Analytical chemistry council

METHODS AND OBJECTS OF CHEMICAL ANALYSIS

 

An international journal devoted to all aspects of analytical chemistry

ISSN 2413-6166 (Online), ISSN 1991-0290 (Print)

Kiev University
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Study of Adsorption Characteristics of Co(II) on Eggshell Residue

Rahmah Hashim Abdullah†, Amal Saadoon Majeed‡, Sundus Saleh Nehaba§, Ahmed Saadoon AbbasII, Luma Majeed Ahmed┴,#, Ameer Salim Mottaleb†, Rawaa Hefdhi ZaooliII, Ahmed Saleh FarhoodII*

† College of Agriculture, Al-Qasim Green University, Babylon, Iraq;
‡ Sub-Department of Basic Science, Faculty of Nursing, University of Kufa, Najaf- 54003, Iraq;
§ Environmental Sciences College, Al-Qasim Green University, Babylon, Iraq;
II Department of Chemistry, College of Science, University of Babylon, Hilla- 51002, Iraq;
┴ Al-Zahraa Center for Medical and Pharmaceutical Research Sciences, Al-Zahraa University for Women, Karbala, Iraq;
# College of Sciences, University of Kerbala, Karbala, Iraq;

* Corresponding authors

*e-mail: sci.ahmed.saleh@uobabylon.edu.iq

Methods Objects Chem. Anal., 2025, 20(2), p. 109-116

https://doi.org/10.17721/moca.2025.109-116

The article is distributed under open access Creative Commons Attribution License CC BY 4.0.

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Abstract

A comparative study was conducted to evaluate the adsorption performance of cobalt(II) ions using untreated chicken eggshell powder (ES) and sulfuric acid-treated eggshell (EST). X-ray diffraction (XRD) analysis revealed characteristic 2θ values of 29.578° for ES and 29.483° for EST, corresponding to CaCO3. Following Co(II) adsorption, a reduction in crystal spacing and an increase in d-spacing were observed, suggesting enhanced repulsion between native Ca(II) and adsorbed Co(II) ions, along with reduced crystal density and increased bond lengths. Scanning electron microscopy (SEM) images revealed irregular particle morphologies and the formation of spherical or ovoid clusters following adsorption. Adsorption equilibrium was reached within 90 minutes. The Co(II) removal efficiency improved with increasing adsorbent dosage for both ES and EST. Surface modification with H2SO4 and NaHCO3 expanded the effective pH range for Co(II) removal from 2–4 (ES) to 2–8 (EST), attributed to a shift in the point of zero charge (pHpzc) toward weakly basic values. Thermodynamic analyses confirmed that the adsorption process was endothermic and governed by physical interactions. Adsorption isotherms were evaluated using Freundlich, Langmuir, and Temkin models, with the results indicating that the Freundlich and Temkin models provided the best fit to the experimental data.

Keywords: adsorption of cobalt (II), eggshell (ES), eggshell treatment (EST), adsorption isotherm, removal

Article language: En.


Publisher: Taras Shevchenko National University, Kiev Ukraine

(Analytical chemistry department at Taras Shevchenko National University, 64 Vladimirskaya STR., Kiev, 01601 UKRAINE)
analysis@univ.kiev.ua, www.univ.kiev.ua, +380 (44) 2393444

The journal is indexed in SCOPUS and Web of Science

The journal website: www.moca.net.ua

The articles in this journal are licensed under CC BY 4.0