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RILSAN T BLANC 1488 AC is a white dipping agent, appear as a fine powder form. Its key application are dishwasher basket & Wire goods. Its key properties are excellent wetting, cost effective, flexibility, Impact resistance and sensitive to cross contamination.
RILSAN T NOIR 7450 AC is a white dipping agent, appear as a fine powder form. Its key application are dishwasher basket & wire goods. Its key properties are excellent wetting, cost effective, flexibility, Impact resistance and sensitive to cross contamination.
EASTMAN™ HYDROQUINONE PHOTO. GRADE is used as a good general-purpose inhibitor, stabilizer, antioxidant, and intermediate. EASTMAN™ HYDROQUINONE PHOTO. GRADE can be used for the applications in agriculture intermediates, Case and carton closures, Dyes/pigments/paints, Flame retardants, Graphic arts, Herbicides - intermediate for other, Intermediates, Kitchen & bath, Methyl methyl acrylate (MMA), Molding & trim interior, Paints & coatings, Peek (polyether ether ketone) Photographic chemicals, Photographic supplies, Polymer modification, Polymer processing, Process solvents, Resins, Rubber modification, Specialty chemicals, Water treatment industrial.
EASTMAN™ CELLULOSE ACETATE BUTYRATE (CAB-531-1) is a cellulose ester with a higher butyryl level than Eastman CAB-381 type esters. Tough films with good resistance to marring and weathering are possible through combinations of cellulose acetate butyrate with thermoplastic acrylic resins. Eastman CAB-531-1 and CAB-381 esters are similar in hydroxyl content and solubility characteristics, both being soluble in a wide range of solvents. Eastman CAB-531-1 is a more flexible resin that requires lower plasticizer modification than the Eastman CAB-381 esters. When CAB-531-1 is dissolved in appropriate solvents, a clear, colorless solution is produced. Eastman CAB-531-1 is based on cellulose, one of the most abundant natural renewable resources. The calculated approximate bio-content value of 38% for Eastman CAB-531-1 was determined by using six bio-based carbon atoms per anhyroglucose unit divided by the total number of carbons per anhyroglucose unit. Although the value reported is not specifically measured for bio-carbon, it can be estimated based on typical partition data.