Stults John F, Choi Youn Jeong, Schaefer Charles E, Illangasekare Tissa H, Higgins Christopher P
Department of Civil and Environmental Engineering, Colorado School of Mines, Golden, Colorado 3557, United States.
CDM Smith, 110 Fieldcrest Avenue, #8, 6th Floor, Edison, New Jersey 08837, United States.
Environ Sci Technol. 2022 Jun 21;56(12):7963-7975. doi: 10.1021/acs.est.2c00819. Epub 2022 May 13.
Predicting the transport of perfluoroalkyl acids (PFAAs) in the vadose zone is critically important for PFAA site cleanup and risk mitigation. PFAAs exhibit several unusual and poorly understood transport behaviors, including partitioning to the air-water interface, which is currently the subject of debate. This study develops a novel use of quasi-saturated (residual air saturation) column experiments to estimate chemical partitioning parameters of both linear and branched perfluorooctane sulfonate (PFOS) in unsaturated soils. The ratio of linear-to-branched air-water interfacial partitioning constants for all six experiments was 1.62 ± 0.24, indicating significantly greater partitioning of linear PFOS isomers at the air-water interface. Standard breakthrough curve analysis and numerical inversion of HYDRUS models support the application of a Freundlich isotherm for PFOS air-water interfacial partitioning below a critical reference concentration (CRC). Data from this study and previously reported unsaturated column data on perfluorooctanoate (PFOA) were reevaluated to examine unsaturated systems for transport nonidealities. This reanalysis suggests both transport nonidealities and Freundlich isotherm behavior for PFOA below the CRC using drainage-based column methods, contrary to the assertions of the original authors. Finally, a combined Freundlich-Langmuir isotherm was proposed to describe PFAA air-water interfacial partitioning across the full range of relevant PFAA concentrations.
预测全氟烷基酸(PFAA)在非饱和带中的运移对于PFAA污染场地的清理和风险缓解至关重要。PFAA表现出几种不寻常且尚未完全理解的运移行为,包括在气-水界面的分配,这目前是一个有争议的话题。本研究开发了一种新的准饱和(残余空气饱和度)柱实验方法,用于估算不饱和土壤中线性和支链全氟辛烷磺酸(PFOS)的化学分配参数。在所有六个实验中,线性与支链气-水界面分配常数的比值为1.62±0.24,表明线性PFOS异构体在气-水界面的分配显著更大。HYDRUS模型的标准突破曲线分析和数值反演支持在临界参考浓度(CRC)以下,将弗伦德利希等温线应用于PFOS的气-水界面分配。对本研究的数据以及先前报道的关于全氟辛酸(PFOA)的不饱和柱数据进行了重新评估,以检查不饱和系统中的运移非理想性。这种重新分析表明,使用基于排水的柱方法,在CRC以下PFOA存在运移非理想性和弗伦德利希等温线行为,这与原作者的断言相反。最后,提出了一种组合的弗伦德利希-朗缪尔等温线,以描述在整个相关PFAA浓度范围内PFAA的气-水界面分配。