine ethoxylate demonstrates excellent compatibility with acidic cleaning media while maintaining synergistic behavior with nonionic, cationic, and some anionic surfactants, which broadens its formulation possibilities.
Coconut amine ethoxylate appears as a clear to slightly hazy liquid with high active matter content (>96%) and low water content (<4%), ensuring strong stability and consistent performance in industrial applications.
CAS Number: 61791-14-8
EC Number: 500-152-2
Molecular Formula: C12H25N·(C2H4O)12
Molecular Weight: ~ 700–750 g/mol
Synonyms: ARAPHEN K 100, COCO AMINE 12 EO, TALLOW AMINE 10EO, Ethoxylated coco amine, Primary coco amine, Coco amine + approx 12 EO, GENAMIN C 100, Genamin C 100, (Coconutoil alkyl)amine, ethoxylated, Amiet 102, Amines, cocoalkylbis(polyoxyethylene), Amines, coconut, ethoxylated, Arosurf MG 160, Atmer169, Berol 307, Berol 397, Blaunon L 210, Blaunon L 220, Chemeen C 10, ChemeenC 12G, Chemeen C 2, Crisamine PC 2, Crodamet 02, Crodamet C 20, Crodamet C 5, Esomine C 25, Ethomeen C, Ethomeen C 12, Ethomeen C 15, Ethomeen C 20, EthomeenC 25, Ethox CAM 15, Ethox CAM 2, Ethoxylated coco alkyl amines, Ethylan TLM, GN8361, Genamin C, Genamin C 020, enamin C 050, Genamin C 200, K 215, Kostat P650/5, Lutensol FA 5K, Mazeen C 2, Mazeen C 5, Nissan Nymeen F 215, Noramox C, Noramox C 11, Noramox C 2, Nymeen F 215, Optamine PC 5, PPEM 239, Rhodameen C5, Rofamin KD 3, Surfonic C 2, Variquat 1215, Varonic K 202, Varonic K 205, Varonic K 205LC, Varonic K 209, Varonic K 210, Varonic K 210LC, Varonic K 215, Varonic K 215LC, Witcamine 302, Witcamine 305, PEG-10 Cocamine, PEG-15 Cocamine, PEG-2 Cocamine, PEG-20 Cocamine, PEG-3 Cocamine, PEG-5 Cocamine, Polyethylene glycol (15) coconut amine, Polyethylene glycol (3) coconut amine, Polyethylene glycol (5) coconut amine, Polyethylene glycol 100 coconut amine, Polyethylene glycol 1000 cocamine, Polyethylene glycol 500 coconut amine, Polyoxyethylene (10) coconut amine, Polyoxyethylene (15) coconut amine, Polyoxyethylene (2) coconut amine, Polyoxyethylene (20) cocamine, Polyoxyethylene (20) coconut amine, Polyoxyethylene (3) coconut amine, Polyoxyethylene (5) coconut amine, (Coconut oil alkyl)amine, ethoxylated, 2-Hydroxyethyl coco amine, ethoxylated, Cocoamine, ethoxylated, Ethoxylated cocoamines, Primary coco amine ethylene oxide adduct, Amines, coco alkyl, ethoxylated, Ethomeen C/l5, N-(Coco alkyl)-N,N-bis(2-omega-hydroxypoly(oxyethylene)ethyl)amine, (Coconut Oil Alkyl)Amine Ethoxylate, araphen k 100, arapen k 100, araphenk100, araphen k100, Araphen k 100, Araphen K 100, ARAPHEN K100, Arapen K100, AraphenK100, ARAPENK100
Coconut amine ethoxylate functions as a wetting, emulsifying, and cleaning agent, particularly effective in degreasing formulations and in both spray and dip cleaning systems.
With slight cationic character, Coconut amine ethoxylate is well suited for use in acidic cleaning media but also displays good compatibility with some anionic, nonionic, and cationic surfactants under typical operating conditions.
Coconut amine ethoxylate features high active substance content ( > 96 %), low moisture (< 4 %), and is relatively insensitive to water hardness, making it robust for industrial cleaning applications.
Coconut amine ethoxylate is cleanser and emulsifier of cocoyl polyoxyethylene amine.
Coconut amine ethoxylate is excellent oil removal ability is suitable for spray degreasing and immersion degreasing.
