Reprint

Trends in Environmental Applications of Advanced Oxidation Processes

Edited by
September 2023
262 pages
  • ISBN978-3-0365-8795-0 (Hardback)
  • ISBN978-3-0365-8794-3 (PDF)

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

Chemistry & Materials Science
Engineering
Summary

Advanced oxidation processes (AOPs) are promising techniques that can be used for various environmental applications. Currently, AOPs are receiving extensive interest from many researchers mainly due to their non-selective behaviour, their potential for pollutant oxidation, and the lack of solid waste formation in the majority of them. However, there are some knowledge gaps in the scientific literature, such as the efficiency and applicability of AOPs for real environmental water and/or wastewater matrices, the effectiveness of AOPs for toxicity reduction, the influence of environmental conditions and constituents on AOPs, cost of studied treatment methods, etc. This reprint presents original research papers and reviews focused on various environmental applications of AOPs, including comprehensive reviews on specific AOP technologies, focusing on their applications in specific sectors, such as industrial, agricultural, and municipal wastewater. A dedicated chapter is focused on the application of AOPs for toxicity reduction. The application of AOPs for the removal of organic pollutants such as Contaminants of Emerging Concern, pesticides, or dyes from water matrices of diverse origin is featured in the present reprint as specific chapters. Also, two chapters are dedicated to the innovative application of AOPs in the field of greenhouse gas reduction.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
wastewater; advanced oxidation processes (AOPs); photo-Fenton; toxicity; bioassays; costs; phenolic moieties; photo-Fenton; persulfate; emerging contaminants; Fe-binding ligands; iron chelates; petroleum wastewater refinery; advanced oxidation process; fenton; photo-Fenton; ozonation; organic pollutants; rhodamine B; EDTA; photocatalysis; photothermal; sonocatalysis; environmental remediation; titanium; nanoparticles; acid functionalized MWCNTs; limit of detection; electrochemical sensor; TiO2 nanoparticles; photocatalysis; alternative tertiary treatment; COVID-19; micro-nano bubbles; ozonation; pharmaceuticals; pyrite; coffee; magnetite; composite; adsorption; photo-Fenton’s oxidation; thiamethoxam; flonicamid; insecticides; photocatalytic degradation; titanium dioxide; scavengers; solution pH; composites; photocatalysis; BiOmCln; BiOpBrq; g-C3N4; CO2 reduction; active oxygen; catalytic combustion; low-concentration; methane; Mn-Co3O4; solid-state; electrospinning technology; photocatalytic technology; polluted water; nanofibers; nanostructures; composites; CuFe-MOFs; PMS activation; dye removal; drug degradation; antibacterial activity