Literature DB >> 10103249

Microbiological and geochemical characterization of fluvially deposited sulfidic mine tailings

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Abstract

The fluvial deposition of mine tailings generated from historic mining operations near Butte, Montana, has resulted in substantial surface and shallow groundwater contamination along Silver Bow Creek. Biogeochemical processes in the sediment and underlying hyporheic zone were studied in an attempt to characterize interactions consequential to heavy-metal contamination of shallow groundwater. Sediment cores were extracted and fractionated based on sediment stratification. Subsamples of each fraction were assayed for culturable heterotrophic microbiota, specific microbial guilds involved in metal redox transformations, and both aqueous- and solid-phase geochemistry. Populations of cultivable Fe(III)-reducing bacteria were most prominent in the anoxic, circumneutral pH regions associated with a ferricrete layer or in an oxic zone high in organic carbon and soluble iron. Sulfur- and iron-oxidizing bacteria were distributed in discrete zones throughout the tailings and were often recovered from sections at and below the anoxic groundwater interface. Sulfate-reducing bacteria were also widely distributed in the cores and often occurred in zones overlapping iron and sulfur oxidizers. Sulfate-reducing bacteria were consistently recovered from oxic zones that contained high concentrations of metals in the oxidizable fraction. Altogether, these results suggest a highly varied and complex microbial ecology within a very heterogeneous geochemical environment. Such physical and biological heterogeneity has often been overlooked when remediation strategies for metal contaminated environments are formulated.

Entities:  

Year:  1999        PMID: 10103249      PMCID: PMC91219     

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  18 in total

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Journal:  Appl Environ Microbiol       Date:  1989-05       Impact factor: 4.792

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Authors:  A Teske; C Wawer; G Muyzer; N B Ramsing
Journal:  Appl Environ Microbiol       Date:  1996-04       Impact factor: 4.792

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Authors:  D E Canfield; D J Des Marais
Journal:  Science       Date:  1991-03-22       Impact factor: 47.728

8.  Characterization of the diversity of sulfate-reducing bacteria in soil and mining waste water environments by nucleic acid hybridization techniques.

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Journal:  Can J Microbiol       Date:  1994-11       Impact factor: 2.419

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Authors:  D R Lovley
Journal:  Annu Rev Microbiol       Date:  1993       Impact factor: 15.500

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  13 in total

1.  Differences in hyporheic-zone microbial community structure along a heavy-metal contamination gradient.

Authors:  Kevin Feris; Philip Ramsey; Chris Frazar; Johnnie N Moore; James E Gannon; William E Holben
Journal:  Appl Environ Microbiol       Date:  2003-09       Impact factor: 4.792

2.  Determining rates of change and evaluating group-level resiliency differences in hyporheic microbial communities in response to fluvial heavy-metal deposition.

Authors:  Kevin P Feris; Philip W Ramsey; Matthias Rillig; Johnnie N Moore; James E Gannon; William E Holben
Journal:  Appl Environ Microbiol       Date:  2004-08       Impact factor: 4.792

3.  Diversity of microorganisms in Fe-As-rich acid mine drainage waters of Carnoulès, France.

Authors:  O Bruneel; R Duran; C Casiot; F Elbaz-Poulichet; J-C Personné
Journal:  Appl Environ Microbiol       Date:  2006-01       Impact factor: 4.792

4.  Molecular diversity of microbial community in acid mine drainages of Yunfu sulfide mine.

Authors:  Zhiguo He; Shengmu Xiao; Xuehui Xie; Hui Zhong; Yuehua Hu; Qinghua Li; Fenglin Gao; Guiyuan Li; Jianshe Liu; Guanzhou Qiu
Journal:  Extremophiles       Date:  2006-12-19       Impact factor: 2.395

5.  Characterization of a bacterial community in an abandoned semiarid lead-zinc mine tailing site.

Authors:  Monica O Mendez; Julia W Neilson; Raina M Maier
Journal:  Appl Environ Microbiol       Date:  2008-04-18       Impact factor: 4.792

6.  Spatial and temporal analysis of the microbial community in the tailings of a Pb-Zn mine generating acidic drainage.

Authors:  Li-Nan Huang; Wen-Hua Zhou; Kevin B Hallberg; Cai-Yun Wan; Jie Li; Wen-Sheng Shu
Journal:  Appl Environ Microbiol       Date:  2011-06-24       Impact factor: 4.792

7.  Evidence for microbial Fe(III) reduction in anoxic, mining-impacted lake sediments (Lake Coeur d'Alene, Idaho).

Authors:  D E Cummings; A W March; B Bostick; S Spring; F Caccavo; S Fendorf; R F Rosenzweig
Journal:  Appl Environ Microbiol       Date:  2000-01       Impact factor: 4.792

8.  Microbial links between sulfate reduction and metal retention in uranium- and heavy metal-contaminated soil.

Authors:  Jana Sitte; Denise M Akob; Christian Kaufmann; Kai Finster; Dipanjan Banerjee; Eva-Maria Burkhardt; Joel E Kostka; Andreas C Scheinost; Georg Büchel; Kirsten Küsel
Journal:  Appl Environ Microbiol       Date:  2010-04-02       Impact factor: 4.792

9.  Culturable and molecular phylogenetic diversity of microorganisms in an open-dumped, extremely acidic Pb/Zn mine tailings.

Authors:  Gui-Liang Tan; Wen-Sheng Shu; Kevin B Hallberg; Fang Li; Chong-Yu Lan; Wen-Hua Zhou; Li-Nan Huang
Journal:  Extremophiles       Date:  2008-05-30       Impact factor: 2.395

10.  Quantitative microbial community analysis of three different sulfidic mine tailing dumps generating acid mine drainage.

Authors:  Dagmar Kock; Axel Schippers
Journal:  Appl Environ Microbiol       Date:  2008-06-27       Impact factor: 4.792

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