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Achieving Stable Biological Oxidation of Erratic Waste Gas Streams by Utilizing Cyclic Adsorption/Desorption Beds

  • Ashraf Aly Hassan , Abderrahman Zehraoui and George Sorial EMAIL logo
Published/Copyright: November 30, 2016
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Received: 2009-9-28
Revised: 2009-11-20
Accepted: 2009-11-24
Published Online: 2016-11-30
Published in Print: 2010-1-1

© 2016 by Walter de Gruyter Berlin/Boston

Articles in the same Issue

  1. Achieving Stable Biological Oxidation of Erratic Waste Gas Streams by Utilizing Cyclic Adsorption/Desorption Beds
  2. Production of Titanium Dioxide Nanoparticles and Nanostructures from Dye Wastewater Sludge - Characterisation and Evaluation of Photocatalytic activity
  3. The Application of Photocatalytic Oxidation in Removing Pentachlorophenol from Contaminated Water
  4. H2O2/UV-C Treatment of the Economically Important Naphthalene Sulfonate J-Acid: Process Optimization, Kinetic Evaluation and Activated Sludge Inhibition
  5. Nonthermal Plasma Destruction of Trifluoromethane Using a Dielectric- Packed Bed Reactor
  6. Investigation of Electric Discharge Sound in Atmospheric Pressure Plasma
  7. Chlorophenols Contaminated Soil Remediation by Peroxidation
  8. Synthesis, Characterization and Visible-Light Photocatalytic Activity of La2O3/SnO2 Nanocomposite
  9. Electrical Discharge Characteristics Using a Bubble in Water and Their Applications to the Water Treatment
  10. Development of Higher Yield Ozonizer Based on Nano-Seconds Pulsed Discharge
  11. Ozone Mass Transfer in a Recirculating Loop Semibatch Reactor Operated at High Pressure
  12. Arc Plasma for Materials Detoxification and their Conversion
  13. Comparison of Photocatalytic Activities of Commercial Titanium Dioxide Powders Immobilised on Glass Substrates
  14. Coupling of Adsorption on Zeolite and V-UV Irradiation for the Treatment of VOC Containing Air Streams: Effect of TiO2 on the VOC Degradation Efficiency
  15. Anaerobic Photocatalytic Oxidation of Carbohydrates in Aqueous Pt/TiO2 Suspensions with Simultaneous Production of Hydrogen
  16. Using Water Hydrogen Instead of Reducing Gas in the Production of Direct Reduced Iron (DRI)
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