This product is a mild anionic surfactant formed by the reaction of coconut oil acid and sodium hydroxyethyl sulfonate. It can be widely used in combination with anionic, cationic, non-ionic, and amphoteric surfactants, offering excellent cleaning, conditioning, and antistatic properties. Its nature is extremely gentle, causing minimal irritation to skin and mucous membranes. It produces rich, fine soap-like foam that is easy to rinse off and has strong resistance to hard water. This product can be used in transparent formula systems.
Application Performance:
When used in facial cleansers, it forms a bar with low viscosity that changes little with temperature, making it easy to shape and formulate. Adding a small amount to shower gels can significantly improve the foam structure and rinse performance. When applied to soap products, it can lower the pH value, enhance resistance to hard water, increase foam, and reduce irritation.
| Parameter Item | Specification / Value |
|---|---|
| Appearance (25℃) | White powder |
| Odor | Minor characteristic odor |
| pH (5%aq,25℃) | 4.00-7.00 |
| Free fatty acids (% Molecular weight: 213) | 3.0-10.0 |
| Water content (%) | ≤1.5 |
| Actives (% Formula weight: 343) | ≥84.0 |
This product is a mild anionic surfactant produced through the reaction of coconut oil acid and sodium hydroxyethyl sulfonate.
Yes, it features excellent compatibility and can be widely used in combination with anionic, cationic, non-ionic, and amphoteric surfactants.
Its nature is extremely gentle, which means it causes minimal irritation to the skin and mucous membranes, while still providing rich, fine soap-like foam that is easy to rinse.
Yes, it possesses strong resistance to hard water, ensuring stable performance and foaming properties even in hard water conditions.
In soaps, it lowers pH, enhances hard water resistance, boosts foam, and reduces irritation. In shower gels, even a small amount significantly improves foam structure and rinsing performance.
Yes, this surfactant is highly compatible and can be successfully used in transparent formula systems.