Equilibrium and Kinetic Studies for The Adsorptive Removal of Lead (II) Ions from Aqueous Solution Using Activated Plantain Peel Biochar

Author:

Nworie FS1,Oroke EC2,Ikelle II3,Nworu JS3

Affiliation:

1. Department of Industrial Chemistry , Ebonyi State University , P.M.B. 053 Abakaliki - Nigeria

2. Department of Science Technology, The Federal Polytechnic , P.M.B. 5351 Ado-Ekiti - Nigeria

3. Department of Chemistry , Nigeria Maritime University , Okerenkoko , Delta State , Nigeria

Abstract

Abstract Studies on the adsorption of Pb(II) on plantain peels biochar (PPB) was conducted. The carbonized and activated, biochar was characterized using Braunauer-Emmett-Teller (BET) surface area and x-ray diffraction crystallography (XRD). BET analysis of the PPB indicated that the pore size (cc/g) and pore surface area (m2/g) was 8.79 and 16.69 respectively. Result of the XRD evaluated through Debye-Scherrer equation, showed a nanostructure with crystallite size of 14.56 nm. Effects of initial metal ion concentration, pH, and contact time were studied in a batch reaction process. Results showed that the adsorption of lead from aqueous solution increased with an increase in pH and initial concentration. Equilibrium modeling studies suggested that the data fitted mainly to the Langmuir isotherm. Adsorption kinetic data tested using various kinetic models fitted the Weber and Morris intraparticle diffusion model implicating pore diffusion as the main rate limiting step. The sorption studies indicated the potential of plantain peel biochar as an effective, efficient and low cost adsorbent for remediating lead (II) ions contaminated environment.

Publisher

Walter de Gruyter GmbH

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