Simultaneous Bioreduction of Multiple Oxidized Contaminants Using a Membrane Biofilm Reactor
Explore this paper's citation graph
Summary
Results show the hydrogen-based MBfR may be suitable for removing multiple oxidized contaminants in drinking water or groundwater, and indicates that nitrate and sulfate reductions competed more strongly than Cr(VI) and p-CNB reduction.
- Type
- article
- Published
- 2017-02-01
- Cited by
- 5
- References
- 30
- OpenAlex
- https://openalex.org/W2395419233
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:45521141
Keywords
Chemistry, Sulfate, Nuclear chemistry, Organic chemistry
References
- Nitrate shaped the selenate-reducing microbial community in a hydrogen-based biofilm reactor.
- Hydrogenotrophic denitrification of drinking water using a hollow fibre membrane bioreactor
- THE MEMBRANE BIOFILM REACTOR IS A VERSA TILE PLATFORM FOR WATER AND WASTEWATER TREATMENT
- Bromate Environmental Contamination: Review of Impact and Possible Treatment
- Nitrate contamination of groundwater: A conceptual management framework
- Applying a novel autohydrogenotrophic hollow-fiber membrane biofilm reactor for denitrification of drinking water.
- Bioreduction of para-chloronitrobenzene in a hydrogen-based hollow-fiber membrane biofilm reactor: effects of nitrate and sulfate
- Groundwater Nitrate Contamination Risk Induced by Irrigation from Polluted River Water
- Hydrogenotrophic denitrification of synthetic aquaculture wastewater using membrane bioreactor
- Bioreduction of trichloroethene using a hydrogen-based membrane biofilm reactor.
- Modeling biofilms on gas-permeable supports : Concentration and activity profiles
- Nitrate contamination in groundwater on an urbanized dairy farm.
- Ion-exchange membrane capacitive deionization: A new strategy for brackish water desalination
- A review of reverse osmosis membrane materials for desalinationDevelopment to date and future poten
- Fatty acids production from hydrogen and carbon dioxide by mixed culture in the membrane biofilm reactor.
- The membrane biofilm reactor (MBfR) for water and wastewater treatment: principles, applications, and recent developments.
- Rapid autohydrogenotrophic denitrification by a membrane biofilm reactor equipped with a fibrous support around a gas-permeable membrane
- Bio-reduction of soluble chromate using a hydrogen-based membrane biofilm reactor.
- Effects of hydrogen and formate on the degradation of propionate and butyrate in thermophilic granules from an upflow anaerobic sludge blanket reactor
- A continuous stirred hydrogen-based polyvinyl chloride membrane biofilm reactor for the treatment of nitrate contaminated drinking water.
Cited by
- Effects of sulfate on simultaneous nitrate and selenate removal in a hydrogen-based membrane biofilm reactor for groundwater treatment: Performance and biofilm microbial ecology.
- Insights into selenate removal mechanism of hydrogen-based membrane biofilm reactor for nitrate-polluted groundwater treatment based on anaerobic biofilm analysis.
- Membrane Processes
- Nitrogen Removal From Nitrate-Containing Wastewaters in Hydrogen-Based Membrane Biofilm Reactors via Hydrogen Autotrophic Denitrification: Biofilm Structure, Microbial Community and Optimization Strategies
- Cooperation and competition between denitrification and chromate reduction in a hydrogen-based membrane biofilm reactor.
Related papers
- DETERMINING QUALITY REQUIREMENTS AT THE UNIVERSITIES TO IMPROVE THE QUALITY OF EDUCATION
- A GEOMETRIC MEAN IN THE FURUTA INEQUALITY
- PHOTOMETRISCHE JODIDBESTIMMUNG NEBEN UEBERSCHUESSIGEN CHLORIDEN UND BROMIDEN
- STERISCH GEHINDERTE AROMATISCHE VERBINDUNGEN 3. MITT. SAEUREKATALYSIERTE RK. VON 2,4,6‐TRI‐TERT.‐BUTYL‐ UND 2‐METHYL‐4,6‐DI‐TERT.‐BUTYL‐BENZYLALKOHOLEN UND ‐CHLORIDEN
- The treatment of textile wastewater including chromium(VI) and reactive dye by sulfate-reducing bacterial enrichment.
- Effect of electron donor source on the treatment of Cr(VI)-containing textile wastewater using sulfate-reducing fluidized bed reactors (FBRs).
- Activation of High Volume Fly Ash Pastes Using Chemical Activators