
Sono-Hybrid Advanced Oxidation Processes for Water and Wastewater Treatment
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Product details:
- Publisher Elsevier
- Date of Publication 1 July 2025
- ISBN 9780443220876
- Binding Paperback
- No. of pages450 pages
- Size 235x191 mm
- Weight 450 g
- Language English 700
Categories
Long description:
Sono-Hybrid Advanced Oxidation Processes for Water and Wastewater Treatment presents the latest technological advances research in sono-hybrid advanced oxidation processes (AOPs), including an array of cutting-edge water treatments with depth analysis of mechanisms, viable applications, and the advantages and disadvantages of each processes. The book expands on, and illustrates, the principles and consequences of ultrasonic irradiation in liquids, which is an essential component in understanding the degradation mechanisms in sono-hybrid AOPs. This will be a valuable and effective reference for students, researchers, academics, and professionals working in water and wastewater treatment.
- Presents the latest hybrid technologies based on ultrasound to treat industrial wastewater
- Explores advancements in different sono-hybrid advanced oxidation techniques to remove water pollutants
- Introduces an easy-to-use guide manual for all the listed sono-hybrid techniques
- Describes and discusses emerging futuristic sono-hybrid technologies for the industrial removal of pollutants from wastewater
Table of Contents:
PART 1. FUNDAMENTALS OF THE SONOCHEMICAL PROCESS
1. Acoustic Cavitation: Physics and Modelling
2. Chemical Effects of Sonication: A General View
3. The Sonochemical Reactors for Hybrid Systems
PART 2. SONO-HYBRID AOPs PROCESSES
4. The Sono-Fenton Process for Micropollutants Degradation
5. Sonocatalysis for Micropollutants Degradation
6. Sonophotolysis and Sonophotocatalysis for Micropollutants Degradation
8. Sono-electrochemical Process for Micropollutants Degradation
9. Sono-chlorination Process for Micropollutants Degradation
10. Sulfate Radical-Based AOPs Combined with Ultrasound for Micropollutants Degradation
11. Innovative Sono-hybrid Advanced Oxidation processes