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The Effect of Perfluorooctane Sulfonate, Exposure Time, and Chemical Mixtures on Methanogenic Community Structure and Function

机译:全氟辛烷磺酸盐,暴露时间和化学混合物对产甲烷菌群落结构和功能的影响

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A plethora of organic micropollutant mixtures are found in untreated municipal wastewater. Anaerobic digesters receive large loadings of hydrophobic micropollutants that sorb to wastewater biosolids. Despite micropollutants being pervasive as mixtures, little research is available to explain the impact that mixtures of compounds, as well as exposure time, have on microbial communities in anaerobic digesters. Perfluorooctane sulfonate (PFOS) was added to anaerobic enrichment cultures in both short-term (14 days) and long-term (140 days) studies to determine the impact of exposure time. Additionally, triclosan was added during the experiments to investigate the impact of mixtures on community structure and function. PFOS did not alter methane production in short-term studies, but in long-term studies, methane production increased, consistent with our hypothesis that PFOS may act as a metabolic uncoupler. The impact of triclosan on methane production was exacerbated when PFOS was already present in the anaerobic enrichment cultures. Triclosan also had greater impacts on microbial community structures in the bottles that had been exposed to PFOS long-term. These results demonstrate that both chemical mixtures and exposure time are important parameters to address when trying to define the impacts of micropollutants on anaerobic microbial communities.
机译:在未经处理的城市废水中发现了过多的有机微污染物混合物。厌氧消化池会吸收大量的疏水性微污染物,这些污染物会吸附到废水中的生物固体中。尽管微生物污染物以混合物的形式普遍存在,但很少有研究来解释化合物混合物以及暴露时间对厌氧消化池中微生物群落的影响。在短期(14天)和长期(140天)研究中,将全氟辛烷磺酸盐(PFOS)添加到厌氧浓缩培养物中,以确定暴露时间的影响。此外,在实验过程中添加了三氯生,以研究混合物对群落结构和功能的影响。在短期研究中,全氟辛烷磺酸不会改变甲烷的产生,但在长期研究中,甲烷的产生会增加,这与我们关于全氟辛烷磺酸可能充当代谢解偶联剂的假设相一致。当厌氧浓缩培养物中已经存在PFOS时,三氯生对甲烷生产的影响会加剧。三氯生还对长期暴露于PFOS的瓶子中的微生物群落结构有更大的影响。这些结果表明,当试图定义微污染物对厌氧微生物群落的影响时,化学混合物和暴露时间都是要解决的重要参数。

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