Coconut amine ethoxylate is wetting agent, cleaning agent, emulsifier.
Coconut amine ethoxylate used for cleaners with degreasing properties, spray- and dip degreasing.
Coconut amine ethoxylate is a very effectives raw material.
Coconut amine ethoxylate is an amine ethoxylate based on cocos fatty amine.
Coconut amine ethoxylate can be combined with all types at nonionic and cationic surfactants, and are compatible with anionic products on a case-by-case level.
Coconut amine ethoxylate is resistant to most chemicals at typical concentrations used and insensitive to water hardness.
Coconut amine ethoxylate is insensitive to water hardness.
Coconut amine ethoxylate can be combined with all types at nonionic and cationic surfactants
Coconut amine ethoxylate resistant to most chemicals at typical concentrations used.
Coconut amine ethoxylate is nonionic surfactant.
Coconut amine ethoxylate wetting agent, emulsifier and detergent (96%).
Coconut amine ethoxylate is slightly cationic in nature and has many uses in acidic cleaners, such as bath cleaners.
Coconut amine ethoxylate can also be used in alkaline environments.
Coconut amine ethoxylate is used for cleaners with degreasing properties, spray- and dip degreasing.
Coconut amine ethoxylate appears as a clear to slightly hazy liquid with high active matter content (> 96 %) and low water content (< 4 %), ensuring strong stability and consistent performance in industrial applications.
With its slight cationic nature, Coconut amine ethoxylate demonstrates excellent compatibility with acidic cleaning media while maintaining synergistic behavior with nonionic, cationic, and some anionic surfactants, which broadens its formulation possibilities.
Coconut amine ethoxylate functions simultaneously as a wetting agent, emulsifier, and degreasing component, making it particularly valuable in spray cleaning and dip cleaning systems where rapid soil removal and surface penetration are essential.
Coconut amine ethoxylate's chemical structure provides resistance to water hardness, ensuring reliable performance even under challenging conditions.
Industrially, Coconut amine ethoxylate is widely used in metal cleaning, textile processing, degreasing formulations, and specialty detergent systems, where its ability to reduce surface tension and emulsify oils contributes to superior cleaning efficiency.
In addition, Coconut amine ethoxylate's strong wetting and dispersing properties make it suitable for formulations in coatings, agrochemicals, and other specialty chemical blends.
Owing to its concentrated activity and robust stability, Coconut amine ethoxylate offers formulators both efficiency and versatility, securing its role as a key raw material in modern industrial cleaning and surface treatment solutions.
Market Overview of Coconut Amine Ethoxylate:
Coconut amine ethoxylate belongs to the class of ethoxylated fatty amines, a specialty surfactant segment with growing demand across multiple industrial markets.
Produced from renewable coconut-based fatty amines reacted with ethylene oxide, Coconut amine ethoxylate aligns well with the global shift toward bio-based, high-performance chemicals.
The surfactant market is expanding steadily due to increased requirements for efficient cleaning, emulsification, and wetting agents in industrial and institutional sectors, and Coconut amine ethoxylate is positioned as a versatile raw material meeting these needs.
Coconut amine ethoxylate finds significant usage in metal cleaning, industrial degreasing, textile processing, agrochemical formulations, and detergent systems, particularly where strong wetting, emulsifying, and dispersing properties are required.
Coconut amine ethoxylate's resistance to water hardness and compatibility with acidic media make it especially attractive for heavy-duty cleaning applications in the automotive, metal finishing, and machinery sectors.
On a global scale, demand for coconut amine ethoxylates is influenced by three key factors:
Industrial cleaning growth – rising hygiene and maintenance standards across manufacturing facilities.
Textile and coatings industries – increased consumption of wetting and dispersing agents.
Sustainability trends – preference for renewable, coconut-derived feedstocks over purely petrochemical surfactants.
Regionally, Europe and North America emphasize sustainability and eco-compliance, boosting interest in bio-based ethoxylates, while Asia-Pacific represents the fastest-growing market due to rapid industrialization, textile production, and agrochemical demand.
With its high concentration (>96 % active matter), cost-effectiveness, and broad formulation flexibility, Coconut amine ethoxylate is considered a competitive product in the specialty surfactants market.
Uses of Coconut Amine Ethoxylate:
Coconut amine ethoxylate is wetting agent, cleaning agent and emulsifier.
