Nitrate shaped the selenate-reducing microbial community in a hydrogen-based biofilm reactor.
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Summary
Introducing a NO3(-) loading high enough to cause H2 limitation and suppress SeO4(2-) reduction had a long-lasting effect on the microbial community structure, which was confirmed by principal coordinate analysis, although SeO 4( 2-) reduction remained intact.
- Type
- article
- Published
- 2014-03-07
- Cited by
- 110
- References
- 59
- OpenAlex
- https://openalex.org/W24579788
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3148982
Keywords
Political science
References
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Cited by
- Ecology and Biotechnology of Selenium-Respiring Bacteria
- The roles of methanogens and acetogens in dechlorination of trichloroethene using different electron donors
- High Acetic Acid Production Rate Obtained by Microbial Electrosynthesis from Carbon Dioxide.
- Microbial electrosynthesis from carbon dioxide: performance enhancement and elucidation of mechanisms
- Characterization of biofilm and corrosion of cast iron pipes in drinking water distribution system with UV/Cl2 disinfection.
- Selenium biomineralization for biotechnological applications.
- Autotrophic antimonate bio-reduction using hydrogen as the electron donor.
- Quantitative detection of selenate-reducing bacteria by real-time PCR targeting the selenate reductase gene.
- Biologically Induced Hydrogen Production Drives High Rate/High Efficiency Microbial Electrosynthesis of Acetate from Carbon Dioxide
- Evolution of the microbial community of the biofilm in a methane-based membrane biofilm reactor reducing multiple electron acceptors
- The membrane-biofilm reactor (MBfR) as a counter-diffusional biofilm process.
- Effect of temperature on selenium removal from wastewater by UASB reactors.
- Bioreduction of Chromate in a Methane-Based Membrane Biofilm Reactor.
- Simultaneous Bioreduction of Multiple Oxidized Contaminants Using a Membrane Biofilm Reactor
- Selenium: environmental significance, pollution, and biological treatment technologies.
- Microbial Transformations of Selenium Species of Relevance to Bioremediation
- Correlative Cryogenic Spectromicroscopy to Investigate Selenium Bioreduction Products.
- High-Resolution Dynamics of Microbial Communities during Dissimilatory Selenate Reduction in Anoxic Soil.
- Selenate and Nitrate Bioreductions Using Methane as the Electron Donor in a Membrane Biofilm Reactor.
- Impacts of nitrate and electron donor on perchlorate reduction and microbial community composition in a biologically activated carbon reactor.
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