Coexisting ions and long-chain per- and polyfluoroalkyl substances (PFAS) inhibit the adsorption of short-chain PFAS by granular activated carbon
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作者:
Zhang, Yi
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SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USASUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
Zhang, Yi
[1
]
Thomas, Amanda
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SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USASUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
Thomas, Amanda
[1
]
Apul, Onur
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Univ Maine, Dept Civil & Environm Engn, Orono, ME 04469 USASUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
Apul, Onur
[2
]
Venkatesan, Arjun K.
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SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
New Jersey Inst Technol, Dept Civil & Environm Engn, Newark, NJ 07102 USASUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
Venkatesan, Arjun K.
[1
,3
]
机构:
[1] SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
[2] Univ Maine, Dept Civil & Environm Engn, Orono, ME 04469 USA
[3] New Jersey Inst Technol, Dept Civil & Environm Engn, Newark, NJ 07102 USA
We assessed the competitive adsorption between long-chain and short-chain PFAS and the impact of coexisting ions to understand the mechanisms leading to the early breakthrough of short-chain PFAS from granular activated carbon (GAC) filters. Three pairs of short-chain and long-chain PFAS representing different functional groups were studied using GAC (Filtrasorb 400) in batch systems. In bisolute systems, the presence of long-chain PFAS decreased the adsorption of short-chain PFAS by 30-50% compared to their single solute adsorption capacity (0.22-0.31 mmol/g). In contrast to the partial decrease observed in bisolute systems, the addition of long chain PFAS to GAC pre-equilibrated with short-chain PFAS completely desorbed all short-chain PFAS from GAC. This suggested that the outermost adsorption sites on GAC were preferentially occupied by short-chain PFAS in the absence of competition but were prone to displacement by long-chain PFAS. The presence of inorganic/ organic ions inhibited the adsorption of short-chain PFAS (up to 60%) but had little to no impact on long-chain PFAS, with the inhibitory trend inversely correlated with Kow values. Study results indicated that the displacement of short-chain PFAS by long-chain PFAS and charge neutralization are important mechanisms contributing to the early breakthrough of short-chain PFAS from GAC systems.
机构:
SUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USASUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA
Li, Duning
Lee, Cheng-Shiuan
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SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
Acad Sinica, Res Ctr Environm Changes, Taipei 115, TaiwanSUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA
Lee, Cheng-Shiuan
Zhang, Yi
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SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USASUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA
Zhang, Yi
Das, Rasel
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SUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USASUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA
Das, Rasel
Akter, Fahmida
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SUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USASUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA
Akter, Fahmida
Venkatesan, Arjun K.
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SUNY Stony Brook, New York State Ctr Clean Water Technol, Stony Brook, NY 11794 USA
SUNY Stony Brook, Sch Marine & Atmospher Sci, Stony Brook, NY 11794 USASUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA
Venkatesan, Arjun K.
Hsiao, Benjamin S.
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SUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USASUNY Stony Brook, Dept Chem, Stony Brook, NY 11790 USA