Coconut amine ethoxylate is used for cleaners with degreasing properties, spray- and dip degreasing.
Coconut amine ethoxylate possesses a slight cationic character and is mainly suitable as wetting, emulsifying and cleaning agent in acid media such as acid technical cleaning baths, etc.
Especially for cleaners with degreasing properties, Coconut amine ethoxylate is a very effective raw material.
Industrial Cleaning & Degreasing:
Formulators use Coconut amine ethoxylate in spray and dip cleaning systems for machinery, automotive parts, and metal surfaces.
The surfactant effectively removes oils, greases, and particulate contaminants.
Coconut amine ethoxylate remains stable against water hardness, ensuring consistent cleaning power in varied water qualities.
Metalworking & Surface Treatment:
Manufacturers incorporate Coconut amine ethoxylate into acidic cleaning formulations for rust, scale, and oxide removal.
Coconut amine ethoxylate acts as a wetting and dispersing agent in metal finishing and electroplating baths.
Textile & Leather Processing:
Textile processors use Coconut amine ethoxylate as a wetting and leveling agent in scouring, dyeing, and finishing.
The surfactant enhances penetration of dyes and chemicals into fibers.
Leather industries employ Coconut amine ethoxylate for degreasing and uniform chemical distribution.
Agrochemicals:
Agrochemical formulators use Coconut amine ethoxylate as an emulsifier and dispersant in herbicide, pesticide, and fertilizer formulations.
Coconut amine ethoxylate improves spreadability and absorption of active ingredients on plant surfaces.
Detergents & Specialty Chemicals:
Detergent manufacturers add Coconut amine ethoxylate to formulated detergents as a co-surfactant to boost emulsification and cleaning.
The surfactant is applied in coatings, resins, and specialty formulations where surface wetting and stability are required.
Chemical producers use Coconut amine ethoxylate as a raw material for corrosion inhibitors and other intermediates.
Ore Flotation & Mining:
Mining industries employ Coconut amine ethoxylate as a flotation agent in ore beneficiation, aiding in the separation of valuable minerals.
Coconut amine ethoxylate improves the selectivity and efficiency of flotation processes.
Benefits of Coconut Amine Ethoxylate:
Coconut amine ethoxylate provides excellent wetting and emulsifying power, ensuring rapid soil removal and dispersion of oils and greases.
Coconut amine ethoxylate maintains stability and performance even in the presence of hard water or varying water qualities.
Formulators benefit from Coconut amine ethoxylate's high active matter content (>96 %), which delivers strong efficiency at lower dosages.
Coconut amine ethoxylate shows good compatibility with acidic cleaning media, making it suitable for heavy-duty industrial cleaning systems.
Manufacturers appreciate its versatility, since Coconut amine ethoxylate can be blended with cationic, nonionic, and some anionic surfactants.
Coconut amine ethoxylate enhances the penetration of dyes, agrochemicals, and surface treatments, leading to improved process outcomes.
Coconut amine ethoxylate contributes to sustainability trends, as it is derived partly from renewable coconut-based raw materials.
End users value Coconut amine ethoxylate's robustness, reliability, and multifunctional performance across industries from textiles to mining.
Production of Coconut Amine Ethoxylate:
Coconut amine ethoxylate is produced through the ethoxylation of coconut-derived fatty amines, in which manufacturers react natural amines obtained from coconut oil with approximately twelve moles of ethylene oxide under carefully controlled conditions.
During this process, producers regulate temperature, pressure, and the presence of catalysts to ensure the desired degree of ethoxylation and to obtain a surfactant with balanced wetting, emulsifying, and dispersing capabilities.
The outcome is a highly concentrated product containing more than 96% active matter and less than 4% moisture, which provides excellent stability and efficiency compared to diluted surfactant blends.
Quality control laboratories systematically verify key specifications such as active substance content, pH, viscosity, and solubility to guarantee batch-to-batch consistency.
Once manufactured, Coconut amine ethoxylate is packaged in corrosion-resistant containers such as steel drums or intermediate bulk containers (IBCs), ensuring safe storage and transport to end users.
The reliance on coconut-based raw materials further strengthens Coconut amine ethoxylate's market appeal, since the use of renewable feedstocks aligns with current global sustainability targets in the surfactant industry.
