CMEE Coconut Methyl Ester Ethoxylates CAS 65218-33-7

CMEE Coconut Methyl Ester Ethoxylates are low foaming, easy to wash, dissolve quickly in coldwater, have no gel phase and good compatibility.Active matter content (%): 95

The following is a list of the most recent articles about CMEE Coconut Methyl Ester Ethoxylates :

CMEE Coconut Ethoxylates are easy to work with and have a very low freezing point.
It is mild and eco-friendly. CMEE Coconut Methyl Ester Ethoxylates have low foam and are easy to wash. Coldwater dissolution speed, no gel phase, good compatibility.

CMEE Coconut Ethoxylates are a reliable global CMEE. Please send us an email to receive the latest. Prices of CMEE Coconut Methyl Ester Ethoxylates If you want to purchase CMEE Coconut Ethoxylates at bulk prices.

Technical Parameter CMEE Coconut Methyl Ester Ethoxylates :
Appearance(25) Active Matter Content(%) Condensation point()
Pale Yellow Liquid 99 7-9 2-5

Applications CMEE Coconut Methyl Ester Ethoxylates :

The Fatty Acid methyl Ester was initially used mainly for the production fatty alcohols. However, it can also be used to sulfonate Fatty Alcohol methyl Esters a= sodium chloride, which is called MES.
The disodium generated by MES can have a negative impact on the washing performance. Additionally, it's difficult to make products with high concentrations and high viscosity. And it's difficult to compete in terms of price with linearalkylbenzene-sodium-sulfonate. Fatty acid methyl ester is made from renewable oil which is suitable for human living conditions.
The use and production of fatty acid-methyl ester have been increasing over the past few years due to the increasing global environmental protection standards. Recently, both domestic and foreign researchers have explored the fatty acids methyl esters' application fields in order to expand their scope.
Japanese Lion and German Condia have been comparing the physical properties and chemical properties between fatty acid methyl ester ethoxide and laurate ethanol ether since 1990.
Both have similar surface tension properties, wetting powers, detergency etc., but the foaming and turbidity points of the former are lower than those of alcohol-ether. The water solubility is also slightly lower.
Henkel has found that fatty acid methyl ester ethoxylates containing a mass fraction of 60% EO have a greater ability to remove stains than alcohol ethers (AEO) with the same carbon number when heated at 40C.
A patent reveals that fatty acid-methyl ester ethoxylates can be used in a variety of applications due to the excellent surface properties.
In China, technical staff of China National Institute of Daily Chemical Industry have developed the technology and catalyst for the preparation of FMEE utilizing fatty acid methyl ester as a raw material with ethylene oxide and studied the synthesis of FMEE utilizing a self-made catalyst.
The results indicate that FMEE is not only similar to AEO in terms of properties, but also offers the following advantages: low foaming, quick water solubility (strong oil solubilization), less skin irritation, and good biodegradability. This makes FMEE ideal for hard surface cleaning as well as liquid cleaning pesticides emulsifiers.
China Daily Chemical Industry Research Institute Fushun Dongyuan Chemical Plant have completed two industrial scale production experiments in 2002.
The manufacturer uses cMEE-8, which is the epoxy ethane product that has been condensed into 8 molecules. The powdered washing has undergone various tests and produced good results. It has good prospects for industrial use.


Packing & Shipping of CMEE Coconut Methyl Ester Ethoxylates :
We offer a variety of packing options based on the CMEE Coconut Ethyl Ester Ethoxylates quantities.
CMEE Coconut Methyl Ester Ethoxylates packing: 1kg/bottle. 25kg/barrel. 200kg/barrel.
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CMEE Coconut Methyl Ester Ethoxylates Properties

Alternative Names N/A
CAS Number 65218-33-7
Compound Formula N/A
Molecular Mass N/A
Appearance Pale Yellow Liquid
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Solubility In H2O N/A
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CMEE Coconut Methyl Ester Ethoxylates Health & Safety Information

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