AI Article Synopsis

  • Researchers investigated a method to decompose persistent perfluorocarboxylic acids (PFCAs) in water using persulfate ions (S2O8(2-)).
  • The process involves photolysis of S2O8(2-), which generates sulfate radicals that effectively break down compounds like perfluorooctanoic acid (PFOA) into fluoride ions and carbon dioxide, with some shorter-chain PFCAs also produced.
  • The technique demonstrated a high decomposition efficiency, completely breaking down PFOA at a concentration typical of wastewater in just 4 hours of exposure to a specialized light source.

Article Abstract

Photochemical decomposition of persistent perfluorocarboxylic acids (PFCAs) in water by use of persulfate ion (S2O8(2-)) was examined to develop a technique to neutralize stationary sources of PFCAs. Photolysis of S2O8(2-) produced highly oxidative sulfate radical anions (SO4-), which efficiently decomposed perfluorooctanoic acid (PFOA) and other PFCAs bearing C4-C8 perfluoroalkyl groups. The major products were F- and CO2; also, small amounts of PFCAs with shorter than initial chain lengths were detected in the reaction solution. PFOA at a concentration of 1.35 mM (typical of that in untreated wastewater after an emulsifying process in fluoropolymer manufacture) was completely decomposed by a photochemical system with 50 mM S2O8(2-) and 4 h of irradiation from a 200-W xenon-mercury lamp. The initial PFOA decomposition rate was 11 times higherthan with photolysis alone. All sulfur-containing species in the reaction solution were eventually transformed to sulfate ions by this method. This method was successfully applied to the decomposition of perfluorononanoic acid contained in a floor wax solution.

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Source
http://dx.doi.org/10.1021/es0484754DOI Listing

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