Air Methods and Characterization Division, Center for Environmental Measurement and Modeling, United States Environmental Protection Agency, Research Triangle Park, North Carolina, United States.
Chemosphere. 2021 Jun;272:129859. doi: 10.1016/j.chemosphere.2021.129859. Epub 2021 Feb 6.
Given the extent to which per- and polyfluoroalkyl substances (PFAS) are used in commercial and industrial applications, the need to evaluate treatment options that reduce environmental emissions and human and ecological exposures of PFAS is becoming more necessary. One specific chemical class of PFAS, fluorotelomer alcohols (FTOHs), have vapor pressures such that a significant fraction is expected to be present in the gas-phase even at ambient temperatures. FTOHs are used in a variety of PFAS applications, including synthesis and material coatings. Using two complementary mass spectrometric methods, the use of calcium oxide (CaO) was examined as a low temperature and potentially low-cost thermal treatment media for removal and destruction of four gas-phase FTOHs of varying molecular weights. This was accomplished by assessing the removal/destruction efficiency of the FTOHs and the formation of fluorinated byproducts as a function of treatment temperature (200 - 800 °C) in the presence of CaO compared to thermal-only destruction. During the treatment process, there is evidence that other PFAS compounds are produced at low temperatures (200 - 600 °C) as the primary FTOH partially degrades. At temperatures above 600 °C, thermal treatment with CaO prevented the formation or removed nearly all these secondary products.
鉴于全氟和多氟烷基物质 (PFAS) 在商业和工业应用中的广泛使用,评估减少 PFAS 环境排放和人类及生态暴露的处理方法的需求变得越来越必要。PFAS 中的一个特定化学类别,氟调聚物醇(FTOHs),具有蒸汽压,即使在环境温度下,预计也会有相当一部分存在于气相中。FTOHs 用于各种 PFAS 应用,包括合成和材料涂层。使用两种互补的质谱方法,研究了氧化钙 (CaO) 作为一种低温且潜在低成本的热处理介质,用于去除和破坏四种不同分子量的气相 FTOHs。这是通过评估 FTOHs 的去除/破坏效率以及在存在 CaO 的情况下,与仅热破坏相比,处理温度(200-800°C)对氟化副产物形成的影响来实现的。在处理过程中,有证据表明,在低温(200-600°C)下,当主要的 FTOH 部分降解时,会产生其他 PFAS 化合物。在 600°C 以上的温度下,用 CaO 进行热处理可防止这些二次产物的形成或几乎完全去除。