Journal of Industrial and Engineering Chemistry, Vol.74, 55-62, June, 2019
Efficient adsorption of Azure B onto CNTs/Zn:ZnO@Ni2P-NCs from aqueous solution in the presence of ultrasound wave based on multivariate optimization
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This work devoted to the investigation of adsorption Azure B (Az-B) onto CNTs/Zn:ZnO@Ni2P-NCs, while dependency of process efficiency to variables was optimized by the application response surface methodology. This adsorbent successfully using small amount 0.031 g is applicable to the adsorption of the high amount of Az-B in a short time. The optimum variables for achievement of maximum Az-B adsorption percentage (98.84%) were achieved using 0.031?g of CNTs/Zn:ZnO@Ni2P-NCs, 26.1 mg L-1 initial Az-B concentration, 8.2 min sonication time and pH 6.3. The kinetic of Az-B adsorption followed pseudo-second-order kinetic and equilibrium data strongly follow the Langmuir model.
Keywords:CNTs/Zn:ZnO@Ni2P-NCs;Azure B adsorption;Response surface methodology;Kinetic and equilibrium
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