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T-Det® N 307 is a 70% active solution of T-Det® N 30, a nonionic surfactant produced by the reaction of nonyl phenol with 30 moles of ethylene oxide. Its nonionic structure makes it compatible with anionic surfactants and it is stable in the presence of acids, bases, and salts.

Functions: Stabilizer, Surfactant, Surfactant (Nonionic)

Labeling Claims: BSE-free, Conflict minerals-free, Food Allergen-free, GMO-free, GenX-free, Heavy Metal-free, Irradiation-free, Melamine-free, No Added PFAS, Not Tested on Animals, PFOA-free, PFOS-free, Palm Oil-free, Pesticide-free, Preservative-free

Physical Form: Liquid

Technical Data Sheet

Knowde Enhanced TDS

Identification & Functionality

Technologies

Features & Benefits

Applications & Uses

Markets
Recommended Uses & Known Applications

This is water-soluble nonionic surfactant for use as a high temperature detergent and as an emulsion stabilizer in various applications. It is stable and effective in concentrated electrolyte solutions and can be used as an emulsifier in various paint systems.

Properties

Physical Form
Appearance
Liquid
Odor
Mild, aromatic
Compatible with
Anionic surfactants
Stable in
Bases, Acids, Salts
Typical Properties
ValueUnitsTest Method / Conditions
Moles EO30.0--
HLB Value17.0--
Activity70 - 71%-
Cloud Point (1% Aqueous)min. 100°C-
pH (1% in Water)5 - 7--
Flash Pointmin. 212°FOpen cup
Pour Point30.0°F-
Specific Gravity (at 25ºC)1.09--
Weight (at 25°C)9.1lbs/gal-
Viscosity (at 25°C)806.0cPs-

Regulatory & Compliance

Chemical Inventories

Safety & Health

Toxicity Information

This product is regarded as non-hazardous. However, it is considered to possess low acute oral and skin penetration. It should not be used in products for internal use.

Storage & Handling

Storage, Stability and Handling Information
  • T-Det N-307 is an aqueous solution of T-Det N-30 and must be stored in stainless steel or plastic lined tanks.
  • It should not be mixed with concentrated oxidizing or reducing agents since the mixture of these compounds with organic compounds could form a potentially explosive mixture.