摘要:
Carbon nanotubes (CNTs) were grown on the surface of microsized Al
2O
3 particles in CH
4 atmosphere at 700℃ under the catalysis of Fe-Ni nanoparticles. The CNTs on Al
2O
3 were used for adsorbing Pb
2+, Cu
2+, and Cd
2+ from the solution and the results were compared with active carbon powders, commercial carbon nanotubes, and Al
2O
3 particles. The as-grown CNTs/Al
2O
3 have demonstrated extraordinary absorption capacity with further treatment or oxidation, as well as hydrophilic ability that other CNTs lacked. The adsorption capacity of CNTs on Al
2O
3 is superior to other adsorbents and the preference order of adsorption on composite Al
2O
3 is pb
2+ > Cu
2+ > Cd
2+. It seemed that the adsorption of those Pb
2+, Cu
2+, and Cd
2+ did not change the surface properties of composite particles. The adsorption behaviors of Pb
2+, Cu
2+, and Cd
2+ by CNTs on Al
2O
3 match well with the Langmuir isothermal adsorption model and the second order kinetic model. The calculated saturation amount adsorbed by 1 g of CNTs on Al
2O
3 are 67.11, 26.59, and 8.89 mg/g for Pb
2+, Cu
2+, and Cd
2+ in single adsorption test, respectively.