Zhang Yi, Thomas Amanda, Apul Onur, Venkatesan Arjun K
New York State Center for Clean Water Technology, Stony Brook University, Stony Brook, NY 11794, USA.
Department of Civil and Environmental Engineering, University of Maine, Orono, ME 04469, USA.
J Hazard Mater. 2023 Oct 15;460:132378. doi: 10.1016/j.jhazmat.2023.132378. Epub 2023 Aug 23.
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 K 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.
我们评估了长链和短链全氟烷基物质(PFAS)之间的竞争吸附以及共存离子的影响,以了解导致短链PFAS在颗粒活性炭(GAC)过滤器中早期穿透的机制。在间歇系统中使用GAC(Filtrasorb 400)研究了代表不同官能团的三对短链和长链PFAS。在双溶质系统中,与它们的单溶质吸附容量(0.22 - 0.31 mmol/g)相比,长链PFAS的存在使短链PFAS的吸附降低了30 - 50%。与在双溶质系统中观察到的部分降低相反,向预先用短链PFAS平衡的GAC中添加长链PFAS会使所有短链PFAS从GAC中完全解吸。这表明在没有竞争的情况下,GAC上的最外层吸附位点优先被短链PFAS占据,但容易被长链PFAS取代。无机/有机离子的存在抑制了短链PFAS的吸附(高达60%),但对长链PFAS几乎没有影响,抑制趋势与K值呈负相关。研究结果表明,长链PFAS对短链PFAS的取代和电荷中和是导致短链PFAS在GAC系统中早期穿透的重要机制。