Reprint

Application of Advanced Oxidation Processes

Edited by
August 2020
208 pages
  • ISBN978-3-03936-888-4 (Hardback)
  • ISBN978-3-03936-889-1 (PDF)

This book is a reprint of the Special Issue Application of Advanced Oxidation Processes that was published in

Biology & Life Sciences
Chemistry & Materials Science
Computer Science & Mathematics
Engineering
Environmental & Earth Sciences
Summary
The increasingly stricter standards for effluent discharge and the decreasing availability of freshwater resources worldwide have made the development of advanced wastewater treatment technologies necessary. Advanced oxidation processes (AOPs) are becoming an attractive alternative and a complementary treatment option to conventional methods. AOPs are used to improve the biodegradability of wastewaters containing non-biodegradable organics. Besides, AOPs may inactivate pathogenic microorganisms without adding additional chemicals to the water during disinfection, avoiding the formation of hazardous by-products. This Special Issue of Processes aims to cover recent progress and novel trends in the field of AOPs, including UV/H2O2, O3, sulphate-radical oxidation, nanotechnology in AOPs, heterogeneous photocatalysis, sonolysis, Fenton, photo-Fenton, electrochemical oxidation, and related oxidation processes. The topics to be addressed in this Special Issue of Processes may also include the application of AOPs at various scales (laboratory, pilot, or industrial scale), the degradation of emerging contaminants in water and wastewater and pollutants in the gas phase, the quantification of toxicicy in residuals, the development of novel catalytic materials and of hybrid processes, including the combination of AOPs with other technologies, process intensification, and the use of photo-electrochemical processes for energy production.
Format
  • Hardback
License
© 2020 by the authors; CC BY-NC-ND license
Keywords
polycyclic musks; degradation mechanism; UV/chlorine advanced oxidation process; water treatment; UV-LED; photoreactors; mining wastewater; cyanide; metal removal; photocatalysis; TiO2 nanotubes; emerging contaminants; paracetamol; pH; heating oxidation; surface/interface properties; floatability; induction time; bubble-particle wrap angle; cow manure; chemical activation process; activated carbon; pore property; cationic pollutant; adsorption performance; nano zero-valent iron; borohydride reduction method; wastewater treatment; iron nanopowders; lead ions; biological processes; electrochemical processes; oxidation processes; petroleum; phenols; sulfides; ethyl violet; Mn-doped Fe/rGO nanocomposites; mesoporous materials; artificial intelligence; gradient boosted regression trees; total dissolved nitrogen; digestion method; digestion efficiency; intensification; ozone; electrolyzed water; foodborne pathogens; sanitization; advace oxitadion processes (AOP); electro-oxidation; ferrate ion; BBR dye; n/a