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矿物-有机相互作用在 AFFF 污染土壤中持久性有机污染物保留中的作用。

Role of Mineral-Organic Interactions in PFAS Retention by AFFF-Impacted Soil.

机构信息

Department of Crop and Soil Science, Oregon State University, Corvallis, Oregon 97331, United States.

Department Civil and Environmental Engineering, Colorado School of Mines, Golden, Colorado, 80401, United States.

出版信息

Environ Sci Technol. 2023 Apr 4;57(13):5231-5242. doi: 10.1021/acs.est.2c08806. Epub 2023 Mar 22.

Abstract

A comprehensive, generalized approach to predict the retention of per- and polyfluoroalkyl substances (PFAS) from aqueous film-forming foam (AFFF) by a soil matrix as a function of PFAS molecular and soil physiochemical properties was developed. An AFFF with 34 major PFAS (12 anions and 22 zwitterions) was added to uncontaminated soil in one-dimensional saturated column experiments and PFAS mass retained was measured. PFAS mass retention was described using an exhaustive statistical approach to generate a poly-parameter quantitative structure-property relationship (ppQSPR). The relevant predictive properties were PFAS molar mass, mass fluorine, number of nitrogens in the PFAS molecule, poorly crystalline Fe oxides, organic carbon, and specific (BET-N) surface area. The retention of anionic PFAS was nearly independent of soil properties and largely a function of molecular hydrophobicity, with the size of the fluorinated side chain as the main predictor. Retention of nitrogen-containing zwitterionic PFAS was related to poorly crystalline metal oxides and organic carbon content. Knowledge of the extent to which a suite of PFAS may respond to variations in soil matrix properties, as developed here, paves the way for the development of reactive transport algorithms with the ability to capture PFAS dynamics in source zones over extended time frames.

摘要

开发了一种综合的、广义的方法,用于预测作为土壤理化性质函数的水成膜泡沫(AFFF)中持久性和多氟烷基物质(PFAS)在土壤基质中的保留情况,AFFF 中含有 34 种主要的 PFAS(12 种阴离子和 22 种两性离子)。在一维饱和柱实验中,将 AFFF 添加到未受污染的土壤中,并测量 PFAS 的质量保留量。使用详尽的统计方法描述 PFAS 质量保留量,以生成多参数定量结构-性质关系(ppQSPR)。相关的预测性质包括 PFAS 的摩尔质量、质量氟、PFAS 分子中的氮原子数、低结晶度的铁氧化物、有机碳和比表面积(BET-N)。阴离子 PFAS 的保留几乎与土壤性质无关,主要取决于分子疏水性,其中氟代侧链的大小是主要预测因素。含氮两性离子 PFAS 的保留与低结晶度金属氧化物和有机碳含量有关。了解一系列 PFAS 可能在多大程度上响应土壤基质性质的变化,如这里所开发的那样,为开发具有在扩展时间范围内捕获源区中 PFAS 动态能力的反应性迁移算法铺平了道路。

相似文献

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Enhanced Extraction of AFFF-Associated PFASs from Source Zone Soils.增强源区土壤中 AFFF 相关 PFASs 的提取。
Environ Sci Technol. 2020 Apr 21;54(8):4952-4962. doi: 10.1021/acs.est.0c00792. Epub 2020 Apr 3.

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