Health & Environmental Research Online (HERO)


Print Feedback Export to File
2919254 
Journal Article 
Mass flows of perfluorinated compounds (PFCs) in central wastewater treatment plants of industrial zones in Thailand 
Kunacheva, C; Tanaka, S; Fujii, S; Boontanon, SK; Musirat, C; Wongwattana, T; Shivakoti, BR 
2011 
Yes 
Chemosphere
ISSN: 0045-6535
EISSN: 1879-1298 
Elsevier 
83 
737-744 
English 
Perfluorinated compounds (PFCs) are fully fluorinated organic compounds, which have been used in many industrial processes and have been detected in wastewater and sludge from municipal wastewater treatment plants (WWTPs) around the world. This study focused on the occurrences of PFCs and PFCs mass flows in the industrial wastewater treatment plants, which reported to be the important sources of PFCs. Surveys were conducted in central wastewater treatment plant in two industrial zones in Thailand. Samples were collected from influent, aeration tank, secondary clarifier effluent, effluent and sludge. The major purpose of this field study was to identify PFCs occurrences and mass flow during industrial WWTP. Solid-phase extraction (SPE) coupled with HPLC-ESI-MS/MS were used for the analysis. Total 10 PFCs including perfluorooctane sulfonate (PFOS), perfluorooctanoic acid (PFOA), perfluoropropanoic acid (PFPA), perfluorohexanoic acid (PFHxA), perfluoroheptanoic acid (PFHpA), perfluorohexane sulfonate (PFHxS), perfluoronanoic acid (PFNA), perfluordecanoic acid (PFDA), perfluoroundecanoic acid (PFUnA), and perfluorododecanoic acid (PFDoA) were measured to identify their occurrences. PFCs were detected in both liquid and solid phase in most samples. The exceptionally high level of PFCs was detected in the treatment plant of IZ1 and IZ2 ranging between 662-847ngL(-1) and 674-1383ngL(-1), respectively, which greater than PFCs found in most domestic wastewater. Due to PFCs non-biodegradable property, both WWTPs were found ineffective in removing PFCs using activated sludge processes. Bio-accumulation in sludge could be the major removal mechanism of PFCs in the process. The increasing amount of PFCs after activated sludge processes were identified which could be due to the degradation of PFCs precursors. PFCs concentration found in the effluent were very high comparing to those in river water of the area. Industrial activity could be the one of major sources of PFCs contamination in the water environment. 
Industry; Perfluorinated compounds; PFOA; PFOS; Mass flow; Wastewater 
PFAS
• Additional PFAS (formerly XAgency)
     Literature Search November 2019
          PubMed
     Not prioritized for screening
     Perfluorododecanoic acid
• Expanded PFAS SEM (formerly PFAS 430)
     Litsearch: September 2019
          PubMed
     Not prioritized for screening
     Perfluorooctane
     Potassium perfluorooctanoate
     Sodium perfluorooctanoate
     Perfluorododecanoic acid
• ^Per- and Polyfluoroalkyl Substances (PFAS)
     PFDoA (307-55-1)
          Literature Search
               Pubmed
               WOS
     PFUnA (2058-94-8)
          Literature Search
               Pubmed
               WOS
     PFDA (335-76-2)
          Literature Search
               Pubmed
               WOS
     PFNA (375-95-1)
          Literature Search
               Pubmed
               WOS
     PFHpA (375-85-9)
          Literature Search
               Pubmed
               WOS
     PFHxA (307-24-4)
          Literature Search
               Pubmed
               WOS
     PFPeA (2706-90-3)
          Literature Search
               Pubmed
               WOS
     PFHxS (355-46-4)
          Literature search
               Pubmed
               WOS
• PFAS 150
     Literature Search Update December 2020
          PubMed
     Literature Search August 2019
          PubMed
     Not prioritized for screening
     Ammonium perfluorooctanoate
     Perfluorinated compounds
     Perfluorodecanoic acid
     Perfluoroheptanoic acid
     Perfluorohexanesulfonic acid
     Perfluorohexanoic acid
     Perfluorononanoic acid
     Perfluorooctane
     Perfluorooctanesulfonic acid
     Perfluorooctanoic acid
     Perfluoropropanoic acid
     Perfluoroundecanoic acid
• PFBA
     Protocol References
• PFDA
     Literature Search
          Pubmed
          WOS
     Scopus: April 2021
     Screening Results
          Excluded/Not on Topic
     Title and Abstract Screening
          Excluded
     Literature Searches (through April 2023 update and post-public comment/peer review)a    
          Title & Abstract Screening
               Excluded
• PFHpA
     Literature Search
          Pubmed
          WOS
     Screening Results
          Excluded/Not on Topic
• PFHxA
     Literature Search
          Pubmed
          WOS
     Literature Search
          Pubmed
          WOS
     Scopus: April 2021
     Screening Results
          Excluded/Not on Topic
     Title and Abstract Screening
          Excluded
               Not relevant to PECO
     HAWC
• PFHxS
     Database searches
          Pubmed
          Toxline
          WOS
          Scopus
     Excluded
          TiAb
• PFNA
     Literature Search (August 2017)
          Pubmed
     PFNA Literature Search pre-2019
          Pubmed
          WOS
     Literature Search
          Pubmed
          WOS
     Screening Results
          Excluded/Not on Topic
     Title and Abstract Screening
          Excluded
               Not relevant to PECO
• PFPeA
     Literature Search
          Pubmed
          WOS
     Screening Results
          Excluded/Not on Topic
• PFUnA
     Literature Search
          Pubmed
          WOS
     Screening Results
          Excluded/Not on Topic