Photocatalytic degradation of phenol using Ag core-TiO2 shell (Ag@TiO2) nanoparticles under UV light irradiation
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Date
2016
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Springer Verlag service@springer.de
Abstract
Ag@TiO<inf>2</inf> nanoparticles were synthesized by one pot synthesis method with postcalcination. These nanoparticles were tested for their photocatalytic efficacies in degradation of phenol both in free and immobilized forms under UV light irradiation through batch experiments. Ag@TiO<inf>2</inf> nanoparticles were found to be the effective photocatalysts for degradation of phenol. The effects of factors such as pH, initial phenol concentration, and catalyst loading on phenol degradation were evaluated, and these factors were found to influence the process efficiency. The optimum values of these factors were determined to maximize the phenol degradation. The efficacy of the nanoparticles immobilized on cellulose acetate film was inferior to that of free nanoparticles in UV photocatalysis due to light penetration problem and diffusional limitations. The performance of fluidized bed photocatalytic reactor operated under batch with recycle mode was evaluated for UV photocatalysis with immobilized Ag@TiO<inf>2</inf> nanoparticles. In the fluidized bed reactor, the percentage degradation of phenol was found to increase with the increase in catalyst loading. © 2015, Springer-Verlag Berlin Heidelberg.
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Keywords
catalysis, catalyst, concentration (composition), efficiency measurement, equipment, experimental study, inorganic compound, nanoparticle, phenol, photodegradation, photolysis, ultraviolet radiation, cellulose, cellulose acetate, silver, titanium, titanium dioxide, water pollutant, analogs and derivatives, analysis, chemistry, procedures, radiation response, water management, Catalysis, Cellulose, Nanoparticles, Phenol, Silver, Titanium, Ultraviolet Rays, Water Pollutants, Chemical, Water Purification
Citation
Environmental Science and Pollution Research, 2016, 23, 20, pp. 20055-20064
