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Modeling the hydrolysis of perfluorinated compounds containing carboxylic and phosphoric acid ester functions, alkyl iodides, and sulfonamide groups

机译:模拟包含羧酸酯和磷酸酯官能团,烷基碘化物和磺酰胺基团的全氟化化合物的水解

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摘要

Temperature dependent rate constants were estimated for the acid- and base-catalyzed and neutral hydrolysis reactions of perfluorinated telomer acrylates (FTAcrs) and phosphate esters (FTPEs), and the SN1 and SN2 hydrolysis reactions of fluorotelomer iodides (FTIs). Under some environmental conditions, hydrolysis of monomeric FTAcrs could be rapid (half-lives of several years in marine systems and as low as several days in some landfills) and represent a dominant portion of their overall degradation. Abiotic hydrolysis of monomeric FTAcrs may be a significant contributor to current environmental loadings of fluorotelomer alcohols (FTOHs) and perfluoroalkyl carboxylic acids (PFCAs). Polymeric FTAcrs are expected to be hydrolyzed more slowly, with estimated half-lives in soil and natural waters ranging between several centuries to several millenia absent additional surface area limitations on reactivity. Poor agreement was found between the limited experimental data on FTPE hydrolysis and computational estimates, requiring more detailed experimental data before any further modeling can occur on these compounds or their perfluoroalkyl sulfonamidoethanol phosphate ester (PFSamPE) analogs. FTIs are expected to have hydrolytic half-lives of about 130 days in most natural waters, suggesting they may be contributing to substantial FTOH and PFCA inputs in aquatic systems. Perfluoroalkyl sulfonamides (PFSams) appear unlikely to undergo abiotic hydrolysis at the S-N, C-S, or N-C linkages under environmentally relevant conditions, although potentially facile S-N hydrolysis via intramolecular catalysis by ethanol and acetic acid amide substituents warrants further investigation.
机译:估计了全氟端粒丙烯酸酯(FTAcrs)和磷酸酯(FTPE)的酸和碱催化和中性水解反应以及氟代端碘化物(FTI)的SN1和SN2水解反应的温度依赖性速率常数。在某些环境条件下,单体FTAcrs的水解可能很快(在海洋系统中半衰期为几年,而在某些垃圾填埋场中则低至几天),并代表了它们整体降解的主要部分。单体FTAcr的非生物水解可能是当前环境对氟调聚物醇(FTOH)和全氟烷基羧酸(PFCA)的重要贡献。预计聚合物FTAcrs的水解速度会更慢,估计其在土壤和天然水中的半衰期在几个世纪至几千年之间,而对反应性没有额外的表面积限制。在FTPE水解的有限实验数据和计算估计值之间发现一致性差,需要更详细的实验数据,然后才能对这些化合物或其全氟烷基磺酰胺基乙醇磷酸酯(PFSamPE)类似物进行进一步建模。在大多数天然水中,FTIs的水解半衰期预计约为130天,这表明它们可能为水生系统中大量的FTOH和PFCA投入做出了贡献。全氟烷基磺酰胺(PFSams)似乎不太可能在与环境相关的条件下在S-N,C-S或N-C键上进行非生物水解,尽管乙醇和乙酸酰胺取代基通过分子内催化的潜在S-N水解很可能需要进一步研究。

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    Sierra Rayne; Kaya Forest;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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