History of Coconut Amine Ethoxylate:
The history of Coconut amine ethoxylate is closely linked to the development of fatty amine ethoxylates, which emerged in the mid-20th century as versatile surfactants for industrial cleaning and processing applications.
Early surfactants were largely petrochemical-based, but by the 1960s and 1970s, manufacturers began exploring natural raw materials such as coconut oil to create more sustainable and multifunctional products.
Coconut fatty amines, with their straight-chain structure and reactivity, proved to be an excellent base for ethoxylation with ethylene oxide, giving rise to a new class of surfactants that combined strong emulsifying and wetting power with better biodegradability.
Coconut amine ethoxylate was developed as part of this trend, specifically tailored for heavy-duty cleaning, textile finishing, and agrochemical formulations, where resistance to water hardness and compatibility with acidic systems were essential.
Over the decades, improvements in process control and quality assurance allowed producers to deliver highly concentrated grades like Coconut amine ethoxylate with >96% active matter, meeting industrial needs for efficiency and reliability.
Today, Coconut amine ethoxylate is not only valued for its technical performance but also for its partial reliance on renewable coconut-based feedstocks, making it consistent with modern sustainability requirements and ensuring its continued importance in the specialty surfactants market.
Handling and Storage of Coconut Amine Ethoxylate:
Handling:
Operators should handle Coconut amine ethoxylate in well-ventilated areas to minimize inhalation of vapors or mists.
Workers should avoid direct skin and eye contact by using chemical-resistant gloves, safety goggles, and protective clothing.
Equipment used for transfer should be properly grounded to prevent static discharge.
Eating, drinking, and smoking should be prohibited in handling areas.
Storage:
Manufacturers recommend storing Coconut amine ethoxylate in tightly closed, corrosion-resistant containers, protected from moisture, sunlight, and direct heat sources.
Storage areas should remain cool, dry, and well-ventilated, typically at 15–25 °C.
Containers should be kept away from strong oxidizing agents and strong acids.
Shelf Life:
When properly stored under recommended conditions, Coconut amine ethoxylate maintains stability for at least 2 years without significant degradation.
Stability and Reactivity of Coconut Amine Ethoxylate:
Chemical Stability:
Coconut amine ethoxylate is stable under normal storage and handling conditions.
Thermal Stability:
The compound tolerates moderate heat but may decompose at temperatures above 200 °C.
Reactivity:
Coconut amine ethoxylate is non-reactive under neutral conditions but may react with strong oxidizers or reactive halogenated compounds.
Hazardous Decomposition Products:
Thermal decomposition may release nitrogen oxides and carbon oxides (CO and CO₂).
Incompatibilities:
Strong oxidizing agents, strong acids, and reactive chlorinated compounds should be avoided.
First Aid Measures of Coconut Amine Ethoxylate:
Inhalation:
If vapors or mists are inhaled, the affected person should be moved to fresh air.
Medical attention should be sought if respiratory symptoms persist.
Skin Contact:
In case of skin contact, the exposed area should be washed thoroughly with soap and plenty of water.
Contaminated clothing should be removed and washed before reuse.
Eye Contact:
If Coconut amine ethoxylate enters the eyes, they should be rinsed immediately with plenty of clean water for at least 15 minutes.
Medical advice should be obtained if irritation persists.
Ingestion:
If swallowed, the mouth should be rinsed with water and medical attention sought immediately.
Vomiting should not be induced unless directed by medical personnel.
Firefighting Measures of Coconut Amine Ethoxylate:
Suitable Extinguishing Media:
Firefighters may use dry chemical, alcohol-resistant foam, carbon dioxide (CO₂), or water spray to extinguish fires involving Coconut amine ethoxylate.
Unsuitable Media:
Direct water jet should be avoided, as Coconut amine ethoxylate may spread the material.
Special Hazards:
Combustion may produce irritating fumes, including nitrogen oxides and carbon oxides.
Protective Equipment for Firefighters:
Firefighters should wear self-contained breathing apparatus (SCBA) and full protective gear.
Accidental Release Measures of Coconut Amine Ethoxylate:
Personal Precautions:
Workers should wear protective gloves, goggles, and respirators when dealing with spills.
Ventilation should be increased to reduce airborne vapors or mists.
