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Heavy metal removal from aqueous systems using hydroxyapatite nanocrystals derived from clam shells
Authors:Dariela Nú  ñ  ez,Jon Ander Serrano,Aritz Mancisidor,Elizabeth Elgueta,Kokkarachedu Varaprasad,Patricio Oyarzú  n,Rodrigo Cá  ceres,Walther Ide,Bernabé   L. Rivas
Affiliation:Centro de Investigación de Polímeros Avanzados, CIPA, Avenida Collao 1202, Edificio de Laboratorios, Concepción Chile, +56 41 3111859 ; Facultad de Ingeniería y Tecnología, Universidad San Sebastián, Lientur 1457, Concepción 4080871 Chile ; Polymer Department, Faculty of Chemistry, University of Concepción, Casilla 160-C, Concepción Chile
Abstract:Hydroxyapatite (HA) was synthesized by wet chemical precipitation, using clam shell (CS) waste as feedstock. SEM and TEM observation of the produced hydroxyapatite revealed the presence of rod-shaped nanocrystals, while XRD and EDS analyses confirmed the characteristic patterns of hydroxyapatite molecules. This material was subsequently employed as a sorbent for heavy metal removal from aqueous solutions, both in batch and column equilibrium procedures. In batch studies, higher sorption efficiencies were obtained at pH 5, with the highest adsorption capacities of 265, 64, and 55 mg g−1 for Pb(ii), Cd(ii), and Cu(ii), respectively. In addition, an adsorption capacity of 42.5 mg g−1 was determined using a CS-HA packed bed column fed with a solution of Pb(ii). Finally, the breakthrough curve was fitted with Thomas model in order to predict column behavior and scaling up.

Removal of Pb(ii), Cu(ii) and Cd(ii) was attained using hydroxyapatite nanocrystals derived from clam shells, in batch and column experiments.
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