Based on the active Diiodomethyl-p-tolylsulfone, these EPA-registered antimicrobial agents are useful in controlling microbial degradation in adhesives, paper coatings, plastics, tanned leather, caulks, metalworking fluids, textiles, coatings and wood preservation. Amical products are heat stable, effective over a wide pH range (pH 3-11), and offer broad spectrum activity against fungi, algae & mold.
Aminox® Amine Antioxidants are a low-temperature reaction product of diphenylamine and acetone that effectively protects against heat, oxygen and flexing fatigue. They are easily dispersed, non-blooming, and has no effect on cure rates. An effective antioxidant in small amounts, it is an ideal choice for many rubber products.
Anox® Binary Blend Antioxidants is a family of binary synergistic blends that protect polymers during processing and long- term aging.
Anox® Hindered Phenolic Antioxidants are high molecular weight hindered phenolic antioxidants that provide low volatility and excellent resistance to extraction from polymer compounds.
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These natural, high-purity (>98%) carboxymethylcellulose additives serve as the (water)well drilling industry standard to modify flow and filtration properties in water-based drilling fluids.
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These broad spectrum biocides are DFE (Design for Environment) approved, and are well-recognized for material preservation and hygiene applications.
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These fluoropolymer repellents can be diluted to create oil- and water-repellent penetrating sealers for natural stone, porous tile, grout, and masonry. They resist staining without changing the natural appearance of the substrate. They provide oil and water repellency, stain resistance, and easy stain cleanup.
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Document: Capstone™ Stone & Tile Repellents Comparison
Citroflex® Citric Acid Esters offer a broad range of benefits when used as plasticizers, solvent alternatives, lubricant additives and performance enhancers in aqueous and solvent-based polymer formulations. They are neither "Volatile Organic Compounds" (VOCs) nor "Hazardous Air Pollutants" (HAPs) and combine efficient plasticization of polymers with low toxicity, high flash points and rapid biodegradability.