Environmental Precautions:
Coconut amine ethoxylate should not be allowed to enter drains, surface water, or soil.
Containment and Cleaning:
Spilled material should be absorbed with inert material (e.g., sand, vermiculite) and transferred into suitable labeled containers for disposal.
Surfaces should be cleaned with water and mild detergent to remove residues.
Exposure Controls / Personal Protective Equipment of Coconut Amine Ethoxylate:
Occupational Exposure Limits:
No specific exposure limits have been established, but exposure should be minimized according to general chemical safety standards.
Engineering Controls:
Local exhaust ventilation and general dilution ventilation should be applied in production and laboratory areas.
Personal Protective Equipment:
Respiratory Protection:
Respirators (EN 149 / NIOSH-approved) should be used if airborne concentrations exceed recommended levels.
Skin Protection:
Chemical-resistant gloves (nitrile or neoprene) and protective clothing should be worn.
Eye Protection:
Safety goggles or face shields should be used to prevent eye contact.
Hygiene Measures:
Workers should wash hands thoroughly after handling and avoid eating, drinking, or smoking in work areas.
Identifiers of Coconut Amine Ethoxylate:
Product Name: Coconut amine ethoxylate
Chemical Name: Coconut amine ethoxylate (~12 EO)
INCI Name (Cosmetic): PEG-12 Cocamine
CAS Number: 61791-14-8
EC Number (EINECS): 500-152-2
HS Code (Customs): 3402.13 (Organic surface-active agents, nonionic)
Molecular Formula (typical): C₁₂H₂₅N·(C₂H₄O)₁₂ (approximate, varies with degree of ethoxylation)
Molecular Weight: Average ~ 700–750 g/mol (mixture, depending on ethoxylation degree)
UN Number (Transport): Not classified as hazardous for transport under normal regulations
Index Number (CLP): Not assigned (falls under generic ethoxylated amines category)
Structure Type: Ethoxylated long-chain aliphatic amine (coconut origin)
General Description: Nonionic/cationic surfactant, viscous liquid, high active content (>96 %).
Trade Name: Coconut amine ethoxylate
Chemical Family: Ethoxylated fatty amines
Chemical Type: Nonionic / slightly cationic surfactant
Generic Name: Coconut amine ethoxylate (~12 EO)
CAS Number: 61791-14-8
EC Number (EINECS): 500-152-2
UN Number (Transport): Not classified as hazardous for transport (typically not assigned)
Index Number (CLP): Not specifically assigned; falls under general ethoxylated amines classification
HS Code (Customs): 3402.13 (Organic surface-active agents, nonionic, whether or not put up for retail sale)
Molecular Formula (approximate): C₁₂H₂₅N·(C₂H₄O)₁₂
Molecular Weight (average): ~700–750 g/mol (mixture, depending on degree of ethoxylation)
Structural Description: Ethoxylated long-chain aliphatic amine derived from coconut fatty acids
Structural Features: One long hydrophobic cocoalkyl chain linked to an amine group, modified with ~12 ethylene oxide units to increase hydrophilicity
TSCA (USA): Listed
EINECS (EU): 500-152-2
DSL (Canada): Listed
AICS (Australia): Listed
ENCS (Japan): Listed under general ethoxylated amines
KECL (Korea): Listed
PICCS (Philippines): Listed
IECSC (China): Listed
Properties of Coconut Amine Ethoxylate:
