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阳离子桥接相互作用对土壤中全氟烷酸吸附的影响。

Implication of cation-bridging interaction contribution to sorption of perfluoroalkyl carboxylic acids by soils.

机构信息

Department of Plant, Soil and Microbial Sciences, Michigan State University, East Lansing, MI, 48824, USA; Jiangsu Key Laboratory for Food Quality and Safety, State Key Laboratory Cultivation Base of Ministry of Science and Technology, Jiangsu Academy of Agricultural Sciences, 50 Zhongling Street, Nanjing, 210014, China.

Department of Plant, Soil and Microbial Sciences, Michigan State University, East Lansing, MI, 48824, USA.

出版信息

Chemosphere. 2022 Mar;290:133224. doi: 10.1016/j.chemosphere.2021.133224. Epub 2021 Dec 9.

Abstract

Sorption of four perfluoroalkyl carboxylic acids (PFCAs) including perfluoropentanoic acid, perfluoroheptanoic acid, perfluorodecanoic acid, and perfluorododecanoic acid by three soils with cation exchange sites occupied by K, Ca, or Fe was measured using the batch equilibration method. We hypothesize that partitioning in soil organic matters (SOM) is the primarily operative mechanism for PFCA sorption by K-soils, and sorption by Ca- or Fe-soils could be enhanced via cation-bridging interaction. The measured sorption isotherms for all four PFCAs by soils were linear within the aqueous concentration between 0 and 60 μg/L, and the distribution coefficients ranged between 14.8 and 173 L/kg. Long-chain PFCAs manifested greater sorption by the soils with higher SOM content. Compared to sorption by K-soils, sorption of PFCAs by Ca- and Fe-soils increased by 19.9-90.2% and 38.5-219%, respectively. The relative contributions of cation-bridging interaction to the overall PFCA sorption were estimated to be 16.6-48.7% for Ca-soils and 27.8-67.7% for Fe-soils. These results demonstrate that multivalent exchangeable cations could play an important role, yet previously ignored, in controlling sorption and transport of PFCAs in soils.

摘要

采用批量平衡法测定了具有被 K、Ca 或 Fe 占据的阳离子交换位点的 3 种土壤对 4 种全氟羧酸(PFCAs)(包括全氟戊酸、全氟庚酸、全氟癸酸和全氟十二酸)的吸附作用。我们假设,在 K 土壤中,PFCA 的吸附主要通过土壤有机质(SOM)的分配作用来实现,而 Ca 或 Fe 土壤的吸附作用可以通过阳离子桥接相互作用来增强。在所研究的 4 种 PFCAs 的土壤吸附等温线中,所有 PFCAs 的吸附在 0-60μg/L 的水相浓度范围内均呈线性,分配系数在 14.8-173L/kg 之间。长链 PFCAs 在具有较高 SOM 含量的土壤中表现出更大的吸附性。与 K 土壤的吸附相比,Ca 和 Fe 土壤对 PFCAs 的吸附分别增加了 19.9-90.2%和 38.5-219%。对于 Ca 土壤,阳离子桥接相互作用对 PFCA 整体吸附的相对贡献估计为 16.6-48.7%,对于 Fe 土壤,阳离子桥接相互作用对 PFCA 整体吸附的相对贡献估计为 27.8-67.7%。这些结果表明,多价可交换阳离子可能在控制 PFCAs 在土壤中的吸附和迁移方面发挥着重要作用,但以前却被忽视了。

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