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Biotransformation of Pharmaceuticals and Personal Care Products (PPCPs) during Nitrification: The role of Ammonia Oxidizing Bacteria Versus Heterotrophic Bacteria.

机译:硝化过程中药品和个人护理产品(PPCP)的生物转化:氨氧化细菌对异养细菌的作用。

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Preliminary experiments to investigate the fate of 17α-ethinylestradiol (EE2) during nitrification were conducted. Sorption experiments were performed by incubating inactivated ammonia oxidizing bacteria and various heterotrophic cultures in the presence of ~(14)C-EE2 at 10 μg/L. Biotransformation experiments utilized LCMS and LC-ITMS analysis of supernatant collected during batch cultivation of monoculture of Nitrosomonas europaea with EE2. Results confirmed that sorption of EE2 onto heterotrophic biomass is an important mechanism that must be considered when describing the fate of EE2. During batch incubation with N. europaea, 98% of EE2 was transformed, producing a unique metabolite corresponding to a mass/charge ratio of - 386 m/z. Short term inhibition study results also suggest that inhibition of respiration in N. europaea as measured through nitrite generation rates is not significant at concentrations at or below 1 mg EE2/L.
机译:进行了研究硝化过程中17α-乙基雌二醇(EE2)的初步实验。通过在10μg/ L的〜(14)C-EE2存在下孵育灭活的氨氧化细菌和各种异养培养物来进行吸附实验。生物转化实验利用EE2分批培养硝基塞诺拉斯铕的分批培养期间收集的上清液的LCMS和LC ITMS分析。结果证实,EE2对异养生物量的吸附是在描述EE2的命运时必须考虑的重要机制。在与N.Foupaea的分批孵育期间,转化98%的EE2,产生对应于质量/电荷比为-386m / z的独特代谢物。短期抑制性研究结果还表明,通过亚硝酸盐产生速率测量的N官方抑制呼吸抑制在1mg EE2 / L的浓度下不显着。

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