Sorption/desorption and degradation of long- and short-chain PFAS by anion exchange resin and UV/sulfite system

吸附 解吸 化学 亚硫酸盐 离子交换 降级(电信) 离子交换树脂 环境化学 离子 无机化学 色谱法 核化学 吸附 有机化学 计算机科学 电信
作者
Zhongfei Ren,Ruichi Zhang,Xing Xu,Yanwei Li,Ningru Wang,Tiina Leiviskä
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:361: 124847-124847 被引量:15
标识
DOI:10.1016/j.envpol.2024.124847
摘要

A combined sorption/desorption and UV/sulfite degradation process was investigated for achieving efficient elimination of PFAS from water. Two gel-type resins, Purolite A532E and A600, and one macroporous resin, Purolite A860, were firstly tested for the sorption of individual PFPrA, PFHxA, PFOA, PFOS, and GenX at different concentrations. Sorption data and density functional theory (DFT) calculations revealed that electrostatic interactions predominated for short-chain PFAS sorption and hydrophobic interactions played a more significant role for long-chain PFAS than for short-chain PFAS. A600 and A860 were selected for desorption tests with 0.025% NaOH, 5% NaCl, and 5% NH4Cl solution with or without 20% ethanol (EtOH) due to their high sorption capacity for all target PFAS. The mixture of 5% NH4Cl and 20% EtOH as the desorption solution typically showed the highest desorption efficiency. PFOS was the most resistant for desorption but its desorption could be enhanced by stronger mixing conditions (in 5% NaCl + 20% EtOH). Direct degradation of studied PFAS in the desorption solution (0.025% NaOH, 5% NaCl, and 5% NH4Cl) by UV/sulfite achieved 97.6-100% degradation and 46.6-86.1% defluorination. EtOH hindered degradation and thus should be separated from the water before UV/sulfite degradation.
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