Environ Sci Technol. 2015 Jan 20;49(2):915-23. doi: 10.1021/es504347u.
Fluorotelomer-based polymers (FTPs) are the primary product of the fluorotelomer industry. Here we report on a 376-day study of the degradability of two commercial acrylate-linked FTPs in four saturated soils and in water. Using an exhaustive serial extraction, we report GC/MS and LC/MS/MS results for 50 species including fluorotelomer alcohols and acids, and perfluorocarboxylates. Modeling of seven sampling rounds, each consisting of ≥5 replicate microcosm treatments, for one commercial FTP in one soil yielded half-life estimates of 65–112 years and, when the other commercial FTP and soils were evaluated, the estimated half-lives ranged from 33 to 112 years. Experimental controls, consisting of commercial FTP in water, degraded roughly at the same rate as in soil. A follow-up experiment, with commercial FTP in pH 10 water, degraded roughly 10-fold faster than the circum-neutral control suggesting that commercial FTPs can undergo OH–-mediated hydrolysis. 8:2Fluorotelomer alcohol generated from FTP degradation in soil was more stable than without FTP present suggesting a clathrate guest–host association with the FTP. To our knowledge, these are the only degradability-test results for commercial FTPs that have been generated using exhaustive extraction procedures. They unambiguously show that commercial FTPs, the primary product of the fluorotelomer industry, are a source of fluorotelomer and perfluorinated compounds to the environment.
含氟聚合物(FTPs)是氟调聚物工业的主要产物。在这里,我们报告了一项为期 376 天的研究,研究了两种商业性丙烯酸酯连接的 FTP 在四种饱和土壤中和水中的可降解性。我们采用详尽的连续提取方法,报告了包括氟调聚物醇和酸以及全氟羧酸酯在内的 50 种物质的 GC/MS 和 LC/MS/MS 结果。对一个土壤中的一种商业 FTP 进行了七轮采样的建模,每轮采样由≥5 个重复微宇宙处理组成,得出了半衰期估计值为 65-112 年。当评估另一种商业 FTP 和土壤时,估计的半衰期范围为 33-112 年。以商业 FTP 为实验对照的水,其降解速度与土壤中的降解速度大致相同。一项后续实验以 pH 值为 10 的水中的商业 FTP 进行,其降解速度比中性对照快约 10 倍,这表明商业 FTP 可以进行 OH–介导的水解。从土壤中 FTP 降解生成的 8:2 氟调聚物醇比没有 FTP 存在时更稳定,这表明其与 FTP 之间存在笼形客体-主体相互作用。据我们所知,这些是使用详尽提取程序为商业性 FTP 生成的唯一可降解性测试结果。它们明确表明,商业性 FTP 是氟调聚物工业的主要产物,是环境中氟调聚物和全氟化合物的来源。