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The impact of manganese oxide formation on biofilm development in an integrated fixed-film activated sludge system.

机译:集成的固定膜活性污泥系统中氧化锰的形成对生物膜形成的影响。

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摘要

During a visit to the Dry Creek Water Reclamation Facility in Cheyenne, Wyoming in 2011, distinct differences were noted in the color of the biofilm growing on the plastic media in adjacent parts of the Integrated Fixed-Film Activated Sludge (IFAS) units. On the influent side, the IFAS media had a typical grey/brown-colored biofilm; on the effluent side, the biofilm was notably black in color. Samples of media from both IFAS units were obtained and examined by a Field Emission Scanning Electron Microscope equipped with an electron dispersive spectrometer (FESEM-EDS). The "black biofilm" on the effluent side of the basins was found to contain Mn(IV) oxides. The main function of the IFAS process is BOD removal and microbial oxidation of ammonia; the media in the IFAS units are added to increase the surface area for microorganisms to colonize and so improve treatment efficiency. Although Mn is not a regulated constituent in wastewater effluents, if the Mn(IV) coatings on the media reduce the biofilm coverage or exert toxic effects on microorganisms in the biofilm, they may ultimately impact the treatment efficiency of the IFAS process. The Dry Creek facility is currently operating at about 60% of its design capacity. As the population of Cheyenne grows, however, and the IFAS units will need to run at full capacity, the impact of manganese oxide formation on the IFAS media may be problematic. The primary objective of this research was to determine what role Mn(IV) oxide deposition on IFAS media might play in biofilm formation.
机译:在2011年访问了怀俄明州夏安的Dry Creek水回收厂时,在固定固定式活性污泥(IFAS)单元相邻部分的塑料介质上生长的生物膜的颜色明显不同。在进水方面,IFAS介质具有典型的灰色/棕色生物膜。在废水侧,生物膜的颜色明显为黑色。从两个IFAS单元获得了介质样品,并通过配备有电子色散谱仪(FESEM-EDS)的场发射扫描电子显微镜进行了检查。水池出水侧的“黑色生物膜”被发现含有Mn(IV)氧化物。 IFAS工艺的主要功能是BOD去除和氨的微生物氧化。加入IFAS单元中的培养基以增加微生物定殖的表面积,从而提高处理效率。尽管Mn不是废水中的受控成分,但如果介质上的Mn(IV)涂层降低了生物膜的覆盖率或对生物膜中的微生物产生了毒性作用,则它们最终可能会影响IFAS工艺的处理效率。 Dry Creek工厂目前的产能约为其设计产能的60%。但是,随着夏安人口的增长,并且IFAS装置需要满负荷运行,锰氧化物形成对IFAS介质的影响可能会成问题。这项研究的主要目的是确定IFAS介质上的Mn(IV)氧化物沉积在生物膜形成中可能起什么作用。

著录项

  • 作者

    Jiang, Fanyang.;

  • 作者单位

    University of Wyoming.;

  • 授予单位 University of Wyoming.;
  • 学科 Engineering Civil.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2013
  • 页码 82 p.
  • 总页数 82
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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