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Effect of ciprofloxacin antibiotic on the partial-nitritation process and bacterial community structure of a submerged biofilter

机译:环丙沙星抗生素对淹没式生物滤池部分硝化过程和细菌群落结构的影响

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摘要

A partial-nitritation bench-scale submerged biofilter was used for the treatment of synthetic wastewater containing a high concentration of ammonium in order to study the influence of the antibiotic ciprofloxacin on the partial-nitritation process and biodiversity of the bacterial community structure. The influence of ciprofloxacin was evaluated in four partial-nitritation bioreactors working in parallel, which received sterile synthetic wastewater amended with 350 ng/L of ciprofloxacin (Experiment 1), synthetic wastewater without ciprofloxacin (Experiment 2), synthetic wastewater amended with 100 ng/L of ciprofloxacin (Experiment 3) and synthetic wastewater amended with 350 ng/L of ciprofloxacin (Experiment 4). The concentration of 100 ng/L of antibiotics demonstrated that the partial-nitritation process, microbial biomass and bacterial structure generated by tag-pyrosequencing adapted progressively to the conditions in the bioreactor. However, high concentrations of ciprofloxacin (350 ng/L) induced a decay of the partial-nitritation process, while the total microbial biomass was increased. Within the same experiment, the bacterial community experienced sequential shifts with a clear reduction of the ammonium oxidation bacteria (AOB) and an evident increase of Commamonas sp., which have been previously reported to be ciprofloxacin-resistant. Our study suggests the need for careful monitoring of the concentration of antibiotics such as ciprofloxacin in partial-nitritation bioreactors, in order to choose and maintain the most appropriate conditions for the proper operation of the system.
机译:为了研究抗生素环丙沙星对部分硝化过程和细菌群落结构的生物多样性的影响,使用了部分硝化的台式潜水式生物滤池来处理含高浓度铵的合成废水。在四个并行工作的部分硝化生物反应器中评估了环丙沙星的影响,这些反应器分别接受了无菌合成废水和350 ng / L环丙沙星的修正(实验1),不含环丙沙星的合成废水(实验2),合成废水被100 ng / L修正的合成废水。 L环丙沙星(实验3)和合成废水用350 ng / L环丙沙星(实验4)修正。浓度为100 ng / L的抗生素表明,通过标签焦磷酸测序产生的部分硝化过程,微生物生物量和细菌结构逐渐适应了生物反应器的条件。但是,高浓度的环丙沙星(350 ng / L)引起部分硝化过程的衰减,而总微生物量却增加了。在同一实验中,细菌群落经历了连续变化,铵氧化细菌(AOB)明显减少,而Commamonas sp。明显增加,这先前已被报道对环丙沙星耐药。我们的研究表明,需要仔细监测部分硝化生物反应器中的抗生素(例如环丙沙星)的浓度,以便为系统的正常运行选择和维持最合适的条件。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|276-287|共12页
  • 作者单位

    Department of Civil Engineering, University of Granada, Campus de Fuentenueva, s, 18071 Granada, Spain,Department of Civil Engineering, ETS Ingenieros de Caminos Canales y Puertos, University of Granada, Spain;

    Institute of Water Research, University of Granada, C/Ramon y Cajal, 4, 18071 Granada, Spain;

    Institute of Water Research, University of Granada, C/Ramon y Cajal, 4, 18071 Granada, Spain;

    Department of Civil Engineering, University of Granada, Campus de Fuentenueva, s, 18071 Granada, Spain;

    Department of Civil Engineering, University of Granada, Campus de Fuentenueva, s, 18071 Granada, Spain;

    Department of Civil Engineering, University of Granada, Campus de Fuentenueva, s, 18071 Granada, Spain;

    Institute of Water Research, University of Granada, C/Ramon y Cajal, 4, 18071 Granada, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antibiotics; Wastewater; Fluoroquinolone; Ciprofloxacin; Partial-nitritation; Pyrosequencing;

    机译:抗生素;废水;氟喹诺酮;环丙沙星;部分硝化;焦磷酸测序;

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