Licul-Kucera Viktória, van Wezel Annemarie P, Arp Hans Peter H, Ter Laak Thomas L
Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.
Norwegian Geotechnical Institute, P.O. Box 3930, Ullevål Stadion, N-0806 Oslo, Norway.
Environ Sci Technol. 2025 Aug 12;59(31):16513-16520. doi: 10.1021/acs.est.4c11447. Epub 2025 Jul 28.
The temperature-dependent air-water partitioning behavior of a novel class of perfluoroalkyl and polyfluoroalkyl substances (PFAS) was assessed both experimentally and via prediction. These PFAS contain ether or thioether linkages and are transformation products of an alternative PFAS surfactant. A modified version of the static headspace method with variable headspace/solution ratios was used to determine the dimensionless air/water partition coefficients () over a wide range of temperatures (25-80 °C). The samples were analyzed through the aqueous phase instead of the headspace because of their relatively low volatility. The obtained log values of the tested chemicals ranged from -2.6 to -1.0 at 25 °C. No differences in were observed between ether and thioether congeners with the same perfluorinated carbon chain length. Increasing the length of the perfluorinated carbon chain from CF- to CF- increased by about 1.5 log units. The obtained of a well-studied fluorotelomer alcohol, 4:2 FTOH, matched those of previous studies, indicating the appropriateness of the method used. The temperature dependence of , as quantified by the molar internal energy change of air-water partitioning, Δ, ranged from 20 to 37 kJ/mol and was not substantially influenced by the structure of the chemicals. Among five tools to predict air-water partitioning, the quantum chemistry-based COSMO ensured the most reliable and accurate prediction as compared to the experimental results.
通过实验和预测评估了一类新型全氟烷基和多氟烷基物质(PFAS)的温度依赖性气-水分配行为。这些PFAS含有醚键或硫醚键,是一种替代PFAS表面活性剂的转化产物。采用具有可变顶空/溶液比的静态顶空法的改进版本,在较宽温度范围(25-80°C)内测定无量纲气/水分配系数()。由于样品挥发性相对较低,通过水相而非顶空对其进行分析。在25°C时,测试化学品的log值范围为-2.6至-1.0。具有相同全氟碳链长度的醚类和硫醚类同系物之间未观察到差异。将全氟碳链长度从CF-增加到CF-,增加了约1.5个对数单位。一种经过充分研究的氟调聚物醇4:2 FTOH的测定结果与先前研究结果相符,表明所用方法的适用性。用气-水分配的摩尔内能变化Δ量化的温度依赖性,范围为20至37 kJ/mol,且基本上不受化学品结构的影响。在预测气-水分配的五种工具中,与实验结果相比,基于量子化学的COSMO能确保最可靠、准确的预测。