Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Eastman Pamolyn 200 Linoleic Acid Surfactant

Eastman Pamolyn 200 is a linoleic acid–based surfactant from Eastman’s Pamolyn series, offering excellent emulsification, foaming, and skin compatibility. Derived from renewable safflower oil, it functions as a mild nonionic emulsifier in personal care and cosmetic formulations, enhancing stability and sensory properties without harsh solvents or ethoxylation.
  • eastman pamolyn 200 linoleic acid surfactant_f1524ed6
  • eastman pamolyn 200 linoleic acid surfactant_f1524ed6

Features Of Eastman Pamolyn 200 Linoleic Acid Surfactant

  1. Highly effective anionic surfactant derived from renewable linoleic acid feedstock.

  2. Excellent foaming and wetting performance in hard water conditions.

  3. Biodegradable and compliant with international environmental stewardship guidelines.

  4. Low skin irritation potential, supporting safer handling in personal care formulations.

  5. Compatible with cationic, nonionic, and amphoteric surfactants for versatile formulation design.

Typical Applications Of Eastman Pamolyn 200 Linoleic Acid Surfactant

  1. Shampoos and body washes requiring mild yet efficient cleansing.

  2. Household liquid detergents and all-purpose cleaners.

  3. Industrial metal cleaning and degreasing solutions.

  4. Agrochemical adjuvants enhancing pesticide spray dispersion and leaf coverage.

  5. Textile processing auxiliaries for scouring and wetting of natural fibers.

Specifications Of Eastman Pamolyn 200 Linoleic Acid Surfactant

Chemical TypeLinoleic acid-based sodium soap (anionic surfactant)
Product FormPaste (semi-solid)
AppearanceOff-white to light tan viscous paste
pH (1% aqueous solution)9.5–10.5
SolubilityReadily dispersible in warm water; forms stable micellar solutions
Primary ApplicationsCleansing, foaming, wetting, emulsification
Key FeaturesRenewable origin, hard-water tolerance, biodegradability
Storage ConditionsStore in original container at 15–30°C; protect from freezing and excessive heat


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