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Synergy of strains that accelerate biodegradation of pyridine and quinoline

机译:加速吡啶和喹啉生物降解的菌株的协同作用

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摘要

Three bacterial strains were isolated from activated sludge acclimated to biodegrade pyridine and quinoline simultaneously. The strains were identified as Bacillus tropicus, Bacillus aquimaris, and Rhodococcus ruber. When the isolated bacteria were used for pyridine and quinoline biodegradation in separate or combined modes, R. ruber had much faster kinetics, and combining R. ruber with one or both of the Bacillus strains increased further the biodegradation kinetics. For example, the time needed for complete biodegradation of 1 mM quinoline and pyridine decreased to 20 h and 6 h, respectively, with the three strains combined, compared to 26 h and 7 h with R. ruber alone. Whereas quinoline was completely mineralized by all three strains, 10-14% of the pyridine persisted as a dead-end product, 2-hydroxypyridine (2HP). The acclimated sludge from which the three bacterial species were isolated was able to transform 2HP, and adding the bacterial strains (especially R. ruber) to the acclimated sludge accelerated the rate of 2HP removal and mineralization through a form of synergy.
机译:从活性污泥中分离出三种细菌菌株,同时将生物降解吡啶和喹啉分离。菌株被鉴定为芽孢杆菌,芽孢杆菌,芽孢杆菌和杜鹃花。当分离的细菌用于单独或组合模式中用于吡啶和喹啉生物降解时,R.Ruber具有更快的动力学,并将R.Ruber与一个或两种芽孢杆菌菌株相结合进一步增加生物降解动力学。例如,通过三种菌株分别将1mM喹啉和吡啶的完全生物降解所需的时间分别为20小时和6小时,与26小时和7小时合并。单独的R.Ruber。虽然喹啉完全通过所有三种菌株矿化,但10-14%的吡啶持续为死终产物,2-羟基吡啶(2HP)。分离出三种细菌种类的适应污泥能够转化2HP,并将细菌菌株(尤其是R.Ruber)加入到所在的污泥中,通过通过一种形式的协同措施加速2HP去除和矿化的速率。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112119.1-112119.8|共8页
  • 作者单位

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China Yangtze Delta Wetland Ecosystem National Field Scientific Observation and Research Station PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China Yangtze Delta Wetland Ecosystem National Field Scientific Observation and Research Station PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China Yangtze Delta Wetland Ecosystem National Field Scientific Observation and Research Station PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China School of Environment Tsinghua University 100084 PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China Yangtze Delta Wetland Ecosystem National Field Scientific Observation and Research Station PR China;

    Department of Environmental Engineering School of Environmental and Geographical Science Shanghai Normal University Shanghai 200234 PR China Yangtze Delta Wetland Ecosystem National Field Scientific Observation and Research Station PR China;

    Biodesign Swette Center for Environmental Biotechnology Arizona State University Tempe AZ85287-5701 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pyridine; Quinoline; Synergy; Biodegradation; Bacillus sp;

    机译:吡啶;喹啉;协同作用;生物降解;芽孢杆菌SP.;

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