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In situ decay of polyfluorinated benzoic acids under anaerobic conditions

机译:厌氧条件下多氟苯甲酸的原位衰减

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Polyfluorinated benzoic acids (PBAs) can be used as non-reactive tracers to characterize reactive mass transport mechanisms in groundwater. The use of PBAs as non-reactive tracers assumes that their reactivities are negligible. If this assumption is not valid, PBAs may not be appropriate to use as non-reactive tracers. In this study, the reactivity of two PBAs, 2,6-difluorobenzoic acid (2,6-DFBA) and pentafluorobenzoic acid (PFBA), was tested in situ. A series of two single-well push-pull tests were conducted in two hydrogeologically similar, yet spatially distinct, groundwater monitoring wells. Bromide, 2,6-DFBA, and PFBA were added to the injection fluid and periodically measured in the extraction fluid along with chloride, nitrate, sulfate, and fluoride. Linear regression of the dilution-adjusted breakthrough curves of both PBAs indicated zero-order decay accompanied by nitrate and subsequent sulfate removal. The dilution-adjusted breakthrough curves of chloride, a non-reactive halide similar to bromide, showed no evidence of reactivity. These results strongly suggested that biodegradation of both PBAs occurred under anaerobic conditions. The results of this study implied that PBAs may not be appropriate to use as non-reactive tracers in certain hydrogeologic settings, presumably those where they can serve as carbon and/or electron donors to stimulate microbial activity. Future studies would benefit from using ring-C-14-labeled PBAs to determine the fate of carbon combined with microbial analyses to characterize the PBA-degrading members of the microbial community.
机译:多氟化苯甲酸(PBA)可用作非反应性示踪剂,以表征地下水中的反应性物质传输机制。使用PBA作为非反应性示踪剂时,假设其反应性可忽略不计。如果此假设无效,则PBA可能不适合用作非反应性示踪剂。在这项研究中,对两种PBA(2,6-二氟苯甲酸(2,6-DFBA)和五氟苯甲酸(PFBA))的反应性进行了现场测试。在两个水文地质相似但空间上不同的地下水监测井中进行了一系列的两个单井推挽试验。将溴化物,2,6-DFBA和PFBA添加到注入液中,并与氯化物,硝酸盐,硫酸盐和氟化物一起在萃取液中定期进行测量。两种PBA的稀释度调整后的突破曲线的线性回归表明,零级衰减伴随着硝酸盐的去除和随后硫酸盐的去除。氯化物(类似于溴化物的非反应性卤化物)的稀释度调整后的穿透曲线没有反应性的证据。这些结果强烈表明,两种PBA都在厌氧条件下发生了生物降解。这项研究的结果表明,PBA在某些水文地质环境中可能不适合用作非反应性示踪剂,大概是那些可以充当碳和/或电子供体以刺激微生物活动的示踪剂。未来的研究将受益于使用环C-14标记的PBA来确定碳的命运,并结合微生物分析来表征微生物群落中PBA降解成员。

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