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E-ISSN 3118-5533
Archives of Applied Sciences

Research Article
Online Published: 24 Jul 2026
 


Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater

Jabir Danyaya Aliyu, Ibrahim Abubakar, Shehu Ibrahim.


Abstract
Aim/Background: Wastewater treatment remains a major challenge associated with generation of less quality water containing toxic contaminants that cause health adverse effects and environmental destruction. This study aimed at evaluating the heavy metals adsorption efficiency of Desho grass derived activated carbon from wastewater from Kebbi state water treatment plant.
Methods: The activated carbon was prepared using H3PO4 activation method. The physicochemical properties of the activated carbon were determined using standard methods. The functional groups present in the activated carbon were detected using Fourier Transform Infrared (FT-IR) spectroscopic method. The heavy metals concentrations were estimated using atomic absorption spectroscopic (AAS) technique. American Public Health Association (APHA) method was employed for Batch adsorption test. Freundlich and Langmuir adsorption isotherms were used for evaluating the mechanism of heavy metals adsorption efficiency of the activated carbon.
Results: The activated carbon displayed larger significant (p < 0.05) surface area (616.66 m2/g), pore volume (4.13 g/cm3), pH (8.06), conductivity (95.56 µS/cm), and moisture content (14.66 %) and low porosity (0.20 %), ash content (1.80 %), and bulk density (0.51 g/cm3). Several band peaks showing C–C, C–H, C=O, O−H, and C−O stretching were observed on the FT-IR spectrum at a wavenumber range 3350 – 801 cm−1. The activated carbon displayed high significant (p < 0.05) percentage removal efficiency for cadmium, cobalt, manganese, lead, chromium, and nickel up to 98.05 %, 95.17 %, 94.20 %, 92.64 %, 90.00 %, and 86.10 %, respectively.
Conclusion: Desho grass derived activated carbon exhibited high adsorption efficiency for cadmium, cobalt, manganese, lead, chromium, and nickel from the municipal wastewater. The experimental equilibrium data for the adsorption of all the detected heavy metals were best fitted to Langmuir isotherm implying monolayer adsorption mechanism on a uniform surface.

Key words: Desho grass, Heavy metals, Phytoremediation, Pollution, Wastewater


 
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How to Cite this Article
Pubmed Style

Aliyu JD, Abubakar I, Ibrahim S. Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. Arch Appl Sci. 2026; 1(3): 59-71. doi:10.5455/AAS.20260501065616


Web Style

Aliyu JD, Abubakar I, Ibrahim S. Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. https://www.wisdomgale.com/aas//?mno=319379 [Access: July 30, 2026]. doi:10.5455/AAS.20260501065616


AMA (American Medical Association) Style

Aliyu JD, Abubakar I, Ibrahim S. Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. Arch Appl Sci. 2026; 1(3): 59-71. doi:10.5455/AAS.20260501065616



Vancouver/ICMJE Style

Aliyu JD, Abubakar I, Ibrahim S. Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. Arch Appl Sci. (2026), [cited July 30, 2026]; 1(3): 59-71. doi:10.5455/AAS.20260501065616



Harvard Style

Aliyu, J. D., Abubakar, . I. & Ibrahim, . S. (2026) Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. Arch Appl Sci, 1 (3), 59-71. doi:10.5455/AAS.20260501065616



Turabian Style

Aliyu, Jabir Danyaya, Ibrahim Abubakar, and Shehu Ibrahim. 2026. Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. Archives of Applied Sciences, 1 (3), 59-71. doi:10.5455/AAS.20260501065616



Chicago Style

Aliyu, Jabir Danyaya, Ibrahim Abubakar, and Shehu Ibrahim. "Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater." Archives of Applied Sciences 1 (2026), 59-71. doi:10.5455/AAS.20260501065616



MLA (The Modern Language Association) Style

Aliyu, Jabir Danyaya, Ibrahim Abubakar, and Shehu Ibrahim. "Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater." Archives of Applied Sciences 1.3 (2026), 59-71. Print. doi:10.5455/AAS.20260501065616



APA (American Psychological Association) Style

Aliyu, J. D., Abubakar, . I. & Ibrahim, . S. (2026) Heavy metals adsorption efficiency of Desho grass derived activated carbon from municipal wastewater. Archives of Applied Sciences, 1 (3), 59-71. doi:10.5455/AAS.20260501065616