Chemical processing encompasses numerous sectors, each with distinct process requirements but common needs for corrosion resistance and reliability. GFT9 products serve critical functions throughout these operations.
Inorganic Chemical Production
Manufacturing of acids (sulfuric, hydrochloric, nitric, phosphoric), alkalis (caustic soda, potash), industrial gases, and inorganic salts requires equipment that withstands both the primary product and process intermediates. PFA-lined valves handle concentrated acid feed, dilution systems, neutralization circuits, and product transfer.
Organic Chemical Synthesis
Petrochemical derivatives, solvents, intermediates, and specialty organics often involve aggressive reagents and elevated temperatures. PFA-lined components resist organic acids, chlorinated hydrocarbons, aromatic compounds, and mixed solvent systems typical of organic synthesis operations.
Chlor-Alkali Processing
Chlorine and caustic soda production creates one of the most demanding valve environments—wet chlorine attacks virtually all metals, while hot caustic destroys most polymers. PFA provides reliable service in brine systems, chlorine handling, caustic concentration, and hydrogen circuits.
Surface Treatment and Metal Finishing
Pickling, plating, anodizing, and etching operations use concentrated acids and specialized chemical baths. PFA-lined valves and strainers control flow of sulfuric, hydrochloric, phosphoric, chromic, and hydrofluoric acids without contaminating treatment solutions.
Water and Wastewater Treatment
Chemical dosing systems for pH adjustment, disinfection, and coagulation handle concentrated acids, caustic, sodium hypochlorite, and specialty treatment chemicals. PFA-lined components provide consistent chemical resistance across the full range of treatment reagents.
Agrochemical Production
Fertilizer, pesticide, and herbicide manufacturing involves phosphoric acid, sulfuric acid, ammonia, and various organic intermediates. PFA-lined valves handle both bulk chemical streams and concentrated formulations.