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Cleaning and adsorption <5 characteristics>

Emulsification and dispersion possible regardless of the type of oil or solid! Nanoparticles adhere, exhibiting cleaning effects.

We would like to introduce the "cleaning and adsorption" using hydrophilic nanoparticles and emulsions through the three-phase emulsification method that we handle. Since it can emulsify and disperse regardless of the type of oil or solid, nanoparticles adhere to solid surfaces and contaminated oils or substances, demonstrating a cleaning effect. Furthermore, because the three-phase emulsified emulsion is covered with hydrophilic nanoparticles, the emulsion itself adsorbs onto solid surfaces and contaminants through van der Waals forces. 【Features】 ■ Adsorption of hydrophilic nanoparticles and emulsions onto contaminated oils ■ Mixed dissolution of the internal phase solvent and contaminated oil ■ Stripping action by nanoparticles ■ Buoyancy effect of mixed oils ■ Rinsing effect by water flow *For more details, please refer to the PDF materials or feel free to contact us.

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The difference between surfactant emulsification and three-phase emulsification.

Emulsification by surfactants is a reversible adsorption/desorption! Emulsification by the three-phase emulsification method is an irreversible adhesion.

Our company introduces the "Differences between Surfactant Emulsification and Three-Phase Emulsification." The properties of emulsifiers are substances that dissolve in water or oil in the case of surfactant emulsification, and substances that do not dissolve in either water or oil in the case of three-phase emulsification. The emulsifying action involves the adsorption of surfactant molecules in surfactant emulsification, while in three-phase emulsification, it involves the adhesion of hydrophilic nanoparticles. 【Features】 <Surfactant Emulsification> ■ Properties of emulsifiers: Substances that dissolve in water or oil ■ Emulsifying action: Adsorption of surfactant molecules ■ Stabilization mechanism: Reduction of interfacial tension ■ Mixing of heterogeneous emulsions: Not easy ■ Phase transition of oil: Causes destabilization *For more details, please refer to the PDF document or feel free to contact us.

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