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A Review on Photocatalysis Used For Wastewater Treatment: Dye Degradation.

Authors :
Kumari, Harita
Sonia
Suman
Ranga, Rohit
Chahal, Surjeet
Devi, Seema
Sharma, Sourabh
Kumar, Sandeep
Kumar, Parmod
Kumar, Suresh
Kumar, Ashok
Parmar, Rajesh
Source :
Water, Air & Soil Pollution; Jun2023, Vol. 234 Issue 6, p1-46, 46p
Publication Year :
2023

Abstract

Water pollution is a global issue as a consequence of rapid industrialization and urbanization. Organic compounds which are generated from various industries produce problematic pollutants in water. Recently, metal oxide (TiO<subscript>2</subscript>, SnO<subscript>2</subscript>, CeO<subscript>2</subscript>, ZrO<subscript>2</subscript>, WO<subscript>3</subscript>, and ZnO)-based semiconductors have been explored as excellent photocatalysts in order to degrade organic pollutants in wastewater. However, their photocatalytic performance is limited due to their high band gap (UV range) and recombination time of photogenerated electron–hole pairs. Strategies for improving the performance of these metal oxides in the fields of photocatalysis are discussed. To improve their photocatalytic activity, researchers have investigated the concept of doping, formation of nanocomposites and core–shell nanostructures of metal oxides. Rare-earth doped metal oxides have the advantage of interacting with functional groups quickly because of the 4f empty orbitals. More precisely, in this review, in-depth procedures for synthesizing rare earth doped metal oxides and nonocomposites, their efficiency towards organic pollutants degradation and sources have been discussed. The major goal of this review article is to propose high-performing, cost-effective combined tactics with prospective benefits for future industrial applications solutions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00496979
Volume :
234
Issue :
6
Database :
Complementary Index
Journal :
Water, Air & Soil Pollution
Publication Type :
Academic Journal
Accession number :
164608755
Full Text :
https://doi.org/10.1007/s11270-023-06359-9