Title of article :
Adsorption Evaluation of Food and Industrial Dyes on Nano copper oxide
Author/Authors :
Farjam, Mohammad Hossein Department of Chemistry - Firoozabad Branch Islamic Azad University, Firoozabad, Iran , Mohammadi, Mohammad Kazem Faculty of Science - Ahvaz Branch Islamic Azad University, Ahvaz, Iran , Mehraki, Ali Department of Chemistry - Firoozabad Branch Islamic Azad University, Firoozabad, Iran
Pages :
14
From page :
31
To page :
44
Abstract :
In This applicable research, investigating absorption of process of Erythrosine dye on Copper oxide Nano particles Adsorbent was studied. First, prepared dye concentrations of 6, 8 and 12 mg L-1 and then effects of parameters such as concentrations of initial dye, time and pH on dye absorption efficiency were investigated.The dye concentrations in different samples were measured via spectrophotometer (505.6 nm for dye Erythrosine wavelength). The results of absorption studies showed that Erythrosine absorption or removal rates would increase with decreasing the primary dye concentration, increasing reaction time , and decreasing pH on the basis of the results, copper oxide Nano particles can the absorb Erythrosine dye appropriately and efficiency of the process is higher in acidic pH for dye Erythrosine. The maximum dye removal of 93.68 % could be achieved at initial pH 2 using adsorbent dosage of 0.233gr in 50 ml (12 mg L-1 dye concentration) and agitation rate of 180 rpm. Effect of different parameters as kinetic parameters, were calculated pseudo-First and second-order kinetic, the Langmuir and Freundlich models Isotherm for absorb of this dye on adsorbent. this results showed that second-order kinetic adherence possessing regression coefficient of R2 ≥ 0.999, absorption or removal of Erythrosine on Copper oxide nano particles and different parameters for investigating of process rate of absorption in to be this experience. Equilibrium data fitted well with the Langmuir model for dye with adsorbent.
Keywords :
Absorption , Erythrosine dye , CuO nano particles
Journal title :
Astroparticle Physics
Serial Year :
2014
Record number :
2428195
Link To Document :
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