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   synthesis of zno-nanoparticles by microwave assisted sol-gel method and its role in photocatalytic degradation of food dye tartrazine (acid yellow 23)  
   
نویسنده assi navid ,aberoomand azar parviz ,saber tehrani mohamad ,husain waqif ,darwish maher ,pourmand sanaz
منبع international journal of nano dimension - 2017 - دوره : 8 - شماره : 3 - صفحه:241 -249
چکیده    Zno- nanoparticles with an average particle size of 24 nm were successfully synthesized using the microwave assisted sol- gel technique. structural and morphological properties of the nanoparticles were characterized by x-ray diffraction (xrd), field emission scanning electron microscopy (fesem), energy disperse spectrum (eds) and fourier transform infrared spectroscopy (ftir). the band gap energy was measured to be 3.27 ev. the photocatalytic degradation of tartrazine has been studied in aqueous solution under uv-c irradiation at different ph values, catalyst doses, and tartrazine concentration. degradation of samples was monitored by a spectrophotometer. results have shown that 95% of 50 mg l-1 tartrazine was degraded in 120 min due to the photocatalytic degradation in presence of 0.02 g of zno-nanoparticles. the photocatalytic degradation kinetics has also been investigated. the experimental data were fitted very well in the pseudofirst- order kinetic and langmuir-hinshelwood models.
کلیدواژه degradation ,kinetics ,photocatalytic ,tartrazine ,znonanoparticles ,x-ray diffraction (xrd)
آدرس islamic azad university, science and research branch, department of chemistry, ایران, islamic azad university, science and research branch, department of chemistry, ایران, islamic azad university, science and research branch, department of chemistry, ایران, islamic azad university, science and research branch, department of chemistry, ایران, tehran university of medical sciences, international campus, faculty of pharmacy, department of drug and food control, ایران, amirkabir university of technology (aut), department of chemistry, ایران
پست الکترونیکی sanaz.pourmand@aut.ac.ir
 
     
   
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