Back to Search Start Over

Application of advanced oxidation processes and toxicity assessment of transformation products.

Authors :
Sharma, Abha
Ahmad, Javed
Flora, S.J.S.
Source :
Environmental Research. Nov2018, Vol. 167, p223-233. 11p.
Publication Year :
2018

Abstract

Abstract Advanced Oxidation Processes (AOPs) are the techniques employed for oxidation of various organic contaminants in polluted water with the objective of making it suitable for human consumption like household and drinking purpose. AOPs use potent chemical oxidants to bring down the contaminant level in the water. In addition to this function, these processes are also capable to kills microbes (as disinfectant) and remove odor as well as improve taste of the drinking water. The non-photochemical AOPs methods include generation of hydroxyl radical in absence of light either by ozonation or through Fenton reaction. The photochemical AOPs methods use UV light along with H 2 O 2 , O 3 and/or Fe+2 to generate reactive hydroxyl radical. Non-photochemical method is the commonly used whereas, photochemical method is used when conventional O 3 and H 2 O 2 cannot completely oxidize organic pollutants. However, the choice of AOPs methods is depended upon the type of contaminant to be removed. AOPs cause loss of biological activity of the pollutant present in drinking water without generation of any toxicity. Conventional ozonation and AOPs can inactivate estrogenic compounds, antiviral compounds, antibiotics, and herbicides. However, the study of different AOPs methods for the treatment of drinking water has shown that oxidation of parent compound can also lead to the generation of a degradation/transformation product having biological activity/chemical toxicity similar to or different from the parent compound. Furthermore, an increased toxicity can also occur in AOPs treated drinking water. This review discusses various methods of AOPs, their merits, its application in drinking water treatment, the related issue of the evolution of toxicity in AOPs treated drinking water, biocatalyst, and analytical methods for identification of pollutants /transformed products and provides future directions to address such an issue. Highlights • Review comprises information about Advanced Oxidation Process. • Various types of biocatalyst are included in this review. • Various types of micropollutants in wastewater & drinking water are complied. • Toxicity of transformed products is also present. • Analytical techniques for identification of pollutants/transformed products in wastewater/drinking water are also included. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00139351
Volume :
167
Database :
Academic Search Index
Journal :
Environmental Research
Publication Type :
Academic Journal
Accession number :
132096832
Full Text :
https://doi.org/10.1016/j.envres.2018.07.010