链长对C4-C10全氟羧酸在砂中传输过程中吸附的影响

IF 6.6 Q1 ENGINEERING, ENVIRONMENTAL
Ying Lyu , Baohua Wang , Mark L. Brusseau
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引用次数: 0

摘要

研究了链长对全氟羧酸(PFCAs)在石英砂中保留和转移的影响。选择短链(C4-C7: PFBA, PFPeA, PFHxA, PFHpA)和长链(C8-C10: PFOA, PFNA, PFDA) PFCAs作为代表性同源系列。在饱和条件下进行了混相位移输运实验,以表征吸附介导保留和输运的大小。采用定量结构/性能关系(QSPR)分析表征了分子大小对吸附的影响。长链PFCAs的转运比短链PFCAs表现出更大的阻滞。平衡吸附系数(Kd)的对数与碳数和摩尔体积呈双相关系,短链PFCAs的吸附量明显大于使用长链PFCAs的QSPR回归预测的吸附量。这与文献中报道的批量测量数据一致,并可能反映了不同吸附机制对短链和长链PFCAs的相对影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of chain length on the sorption of C4-C10 perfluorocarboxylic acids during transport in a sand

The impact of chain length on the retention and transport of perfluorocarboxylic acids (PFCAs) in a quartz sand was investigated. Short-chain (C4–C7: PFBA, PFPeA, PFHxA, PFHpA) and long-chain (C8–C10: PFOA, PFNA, PFDA) PFCAs were selected as a representative homologous series. Miscible-displacement transport experiments were conducted under saturated conditions to characterize the magnitudes of sorption mediating retention and transport. Quantitative-structure/property-relationship (QSPR) analysis was applied to characterize the influence of molecular size on sorption. The transport of the long-chain PFCAs exhibited greater retardation than the short-chain PFCAs. The log of the equilibrium sorption coefficient (Kd) exhibited a biphasic relationship with carbon number and molar volume, with the magnitude of measured sorption for the short-chain PFCAs significantly greater than would be predicted using the QSPR regression developed for the long-chain PFCAs. This is consistent with batch-measured data reported in the literature, and likely reflects the relative influence of different sorption mechanisms for the short-chain vs long-chain PFCAs.

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来源期刊
Journal of hazardous materials letters
Journal of hazardous materials letters Pollution, Health, Toxicology and Mutagenesis, Environmental Chemistry, Waste Management and Disposal, Environmental Engineering
CiteScore
10.30
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20 days
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