Reactive Diluents for Bio-Polyols

DRC manufactures a wide variety of Synthetic Resins which have applications in Epoxy Adhesives & Solvent Based Adhesives. manufactures of Synthetic Resins which have applications in Epoxy Adhesives
manufactures a wide variety of Synthetic Resins which have applications in Solvent Based Adhesives


Reactive Diluents for Bio-Polyols


Products Colour OH Value (mg KOH/gm) Viscosity @ 25°C (cP) Acid Value (mg KOH/gm) Moisture Content (%) Equivalent Weight Applications
Drothane™ 1500 10 max 260 - 280 200 - 400 3 max 0.2 max 205 Bifunctional reactive diluent
Drothane™ 1501 4 max 140 - 180 25 - 150 2 max 0.2 max 310 - 400 Bifunctional reactive diluent

D.R. Coats Ink & Resins Pvt. Ltd. (DRC) offers high-performance reactive diluents for bio-polyols, engineered to enhance formulation flexibility and reduce viscosity in polyurethane systems. Designed for industrial and specialty chemical applications across Europe, our Drothane™ series meets stringent quality standards while supporting the shift towards bio-based chemistry.

Drothane™ 1500 is a bifunctional reactive diluent with an OH value of 260-280 mg KOH/gm and a moderate viscosity range of 200-400 cP, making it suitable for efficient processing and improved flow characteristics. Drothane™ 1501, also a bifunctional grade, offers a lower OH value (140-180 mg KOH/gm) and a viscosity range of 25-150 cP, ideal for applications requiring reduced system thickness and faster reaction profiles.

With excellent color stability and low acid and moisture content, DRC’s reactive diluents for bio-polyols help manufacturers achieve consistent performance in coatings, adhesives, sealants, and elastomers.

As a trusted supplier of reactive diluents for bio-polyols in India, DRC ensures reliable export capabilities and consistent product quality for the European market. Our solutions support sustainable innovation and compliance with evolving regulatory frameworks across the EU. Choose DRC for dependable, efficient, and eco-conscious solutions tailored to modern polyurethane technologies.