ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium has the characteristics of rich and fine foam, low degreasing power, low irritation to skin and hair, and good biodegradability.
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About ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium:
| Product Name | Short Name | Effective substance content | PH | Odor | Appearance |
|---|---|---|---|---|---|
| Octyl Decyl Alcohol Ethoxylate Phosphate Potassium | ODEP-K | 42% | 8.5-9.5 | Slight characteristic odor | Light yellow liquid |
Industrial and commercial cleaning agent, wetting agent, solubilizer, alkali resistant penetrant. It can be used as a solubilizer for highly compounded surfactants and other formulation systems. Mainly used in industrial cleaning agents, daily chemical detergents, auxiliaries, etc.
Packing & Shipping of ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium:
We have many different kinds of packing which depend on ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium quantity.
ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium packing: 1kg/bottle, 25kg/barrel, or 200kg/ barrel.
ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.
FAQs of ODEP-K Octyl Decyl Alcohol Ethoxylate Phosphate Potassium
Q: What is the main use of octyldecanol polyoxyethylene ether phosphate potassium salt?
A: Used as emulsifier and wetting agent, it can improve the moisturising effect of skin and hair, increase the softness and foam stability of products. Used as softener and anti-static agent to improve the softness and anti-static properties of textiles, making them more comfortable. Used as a highly effective detergent for domestic and industrial cleaning, capable of effectively removing grease and dirt while reducing irritation. Used as dispersants and emulsifiers to improve the stability and dispersion of pesticides and fertilisers, and to enhance the efficacy of drugs and fertilisers. Used as a dispersant and wetting agent to improve the fluidity and adhesion of paints and inks, and to enhance the performance of products.
Q: What are the physical properties of octyldecanol polyoxyethylene ether phosphate potassium salt?
A: colourless to light yellow transparent liquid or viscous liquid, the specific form depends on the degree of ethoxylation and purity. Usually a liquid with no definite melting point. Boiling point is high, usually above 200°C, depending on molecular weight. Freely soluble in water and a variety of organic solvents such as ethanol and acetone. Density about 1.0 g/cm³ (20°C), depending on the molecular structure. Stable at room temperature, but may decompose at high temperatures or under conditions of strong acids and bases.
Q: What safety precautions should be taken when using Potassium Octyldecyl Polyoxyethylene Ether Phosphate Salt?
A: Wear appropriate protective gloves, glasses and masks to avoid direct contact with skin and eyes. Operate under well ventilated conditions and avoid inhaling its vapour or mist. Store in a cool, dry and ventilated place, away from sources of ignition and heat. In case of inadvertent contact with skin or eyes, flush immediately with plenty of water and seek medical help. Dispose of waste properly in accordance with local regulations to avoid pollution of the environment.
Q: What is the synthesis method of octyldecanol polyoxyethylene ether phosphate potassium salt?
A: Prepare octyldecanol, ethylene oxide, phosphoric acid and potassium hydroxide. Octyldecanol and ethylene oxide are ethoxylated in the presence of a catalyst (e.g. alkali metal hydroxide) to produce octyldecanol polyoxyethylene ether. The above octyldecanol polyoxyethylene ether and phosphoric acid under appropriate conditions to carry out phosphate esterification reaction to produce octyldecanol polyoxyethylene ether phosphate ester. Neutralise the above phosphate ester with potassium hydroxide under appropriate conditions to produce the potassium salt of the target product octyldecanol polyoxyethylene ether phosphate ester. The unreacted raw materials and by-products are removed through steps such as filtration, washing and drying to obtain the final product. As required, the product can be further purified by methods such as distillation or column chromatography to improve its purity and quality.

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