
- 182 pages
- English
- PDF
- Available on iOS & Android
About this book
Advanced Oxidation Processes – Applications, Trends, and Prospects constitutes a comprehensive resource for civil, chemical, and environmental engineers researching in the field of water and wastewater treatment. The book covers the fundamentals, applications, and future work in Advanced Oxidation Processes (AOPs) as an attractive alternative and a complementary treatment option to conventional methods. This book also presents state-of-the-art research on AOPs and heterogeneous catalysis while covering recent progress and trends, including the application of AOPs at the laboratory, pilot, or industrial scale, the combination of AOPs with other technologies, hybrid processes, process intensification, reactor design, scale-up, and optimization. The book is divided into four sections: Introduction to Advanced Oxidation Processes, General Concepts of Heterogeneous Catalysis, Fenton and Ferrate in Wastewater Treatment, and Industrial Applications, Trends, and Prospects.
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Table of contents
- Advanced Oxidation Processes - Applications, Trends, and Prospects
- Contents
- Preface
- Section 1 - Introduction to Advanced Oxidation Processes
- Chapter 1 - Advanced Oxidation Processes: A Powerful Treatment Option for the Removal of Recalcitrant Organic Compounds
- Section 2 - General Concepts of Heterogeneous Catalysis
- Chapter 2 - Heterogeneous Catalytic Process for Wastewater Treatment
- Chapter 3 - Applications of Chemical Kinetics in Heterogeneous Catalysis
- Section 3 - Fenton and Ferrate in Wastewater Treatment
- Chapter 4 - Advancements in the Fenton Process for Wastewater Treatment
- Chapter 5 - Application of Ferrate for Advanced Water and Wastewater Treatment
- Section 4 - Industrial Applications Trends and Prospects
- Chapter 6 - Application of Advanced Oxidation Process in the Food Industry
- Chapter 7 - Catalytic Ozone Oxidation of Petrochemical Secondary Effluent: Mechanism, Application and Future Development
- Chapter 8 - Scale-Up and Optimization for Slurry Photoreactors