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- W4285179009 endingPage "90" @default.
- W4285179009 startingPage "75" @default.
- W4285179009 abstract "Production, exploitation and discharge of a wide variety of organic dyes by different industrial houses have thrown a critical challenge to maintain the effluent quality. Industrial reluctance in third world countries made significant deterioration of ground and fresh water quality and overall environment. Though different technological approaches were forwarded, but photon induced catalytic decay of organic dye particles by titanium dioxide (TiO2) has opened up newer possibilities to the global scientific communities due to its diversified utilization. In-fact, TiO2 is a preferred photocatalytic-oxidative agent due to the salient features of its excellent photocatalysis activity such as its narrow band gap with high thermo-chemical stability. Moreover, its water insolubility, environmentally non-toxic and non-reactive nature, less energy intake during reaction with room temperature operating conditions, made it a highly preferential amongst other photocatalysts. Such heterogeneous catalytic activity is activated by the ultraviolet radiation on the TiO2 particles while contact with pollutants present in waste effluent stream. After several researches, integrated photo(catalytic) oxidation is being slowly implemented for degradation of dyes in waste water in some of the developed countries. A number of diversified methods could be adopted to modify the structure of TiO2 integrated nano-composite photocatalyst by varying the dopant, particle size and irradiation, which can improve the photo-oxidative performance. The chapter contains the comprehensive and fundamental aspects with thorough scrutiny of recent researches regarding the photo-oxidation of organic dye compounds by titanium-di-oxide nanoparticles which paves the pathway towards the use of such photo-oxidative catalysts more anticipated and conducive in imminent R&D and commercial applications." @default.
- W4285179009 created "2022-07-14" @default.
- W4285179009 creator A5070054129 @default.
- W4285179009 date "2022-01-01" @default.
- W4285179009 modified "2023-09-29" @default.
- W4285179009 title "Photo (Catalytic) Oxidation Processes for the Removal of Dye: Focusing on TiO2 Performance" @default.
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