Over the past decade, extensive research has been dedicated to the development of aerobic granulation technology for high-efficiency wastewater treatment. Taking a systematic approach, Wastewater Purification provides a comprehensive understanding of aerobic granulation in sequencing batch reactors by presenting fundamental principles of aerobic granulation along with the basics of process operation under various conditions. The book explains what aerobic granules are and how they form, discusses the key factors that influence aerobic granulation, addresses commonly encountered problems, and…mehr
Over the past decade, extensive research has been dedicated to the development of aerobic granulation technology for high-efficiency wastewater treatment. Taking a systematic approach, Wastewater Purification provides a comprehensive understanding of aerobic granulation in sequencing batch reactors by presenting fundamental principles of aerobic granulation along with the basics of process operation under various conditions. The book explains what aerobic granules are and how they form, discusses the key factors that influence aerobic granulation, addresses commonly encountered problems, and offers ways to improve process stability. It also outlines directions for future research.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Yu Liu, Ph.D. School of Civil and Environmental Engineering Nanyang Technological University Singapore
Inhaltsangabe
Aerobic Granulation at Different Carbon Sources and Concentrations. Aerobic Granulation at Different Shear Forces. Aerobic Granulation at Different SBR Cycle Times. Aerobic Granulation at Different Settling Times. Roles of SBR Volume Exchange Ratio and Discharge Time in Aerobic Granulation. Selection Pressure Theory for Aerobic Granulation in Sequencing Batch Reactors. Growth Kinetics of Aerobic Granules. Diffusion of Substrate and Oxygen in Aerobic Granules. The Essential Role of Cell Surface Hydrophobicity in Aerobic Granulation. Essential Roles of Extracellular Polymeric Substances in Aerobic Granulation. Internal Structure of Aerobic Granules. Biodegradability of Extracellular Polymeric Substances Produced by Aerobic Granules. Calcium Accumulation in Acetate-Fed Aerobic Granules. Influence of Starvation on Aerobic Granulation. Filamentous Growth in an Aerobic Granular Sludge SBR. Improved Stability of Aerobic Granules by Selecting Slow-Growing Bacteria. Pilot Study of Aerobic Granulation for Wastewater Treatment.
Aerobic Granulation at Different Carbon Sources and Concentrations. Aerobic Granulation at Different Shear Forces. Aerobic Granulation at Different SBR Cycle Times. Aerobic Granulation at Different Settling Times. Roles of SBR Volume Exchange Ratio and Discharge Time in Aerobic Granulation. Selection Pressure Theory for Aerobic Granulation in Sequencing Batch Reactors. Growth Kinetics of Aerobic Granules. Diffusion of Substrate and Oxygen in Aerobic Granules. The Essential Role of Cell Surface Hydrophobicity in Aerobic Granulation. Essential Roles of Extracellular Polymeric Substances in Aerobic Granulation. Internal Structure of Aerobic Granules. Biodegradability of Extracellular Polymeric Substances Produced by Aerobic Granules. Calcium Accumulation in Acetate-Fed Aerobic Granules. Influence of Starvation on Aerobic Granulation. Filamentous Growth in an Aerobic Granular Sludge SBR. Improved Stability of Aerobic Granules by Selecting Slow-Growing Bacteria. Pilot Study of Aerobic Granulation for Wastewater Treatment.
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