Removal of Trace Organic Pollutants in Water Using Advanced Oxidation Technology

A special issue of Water (ISSN 2073-4441). This special issue belongs to the section "Water Quality and Contamination".

Deadline for manuscript submissions: 20 August 2024 | Viewed by 69

Special Issue Editor


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Guest Editor
College of Environment, Zhejiang University of Technology, Hangzhou 310014, China
Interests: water treatment; advanced oxidation process; kinetics; disinfection byproducts; ferrate; photocatalysis

Special Issue Information

Dear Colleagues,

With the development of industry and population growth, the problem of trace organic pollutants in the water is becoming increasingly serious. Traditional water treatment processes are often ineffective in removing these pollutants to meet the required standards. Advanced oxidation technologies, with their advantages of high efficiency, fast speed, and lack of selectivity, demonstrate good application prospects and market potential. Advanced oxidation technologies are based on the generation of strong oxidizing free radicals, such as sulfate radicals (SO4−·) and hydroxyl radicals (·OH), which decompose complex organic molecules into smaller substances or completely mineralize them into CO2 and H2O. Conventional advanced oxidation technologies include Fenton and Fenton-like technologies, ozone oxidation technology, photocatalysis, photo-Fenton, persulfate, and electrochemical oxidation. This Special Issue aims to review the current status and hazards of trace organic pollutants in water and the research progress of advanced oxidation technologies in treating trace organic pollutants, providing a new approach for future trace organic pollutant control.

Dr. Feilong Dong
Guest Editor

Manuscript Submission Information

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Keywords

  • trace organic pollutants
  • advanced oxidation technologies
  • water quality
  • sulfate radicals
  • hydroxyl radicals
  • removal
  • mineralization
  • degradation pathway

Published Papers

This special issue is now open for submission.
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