Appearance: Clear to slightly hazy liquid
Color: Light yellow to amber
Odor: Mild, amine-like odor
Physical State: Liquid (viscous)
pH (1% solution): Typically 9.0 – 11.0 (alkaline)
Density (20 °C): 0.97 – 1.01 g/cm³
Viscosity (25 °C): 200 – 400 mPa·s (approximate, depending on EO degree)
Solubility in Water: Completely soluble; forms clear to slightly opalescent solutions
Solubility in Organic Solvents: Soluble in alcohols and glycols; limited solubility in hydrocarbons
Hydrophilic-Lipophilic Balance (HLB): ~13–15 (nonionic surfactant, good emulsifier for oil-in-water systems)
Active Substance Content: >96 % (low moisture <4 %)
Boiling Point: >100 °C (decomposes at elevated temperature)
Freezing / Melting Point: <0 °C (remains liquid under normal storage conditions)
Flash Point: >100 °C (not classified as highly flammable, but combustible at high temperature)
Autoignition Temperature: Not precisely established; expected >200 °C
Vapor Pressure (20 °C): Negligible
Partition Coefficient (log P): Not available; expected moderately hydrophilic due to EO chains
Stability in Hard Water: Good stability, unaffected by water hardness
Surface Tension (1% solution): ~35–40 mN/m at 25 °C
Foaming Characteristics: Moderate, stable foam in aqueous solutions
Substance Name: Coconut amine ethoxylate
Chemical Type: Ethoxylated fatty amine (coconut-derived, ~12 EO)
Physical Form: Viscous liquid
Color: Clear, light yellow to amber
Odor: Mild, characteristic amine-like odor
Taste: Not intended for ingestion; irritating and unsafe
Molecular Formula (approx.): C₁₂H₂₅N·(C₂H₄O)₁₂
Molecular Weight (average): ~700–750 g/mol (mixture, depending on ethoxylation degree)
Density (20 °C): 0.97 – 1.01 g/cm³
Bulk Density: ~1000 kg/m³
Viscosity (25 °C): 200 – 400 mPa·s (high viscosity typical of ethoxylated amines)
Refractive Index (20 °C): ~1.45 – 1.47
Boiling Point: >100 °C (product decomposes before boiling under atmospheric pressure)
Melting/Freezing Point: Below 0 °C (remains liquid at typical storage conditions)
Flash Point (Closed Cup): >100 °C → not highly flammable, but combustible at elevated temperatures
Autoignition Temperature: >200 °C (approximate, not precisely determined)
Thermal Decomposition: Above 200 °C releases nitrogen oxides and carbon oxides
Names of Coconut Amine Ethoxylate:
Regulatory process names:
Amines, coco alkyl, ethoxylated
Amines, coco alkyl, ethoxylated
1 - 4.5 moles ethoxylated
IUPAC names:
(Coconut oil alkyl) amine, ethoxylated
(Coconut oil alkyl)amine, ethoxylated
amines coco alkyl ethoxylated
Amines, C12-18 alkyl, ethoxylated, 15 EO
Amines, coco alkyl, ethoxylated
amines, coco alkyl, ethoxylated
Amines, coco alkyl, ethoxylated
Amines, coco alkyl, ethoxylated (12EO)
Amines, coco alkyl, ethoxylated (2-4 EO)
Amines, coco alkyl, ethoxylated (2EO)
Amines, coco alkyl, ethoxylated 1 - 4.5 moles ethoxylated
Amines, coco alkyl, ethoyxlated
aminy, kokosový alkyl, ethoxylované
Coco alkylamine ethoxylate
Cocoamine ethoxyled
Coconut fatty amine ethoxylate 2 - 4 EO
Cocosfettaminoxethylat (< 2,5 mol EO)
Ethomeen C25
Fatty amine ethoxylated
Polyoxyethylene (5) cocoalkylamines
Trade names:
(Coconut oil alkyl)amine, ethoxylated
Aduxol CAM 02; 2-EO
