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

Rhodoline DF 5688 Defoamer

Rhodoline DF5688 is a high-efficiency, waterborne defoamer from Solvay Rhodia, distinguished by its silicone-free composition—making it ideal for applications where silicone-based defoamers may cause compatibility issues. Its versatile formulation ensures reliable performance across diverse aqueous systems.

Features Of Rhodoline DF 5688 Defoamer

  1. Excellent Compatibility: Demonstrates strong stability and dispersibility in various aqueous formulations, integrating seamlessly without compromising product performance or integrity.

  2. Effective Foam Control: Delivers rapid elimination of existing foam and long-lasting inhibition, even in challenging high-shear or high-foam environments, ensuring consistent process stability.

  3. Universal Applicability: Functions as a general-purpose defoamer, adapting well to a wide range of industrial processes and formulations, reducing the need for multiple specialized additives.

Typical Applications Of Rhodoline DF 5688 Defoamer

  1. Adhesives: Optimizes foam control in adhesive manufacturing, enhancing process efficiency and improving the quality of the final product by minimizing foam-related defects.

  2. High-Gloss Coatings: Effectively prevents foam-related imperfections (such as pinholes and surface roughness), ensuring a smooth, flawless, and aesthetically appealing finish in high-gloss coating applications.

  3. Water-Based Inks: Maintains ink stability and prevents foam formation during printing processes, making it ideal for water-washable inks where consistent performance and print quality are critical.

Specifications Of Rhodoline DF 5688 Defoamer

Chemical Type
Non-silicone, waterborne formulation
Appearance
Clear to light-colored liquid
Density (25°C)
Approximately 0.9–1.1 g/cm³ (est.)
Viscosity (25°C)
Low to medium viscosity, enabling easy dispersion
pH Range
Neutral to slightly alkaline (e.g., 6–8)
Solubility
Dispersible in water and polar aqueous systems


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