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Colloidal Carbon-Based Nanoparticles as Heavy Metal Adsorbent in Aqueous Solution: Cadmium Removal as a Case Study

Academic Article
Publication Date:
2017
abstract:
Hydrophilic carbonaceous nanoparticles (HNPs) of uniform sizes with a good degree of dispersion in water were produced from a commercial carbon black by nitric acid treatment. The surface treatment, performed at different reaction times, generates a variable number of oxygen functional groups, mainly carboxylic, which enhance the nanoparticles hydrophilicity and heavy metal adsorption capability. The HNPs were characterized by a number of analytical techniques, including FTIR spectroscopy, thermal and elemental analysis, N2 adsorption, dynamic light scattering, and zeta-potential measurements. The acid-base properties of the functional groups on the HNPs surface were also investigated by coulometric-potentiometric titrations. Cadmium adsorption tests were carried out in stirred reactors containing colloidal aqueous suspensions of HNPs and HNPs supported over silica. The effects of several parameters, such as the cadmium concentration, the temperature, and the solution pH, were studied. Sorbents showed an appreciable cadmium adsorption capability at different temperatures and in a wide range of pH values comparable or superior to several carbon-based sorbents, indicating a feasible use in commercial units.
Iris type:
01.01 Articolo in rivista
Keywords:
hydrophilic nanoparticles; carbon black; potentiometry; cadmium separation; adsorption
List of contributors:
Gargiulo, Valentina; Lisi, Luciana; Alfe', Michela
Authors of the University:
ALFE' MICHELA
GARGIULO VALENTINA
LISI LUCIANA
Handle:
https://iris.cnr.it/handle/20.500.14243/330181
Published in:
WATER, AIR AND SOIL POLLUTION
Journal
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