Abaie Elham, Kumar Manish, Kumar Naveen, Sun Yilang, Guelfo Jennifer, Shen Yuexiao, Reible Danny
Civil, Environmental, and Construction Engineering Department, Texas Tech University, Lubbock, TX 79409, USA.
Chemical Engineering Department, Texas Tech University, Lubbock, TX 79409, USA.
Toxics. 2024 Mar 31;12(4):264. doi: 10.3390/toxics12040264.
The extensive use of per- and polyfluoroalkyl substances (PFASs) in industrial consumer products has led to groundwater contamination, raising concerns for human health and the environment. These persistent chemicals exist in different forms with varying properties, which makes their removal challenging. In this study, we assessed the effectiveness of three different β-cyclodextrin (β-CD) adsorbents at removing a mixture of PFASs, including anionic, neutral, and zwitterionic compounds, at neutral pH. We calculated linear partition coefficient (K) values to quantify the adsorption affinity of each PFAS. β-CD polymers crosslinked with hexamethylene diisocyanate (β-CD-HDI) and epichlorohydrin (β-CD-EPI) displayed some adsorption of PFASs. Benzyl chloride β-CD (β-CD-Cl), an adsorbent that had not been previously reported, was also synthesized and tested for PFAS adsorption. β-CD-Cl exhibited higher PFAS adsorption than β-CD-HDI and β-CD-EPI, with log K values ranging from 1.9 L·g to 3.3 L·g. β-CD-Cl displayed no affinity for zwitterionic compounds, as opposed to β-CD-HDI and β-CD-EPI, which removed N-dimethyl ammonio propyl perfluorohexane sulfonamide (AmPr-FHxSA). A comparison between K values and the log K of PFAS confirmed the significant role of hydrophobic interactions in thee adsorption mechanism. This effect was stronger in β-CD-Cl, compared to β-CD-HDI and β-CD-EPI. While no effect of PFAS charge was observed in β-CD-Cl, some influence of charge was observed in β-CD-HDI and β-CD-EPI, with less negative compounds being more adsorbed. The adsorption of PFASs by β-CD-Cl was similar in magnitude to that of other adsorbents proposed in literature. However, it offers the advantage of not containing fluorine, unlike many commonly proposed adsorbents.
全氟和多氟烷基物质(PFASs)在工业消费品中的广泛使用导致了地下水污染,引发了对人类健康和环境的担忧。这些持久性化学物质以不同形式存在,具有不同特性,这使得它们的去除具有挑战性。在本研究中,我们评估了三种不同的β-环糊精(β-CD)吸附剂在中性pH条件下去除包括阴离子、中性和两性离子化合物在内的PFASs混合物的有效性。我们计算了线性分配系数(K)值,以量化每种PFAS的吸附亲和力。与六亚甲基二异氰酸酯(β-CD-HDI)和环氧氯丙烷交联的β-CD聚合物(β-CD-EPI)对PFASs有一定吸附作用。还合成了一种此前未报道过的吸附剂苄基氯β-CD(β-CD-Cl),并测试了其对PFASs的吸附性能。β-CD-Cl对PFASs的吸附能力高于β-CD-HDI和β-CD-EPI,其log K值在1.9 L·g至3.3 L·g之间。与β-CD-HDI和β-CD-EPI不同,β-CD-Cl对两性离子化合物没有亲和力,β-CD-HDI和β-CD-EPI能去除N-二甲基氨丙基全氟己烷磺酰胺(AmPr-FHxSA)。K值与PFAS的log K之间的比较证实了疏水相互作用在吸附机制中的重要作用。与β-CD-HDI和β-CD-EPI相比,这种作用在β-CD-Cl中更强。虽然在β-CD-Cl中未观察到PFAS电荷的影响,但在β-CD-HDI和β-CD-EPI中观察到了电荷的一些影响,负电荷较少的化合物吸附更多。β-CD-Cl对PFASs的吸附量与文献中提出的其他吸附剂相似。然而,与许多常见的吸附剂不同,它的优势在于不含氟。