Cooperation and competition between denitrification and chromate reduction in a hydrogen-based membrane biofilm reactor.
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- Type
- article
- Published
- 2024-06-01
- Cited by
- 15
- References
- 35
- OpenAlex
- https://openalex.org/W4399301276
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:270251133
Keywords
Denitrification, Chromate conversion coating, Nitrate, Chemistry, Nitrate reductase
References
- Purification and characterization of NADPH-dependent Cr(VI) reductase from Escherichia coli ATCC 33456.
- Integration of H2-Based Membrane Biofilm Reactor with RO and NF Membranes for Removal of Chromate and Selenate
- Hydrogen permeability of the hollow fibers used in H2-based membrane biofilm reactors
- Efflux of chromate by Pseudomonas aeruginosa cells expressing the ChrA protein.
- Bacterial chromate reductase, a potential enzyme for bioremediation of hexavalent chromium: a review.
- Bio-reduction of soluble chromate using a hydrogen-based membrane biofilm reactor.
- Bio-reduction of nitrate from groundwater using a hydrogen-based membrane biofilm reactor.
- Chromate Efflux by Means of the ChrA Chromate Resistance Protein from Pseudomonas aeruginosa
- Membrane-Associated Hexavalent Chromium Reductase of Bacillus megaterium TKW3 with Induced Expression
- Bioreduction of Chromate in a Methane-Based Membrane Biofilm Reactor.
- Simultaneous Bioreduction of Multiple Oxidized Contaminants Using a Membrane Biofilm Reactor
- Cr(VI) reduction and Cr(III) immobilization by resting cells of Pseudomonas aeruginosa CCTCC AB93066: spectroscopic, microscopic, and mass balance analysis
- Concomitant Cr(VI) reduction and Cr(III) precipitation with nitrate in a methane/oxygen-based membrane biofilm reactor
- Nitrate effects on chromate reduction in a methane-based biofilm.
- Carbon-based cathode as an electron donor driving direct bioelectrochemical denitrification in biofilm-electrode reactors: Role of oxygen functional groups
- Trends in Drinking Water Nitrate Violations Across the United States.
- Methane-supported nitrate removal from groundwater in a membrane biofilm reactor.
- Biofilms, active substrata, and me.
- Hydrogen-based, hollow-fiber membrane biofilm reactor for reduction of perchlorate and other oxidized contaminants.
- Structural characteristics of cake layer in membrane bioreactor with chromate exposure.
Cited by
- Improved nitrate removal by polyvinyl alcohol/sodium alginate hydrogel beads entrapping salt-tolerant composite bioagent AHM M3
- The role of “membrane” in membrane biofilm reactor (MBfR), membrane catalyst-film reactor (MCfR) and electrochemical membrane biofilm reactor (EMBfR): mini review
- Microbial synergy mechanism of hydrogen flux influence on hydrogen-based partial denitrification coupled with anammox in a membrane biofilm reactor.
- Organic carbon-induced transition from autotrophic to mixotrophic denitrification in H2-driven biofilm systems treating low C/N wastewater
- Mitigating chromate toxicity through concurrent denitrification in the H2-based membrane biofilm reactor.
- Multiple electron transfer processes facilitate the simultaneous removal of NO3−-N and Cr(VI) in a pyrrhotite-based mixotrophic constructed wetland
- Elemental sulfur facilitates co-metabolism of Cr(VI) and nitrate by autotrophic denitrifiers in constructed wetlands.
- Granule Deterioration Triggers Increased Dissimilatory Nitrate Reduction to Ammonium in Anammox Granular Sludge
- Coupling of palladium nanoparticles with biofilm improved co-reduction of chromium(VI) and nitrate
- Dual pathways of Mn oxide-driven Cr(III) release and transport in serpentine topsoil: OM-Cr(III) colloids and Cr(VI).
- A hydrogen-based indigenous bacterial and algal biofilm system for enhanced nutrient removal in oxidation ponds
- Limited organics shaped microbial mutualism for enhanced nitrate and Cr(VI) co-reduction in a sulfur-driven biosystem.
- Trace Ruthenium Anchored on Nickel Phosphide Steers Hydrogen Atom Transfer for Efficient Nitrate-to-Ammonia Electroreduction.
- Mechanism on synergistic reduction of nitrate-Cr(VI) pollutants by a bacterial consortium of Klebsiella and Leucobacter
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