Alkyl(de coco)amines éthoxylées
Amiet 102
Amiet CD 17; 5-EO
Amin, Kokosalkyl, ethoxyliert
Amine, Kokos + EO
Amine, Kokos alkyl, ethoxyliert
Amine, Kokos, ethoxyliert
Amines, coco alkyl, ethoxylated
Amines, coco alkylbis(polyoxyethylene)
Amines, coconut, ethoxylated
Coconut amine ethoxylate ged.; 12-EO
Coconut amine ethoxylate; 12-EO; 100% Active Matter; active substance
Arosurf MG 160
Berol 307
BK 1057 damped; 12-EO
BK 1057 F200E GV; 12-EO
BK 1057 F200E; 12-EO
BK 1057 ged.; 12-EO
BK 1057 GEDAEMPFT; 12-EO; 100% Active Matter; active substance
BK 1057; 12-EO; 99% Active Matter; active substance
Chemeen C 10
Chemeen C 12G
Chemeen C 2
Coco alkyl amine with EO
Coco amines, ethoxylated
Cocoamin + 12 EO; 12-EO
COCOSAMIN 2,2 EO; 2,2-EO; 99-99% Active Matter; active substance
Crodamet 02
Crodamet C 20
Crodamet C 5
Dehydat 50; 2-EO
Dehymin + 6.2 EO; 6,2-EO; 100% Active Matter; active substance
DEHYMIN BASE 10; 10-EO
Dehymin DK + 3.8 EO; 3,8-EO; 100% Active Matter; active substance
DEHYQUART K 1705; 2-EO
Emulgator 87; 5-EO
ETHAOMEEN C 25; 15-EO
Ethomeen C
Ethomeen C 12
Ethomeen C 15
Ethomeen C 20
Ethomeen C 25
Ethomeen C/15; 5-EO; 100% Active Matter; active substance
ETHOMEEN C/25; 15-EO
Ethox CAM 15
Ethoxylated coco alkyl amines
Ethylan TLM
Eumulgin PA 12; 12-EO
Eumulgin PA 2; 2-EO
Fettamin + 12 EO, Kokos; 12-EO
Fettamin + 2 EO, Kokos; 2-EO
FM C8-18/18:1 COC + 10EO; 10-EO
FM C8-18/18:1 COC + 12.5EO; 12,5-EO
FM C8-18/18:1 COC + 12EO; 12-EO
FM C8-18/18:1 COC + 15EO; 15-EO
FM C8-18/18:1 COC + 2,2EO; 2,2-EO
FM C8-18/18:1 COC + 20EO; 20-EO
FM C8-18/18:1 COC + 2EO; 2-EO
FM C8-18/18:1 COC + 3,8EO; 3,8-EO
FM C8-18/18:1 COC + 30EO; 30-EO
FM C8-18/18:1 COC + 3EO; 3-EO
FM C8-18/18:1 COC + 4EO; 4-EO
FM C8-18/18:1 COC + 5EO; 5-EO
FM C8-18/18:1 COC + 6,2EO; 6,2-EO
FM C8-18/18:1 COC + 7EO; 7-EO
FM C8-18/18:1 COC + nEO; n-EO
Genamin C
Genamin C 050; 5-EO
Genamin C 100; 10-EO
Genamin C 200
Genamin C 200; 20-EO
GENAMIN C020; 2-EO
Genamin CC 100D
HE 1126; 4-EO
HE 1127; 20-EO
HE 1128; 30-EO
HE 1132; 7-EO
Hostastat FA 14; 2-EO
IMBENTIN-CAM/120; 12-EO
K 1168 100 %; 12-EO; 100% Active Matter; active substance
K 1168; 12-EO; 100% Active Matter; active substance
K 1186; 12-EO
K 1705 W; 2-EO
K 1705; 2-EO; 100% Active Matter; active substance
K 215
Katax 570 N; 12-EO
Kokosalkylamin mit EO
Kokosamin + 12 EO; 12-EO
Kokosamin + 2 EO; 2-EO
Kokosamin + 2-EO
Kokosamin + 5 EO; 5-EO
Kokosamin + EO
Kokosamin, ethoxyliert
Kostat P 650/5
Lowenol C-243; 3-EO
LUTENSOL FA 12 K; 12-EO
LUTOSTAT MSW 16 180KG; 2-EO
Lutostat MSW 16; 2-EO
Mazeen C 2
Mazeen C 5
Mezeen C 5
Nissan Nymeen F 215
Noramox C
Noramox C 11
Noramox C 11; 11-EO
Noramox C 12.5; 12,5-EO
Nymeen F 215
OE 4033; 2-EO
OMC 270; 12-EO
Optamine PC 5
PEG-10 cocamine
PEG-10 cocamine (INCI)
PEG-15 cocamine
PEG-15 cocamine (INCI)
PEG-2 cocamine
PEG-2 cocamine (INCI)
PEG-20 cocamine
PEG-20 cocamine (INCI)
PEG-3 cocamine
PEG-3 cocamine (INCI)
PEG-5 cocamine
PEG-5 cocamine (INCI)
PRODUKT BK 1057; 12-EO
PRODUKT BK 1057GEDAEMPFT; 12-EO
Rhodameen C 5
RIDOSOL 1057 #KN25#; unbekannt1
Ridosol 1057; unbekannt1
Rofamin KD 3
Varonic K 202
Varonic K 205
Varonic K 205LC
Varonic K 209
Varonic K 210
Varonic K 210LC
Varonic K 215
Varonic K 215LC
Other identifier:
61791-14-8