Biological Wastewater Treatment
eBook - PDF

Biological Wastewater Treatment

  1. 1,022 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

About this book

Following in the footsteps of previous highly successful and useful editions, Biological Wastewater Treatment, Third Edition presents the theoretical principles and design procedures for biochemical operations used in wastewater treatment processes. It reflects important changes and advancements in the field, such as a revised treatment of the micr

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Yes, you can access Biological Wastewater Treatment by C. P. Leslie Grady, Jr.,Glen T. Daigger,Nancy G. Love,Carlos D. M. Filipe in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Environmental Management. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Front cover
  2. Dedication
  3. Disclaimer
  4. Contents
  5. Preface
  6. Authors
  7. Part I. Introduction and Background
  8. Chapter 1. Classification of Biochemical Operations
  9. Chapter 2. Fundamentals of Biochemical Operations
  10. Chapter 3. Stoichiometry and Kinetics of Aerobic/Anoxic Biochemical Operations
  11. Part II. Theory: Modeling of Ideal Suspended Growth Reactors
  12. Chapter 4. Modeling Suspended Growth Systems
  13. Chapter 5. Aerobic Growth of Heterotrophs in a Single Continuous Stirred Tank Reactor Receiving Soluble Substrate
  14. Chapter 6. Multiple Microbial Activities in a Single Continuous Stirred Tank Reactor
  15. Chapter 7. Multiple Microbial Activities in Complex Systems
  16. Chapter 8. Stoichiometry, Kinetics, and Simulations of Anaerobic Biochemical Operations
  17. Chapter 9. Techniques for Evaluating Kinetic and Stoichiometric Parameters
  18. Part III. Applications: Suspended Growth Reactors
  19. Chapter 10. Design and Evaluation of Suspended Growth Processes
  20. Chapter 11. Activated Sludge
  21. Chapter 12. Biological Nutrient Removal
  22. Chapter 13. Aerobic Digestion
  23. Chapter 14. Anaerobic Processes
  24. Chapter 15. Lagoons
  25. Part IV. Theory: Modeling of Ideal Attached Growth Reactors
  26. Chapter 16. Biofilm Modeling
  27. Chapter 17. Biofilm Reactors
  28. Chapter 18. Fluidized Bed Biological Reactors
  29. Part V. Applications: Attached Growth Reactors
  30. Chapter 19. Trickling Filter
  31. Chapter 20. Rotating Biological Contactor
  32. Chapter 21. Submerged Attached Growth Bioreactors
  33. Chapter 22. Fate and Effects of Xenobiotic Organic Chemicals
  34. Chapter 23. Designing Systems for Sustainability
  35. Appendix A: Acronyms
  36. Appendix B: Symbols
  37. Appendix C: Unit Conversions
  38. Back cover