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FASCAT® 9102 Catalyst
FASCAT® 9102 catalyst is used in the synthesis of saturated polyester resins for powder coatings and coil coatings.
The FASCAT® 9102 catalyst is utilized to produce saturated polyester resins, specifically for powder coatings and coil coatings. This grade is commonly used to manufacture aromatic polyester polyols, which are essential for creating both flexible and rigid polyurethane foam. Additionally, it plays a crucial role in ring-opening polymerization, a process used to produce various types of polymers. FASCAT® 9102 is a versatile compound that finds application in producing plasticizers, such as dioctyl phthalate. It also exhibits excellent catalytic activity in transesterification reactions, with optimal performance observed within a temperature range of 80°C to 150°C, depending on the system.
FASCAT® 9102 is the FDA-approved food-grade variant of FASCAT® 4102. FASCAT® 9102 is a liquid catalyst known for its hydrolytic stability. It is commonly used to catalyze esterification and polycondensation reactions within a temperature range of 210°C to 240°C. The FASCAT® 9102 catalyst can be seamlessly integrated into the final product without impacting its quality, eliminating the need for removal.
Specifications
Form: Liquid Color: Pale yellow CAS number: 23850-94-1 EC number: 245-912-1 Molecular weight: 605.0 Sn %: 19.6 Bulk density, g/cm3: 1.13
Shortens esterification cycle times compared to uncatalyzed systems Minimizes side reactions, such as ether formation from polyhydric alcohols Easily handled and readily dispersed in reaction mixtures Does not require neutralization or filtration at the end of production Food-grade approved for use under 21 CFR 177.2420(b)3 Catalyst in the production of polyester resins Does not exceed 0.2 percent of the polyester resin under 21 CFR 175.300 Neutral and noncorrosive
Problems Solved
Difficulty dispersing in aqueous-based coatings Cross-linked polyester resins do not meet FDA food approval Requirement of catalysts to produce polyester resins Esterification cycle times are too long, creating more side reactions
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