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Investigation of biologically active granular activated carbon filters.

机译:生物活性颗粒活性炭过滤器的研究。

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摘要

Geosmin is naturally produced by numerous cyanobacteria and actinomycetes in surface waters. Although it is non-toxic, it causes an unpleasant taste and odor even at very low concentrations. Water utilities, therefore, often must expend great effort and funds to remove geosmin to avoid customer complaints when the compound is present in the source water. Saint Paul Regional Water Services in St. Paul, MN successfully uses granular activated carbon (GAC) filters to remove geosmin from its drinking water, but, curiously, the useful life of their full-scale GAC filters has exceeded estimates based on batch sorption isotherms and AdDesignS modeling. It has been hypothesized that geosmin-degrading microorganisms on the GAC filters degrade geosmin, thereby extending the GAC filter bed life.;In this study, the microbial communities growing in full-scale, biologically active GAC filters at Saint Paul Regional Water Services were characterized using automated ribosomal spacer analysis (ARISA) and high throughput DNA sequencing (Illumina sequencing) of 16S rRNA gene fragments. This study showed that Saint Paul Regional Water Services has highly diverse bacterial filter communities that are functionally stable throughout year. Illumina sequencing revealed that a dominant bacterial phylum on the GAC filters was Nitrospira and that pathogen levels (e.g., Enterobacteria ) were negligible.;Additionally, the effects of mediatype and inoculation on the development of a geosmin-degrading bacterial community on GAC filters was investigated using a pilot-scale column system that was fed geosmin. A geosmin-degrading biofilm developed after 40 days of being enriched with 100 ng/L of geosmin. Additionally, the geosmin-degrading organisms proved to be robust in that they were able to resume geosmin degradation after 6 weeks when geosmin was absent. The effects of GAC type and inoculation did not impact the biomass levels or geosmin removal.
机译:Geosmin是由地表水中的许多蓝细菌和放线菌自然产生的。尽管它是无毒的,但即使浓度很低也会引起令人不快的味道和气味。因此,自来水中存在该化合物时,自来水公司通常必须花费大量的精力和资金来去除土臭素,以避免客户抱怨。明尼苏达州圣保罗的圣保罗地区水务局成功地使用了颗粒状活性炭(GAC)过滤器从饮用水中去除了土臭素,但奇怪的是,其全尺寸GAC过滤器的使用寿命已经超过了基于批次吸附等温线的估计值和AdDesignS建模。据推测,GAC过滤器上降解土臭素的微生物会降解土臭素,从而延长GAC过滤床的寿命。;在这项研究中,对圣保罗地区水务局全面,具有生物活性的GAC过滤器中生长的微生物群落进行了表征。使用16S rRNA基因片段的自动核糖体间隔区分析(ARISA)和高通量DNA测序(Illumina测序)。这项研究表明,圣保罗地区自来水公司拥有高度多样化的细菌过滤器社区,这些细菌过滤器一年四季功能稳定。 Illumina测序表明,GAC过滤器上的优势细菌门是硝化螺菌,而病原体水平(例如肠杆菌)可以忽略不计;此外,研究了介质类型和接种对GAC过滤器上降解土臭素的细菌群落发育的影响。使用了中土动物饲料的中试规模的色谱柱系统。富含100 ng / L的土臭素浓缩40天后,形成了降解土臭素的生物膜。另外,证明了降解土臭素的生物很健壮,因为它们能够在缺少土臭素的6周后恢复土臭素的降解。 GAC类型和接种的影响不影响生物量水平或土臭素去除。

著录项

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2012
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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