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Global emission inventories for C_4-C_(14) perfluoroalkyl carboxylic acid (PFCA) homologues from 1951 to 2030, part Ⅱ: The remaining pieces of the puzzle

机译:1951年至2030年C_4-C_(14)全氟烷基羧酸(PFCA)同系物的全球排放清单,第二部分:剩下的难题

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We identify eleven emission sources of perfluoroalkyl carboxylic acids (PFCAs) that have not been discussed in the past. These sources can be divided into three groups: [ⅰ] PFCAs released as ingredients or impurities, e.g., historical and current use of perfluorobutanoic acid (PFBA), perfluorohexanoic acid (PFHxA) and their derivatives; [ⅱ] PFCAs formed as degradation products, e.g., atmospheric degradation of some hydrofluorocarbons (HFCs) and hydrofluoroethers (HFEs); and [ⅲ] sources from which PFCAs are released as both impurities and degradation products, e.g., historical and current use of perfluorobutane sulfonyl fluoride (PBSF)- and perfluorohexane sulfo-nyl fluoride (PHxSF)-based products. Available information confirms that these sources were active in the past or are still active today, but due to a lack of information, it is not yet possible to quantify emissions from these sources. However, our review of the available information on these sources shows that some of the sources may have been significant in the past (e.g., the historical use of PFBA-, PFHxA-, PBSF- and PHxSF-based products), whereas others can be significant in the long-term (e.g., (bio)degradation of various side-chain fluorinated polymers where PFCA precursors are chemically bound to the backbone). In addition, we summarize critical knowledge and data gaps regarding these sources as a basis for future research.
机译:我们确定了过去没有讨论过的11种全氟烷基羧酸(PFCA)排放源。这些来源可分为三类:[ⅰ]作为成分或杂质释放的PFCA,例如全氟丁酸(PFBA),全氟己酸(PFHxA)及其衍生物的历史和当前使用; [ⅱ]全氟辛烷磺酸形成降解产物,例如某些氢氟碳化合物(HFC)和氢氟醚(HFE)的大气降解; PFCA既作为杂质又作为降解产物释放出来的来源,例如基于全氟丁烷磺酰氟(PBSF)和全氟己烷磺酰氟(PHxSF)的产品的历史和当前使用。现有信息确认这些来源过去是活跃的,或者今天仍然活跃,但是由于缺乏信息,尚无法量化这些来源的排放。但是,我们对这些来源的可用信息的回顾表明,某些来源在过去可能很重要(例如,基于PFBA,PFHxA,PBSF和PHxSF的产品的历史使用),而其他来源可能是重要的。在长期(例如,PFCA前体化学键合到主链上的各种侧链氟化聚合物的(生物)降解)方面具有重要意义。此外,我们总结了有关这些资源的关键知识和数据缺口,以作为未来研究的基础。

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