Anammox Process: Technological Advancement and Application in Industrial Wastewater Treatment Plant systematically summarizes studies on the effect of various operational factors on nitrogen removal performance, along with reactor type, mode of operation (batch or continuous), and cultured anammox bacterial species. The book lists the effect of potential anammox inhibition factors, such as high nitrite concentration, high salinity, sulfides, toxic metal elements, and toxic organic compounds and provides a thorough interpretation of the synergistic and antagonistic toxicity of these inhibitors. In addition, this updated resource suggests a strategy for the optimization of anammox processes for wastewater treatment, also stressing the importance of future studies.
- Presents detailed information on procedures and factors influencing the efficacy of the anammox process
- Offers powerful insights in existing wastewater remediation processes
- Provides a comprehensive understanding of the relationship between operating parameters and environmental factors in WWTPs
Sprache
Verlagsort
Verlagsgruppe
Elsevier Science & Techn.
ISBN-13
978-0-443-19210-4 (9780443192104)
Schweitzer Klassifikation
1. Characterization of the start-up of single and two-stage Anammox processes with real low-strength wastewater treatment2. Performance of Anammox Processes for Wastewater Treatment3. Biological nitrogen removal by the anaerobic ammonium oxidation (anammox) process4. Recent Advances in Anammox Bioreactors for Industrial Wastewater Reuse5. Applications of anammox process6. Mainstream application of anammox process7. Immobilization of anammox biomass8. Preservations of anammox biomass9. Strategies for controlling denitritation10. Effect of operational conditions on anammox bacterial community11. Autotrophic nitrogen removal technologies12. Microbiology and application of the anammox process13. Influence of effluent recirculation on the performance of Anammox process14. Anammox performance, granulation, and microbial response under COD disturbance15. Physiological and kinetic characterization of a suspended cell anammox culture16. Development of long-term stable partial nitrification and subsequent anammox process17. Future prospects of anammox process