Removal of atenolol from aqueous solutions by multiwalled carbon nanotubes modified with ozone: kinetic and equilibrium study

Author:

Dehdashti Bahare1,Amin Mohammad Mehdi2,Pourzamani Hamidreza2,Rafati Lida3,Mokhtari Mehdi1

Affiliation:

1. Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran

2. Environment Research Center, Research Institute for Primordial Prevention of Non-communicable Disease, Isfahan University of Medical Sciences, Isfahan, Iran and Department of Environmental Health Engineering, School of Health, Isfahan University of Medical Sciences, Isfahan, Iran

3. Research Center for Health, Safety and Environment (RCHSE), Alborz University of Medical Sciences, Karaj, Iran

Abstract

Abstract The aim of study is removal of atenolol from aqueous solutions by multiwalled carbon nanotubes modified with ozone. The design of the experiment was adopted across four levels with the L16 matrix arrangement. The factors influencing atenolol adsorption include changes in the pH value, contact time, the dose of the modified multiwall carbon nanotube, and the initial concentration of atenolol in the solution; these factors were evaluated along with the extent of their influence on removal efficiency. Data analyses were performed by the Design Expert 6 software. The results indicated that the pH, contact time, adsorbent dose, and the initial concentration were 7, 20 min, 0.15 g/L and 1 mg/L, respectively. In this state, the removal efficiency was calculated to be 75.79%. The maximum adsorption capacity was obtained as 5.05 mg/g under optimal conditions. The data were analyzed using adsorption models obtained from the isotherm fitting tool software. The results suggested that the data had a greater congruence with the Freundlich model (corrected Akaike information criterion = 2.58). Furthermore, the kinetics of the reactions followed pseudo second order kinetics (R2 = 0.95). Based on this study, it can be concluded that modified multiwall carbon nanotubes enjoy high potential and efficiency as adsorbents for the removal of atenolol from aqueous solutions.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference55 articles.

1. Modified maghemite nanoparticles as an efficient adsorbent for removing some cationic dyes from aqueous solution;Desalination,2010

2. Benzene removal by nano magnetic particles under continuous condition from aqueous solutions;Frontiers of Environmental Science & Engineering,2014

3. Adsorption of pharmaceuticals in water using Fe3O4 coated polymer clay composite;Microporous Mesoporous Materials,2016

4. New sorbents for extraction and microextraction techniques;Journal of Chromatography A,2010

5. Equilibrium and kinetic studies on free cyanide adsorption from aqueous solution by activated carbon;Journal of Hazardous Materials,2009

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