Literature DB >> 23540810

6:2 Fluorotelomer alcohol aerobic biotransformation in activated sludge from two domestic wastewater treatment plants.

Lijie Zhao1, Patricia K McCausland, Patrick W Folsom, Barry W Wolstenholme, Hongwen Sun, Ning Wang, Robert C Buck.   

Abstract

6:2 Fluorotelomer alcohol [6:2 FTOH, F(CF2)6CH2CH2OH] is a major basic chemical being used to manufacture FTOH-based products. After the end of use, 6:2 FTOH-based products may be released to domestic wastewater treatment plants (WWTPs) as a first major environmental entry point. Activated sludge collected from two WWTPs was dosed with 6:2 FTOH to investigate its biotransformation rate and to identify major transformation products. The volatile 5:2 sFTOH [F(CF2)5CH(OH)CH3] is the most abundant transformation product and accounted for an average of 40mol% of initially dosed 6:2 FTOH after two months of incubation with activated sludge, with 30mol% detected in the headspace. PFPeA [F(CF2)4COOH] averaged 4.4mol% after two months, 2.4-7 times lower than that in sediment and soils. The much lower level of PFPeA formed in activated sludge compared with soil indicates that microbial populations in activated sludge may lack enzymes or suitable environment conditions to promote rapid 5:2 sFTOH decarboxylation to form PFPeA, resulting in more 5:2 sFTOH partitioned to the headspace. PFHxA [F(CF2)5COOH] and 5:3 [F(CF2)5CH2CH2COOH] acid are major non-volatile transformation products in activated sludge. For example, PFHxA averaged 11mol% after two months, which is about 30% higher compared with sediment and soils, suggesting that microbes in WWTPs may utilize similar pathways as that in sediment and soils to convert 5:2 sFTOH to PFHxA. 5:3 Acid averaged 14mol% after two months, comparable to that in soils and slightly lower than in sediment, further confirming that 5:3 acid is a unique product of 6:2 FTOH biotransformation in the environment.
Copyright © 2013 Elsevier Ltd. All rights reserved.

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Year:  2013        PMID: 23540810     DOI: 10.1016/j.chemosphere.2013.02.032

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  6 in total

1.  Degradation and effect of 6:2 fluorotelomer alcohol in aerobic composting of sludge.

Authors:  Weichuan Qiao; Jiahui Miao; Hongmei Jiang; Qiwen Yang
Journal:  Biodegradation       Date:  2021-01-22       Impact factor: 3.909

2.  Structure-Specific Aerobic Defluorination of Short-Chain Fluorinated Carboxylic Acids by Activated Sludge Communities.

Authors:  Shun Che; Bosen Jin; Zekun Liu; Yaochun Yu; Jinyong Liu; Yujie Men
Journal:  Environ Sci Technol Lett       Date:  2021-07-26

3.  Uptake of polybrominated diphenyl ethers by carrot and lettuce crops grown in compost-amended soils.

Authors:  E Bizkarguenaga; A Iparraguirre; E Oliva; J B Quintana; R Rodil; L A Fernández; O Zuloaga; A Prieto
Journal:  Environ Sci Pollut Res Int       Date:  2015-10-26       Impact factor: 4.223

4.  An investigation into per- and polyfluoroalkyl substances (PFAS) in nineteen Australian wastewater treatment plants (WWTPs).

Authors:  Timothy L Coggan; Damien Moodie; Adam Kolobaric; Drew Szabo; Jeff Shimeta; Nicholas D Crosbie; Elliot Lee; Milena Fernandes; Bradley O Clarke
Journal:  Heliyon       Date:  2019-08-23

5.  Microbial Defluorination of Unsaturated Per- and Polyfluorinated Carboxylic Acids under Anaerobic and Aerobic Conditions: A Structure Specificity Study.

Authors:  Yaochun Yu; Shun Che; Changxu Ren; Bosen Jin; Zhenyu Tian; Jinyong Liu; Yujie Men
Journal:  Environ Sci Technol       Date:  2022-04-04       Impact factor: 11.357

Review 6.  Remediation of poly- and perfluoroalkyl substances (PFAS) contaminated soils - To mobilize or to immobilize or to degrade?

Authors:  Nanthi Bolan; Binoy Sarkar; Yubo Yan; Qiao Li; Hasintha Wijesekara; Kurunthachalam Kannan; Daniel C W Tsang; Marina Schauerte; Julian Bosch; Hendrik Noll; Yong Sik Ok; Kirk Scheckel; Jurate Kumpiene; Kapish Gobindlal; Melanie Kah; Jonathan Sperry; M B Kirkham; Hailong Wang; Yiu Fai Tsang; Deyi Hou; Jörg Rinklebe
Journal:  J Hazard Mater       Date:  2020-09-09       Impact factor: 10.588

  6 in total

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