Synthesis and characterization of mg(Oh)2-impregnated activated carbon adsorbent from coconut shell

Saputra, Andri and Sulistyo, Hary and Swantomo, Deni (2019) Synthesis and characterization of mg(Oh)2-impregnated activated carbon adsorbent from coconut shell. Materials Science Forum, 948 MS. 49 - 53. ISSN 02555476

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Abstract

Introducing or impregnating Mg(OH)2 onto activated carbon is a promising path for wastewater treatment of uptake (removal) uranium from aqueous solution. The present study aims to synthesize and characterize Mg(OH)2-impregnated activated carbon from coconut shell. The introducing or impregnating Mg(OH)2 into treated biochar by activation method using various impregnation ratio (IR) of MgCl2 (IR = 0.5; 1.0; 2.0). Characterization of functional groups in produced activated carbon was conducted with the aid of FTIR spectroscopy. The presence of O-H or Mg(hydroxyl) bond was confirmed by FTIR analysis at 3343.50 cm<sup>-1</sup> with the highest intensity of the obtained peak at impregnation ratio (IR) 2.0. Due to the surface area is one of the important factors that control a materials ability to adsorb contaminations, the surface area of activated carbon was measured about 353-358 m<sup>2</sup> /g by BET method. To indicate that introducing or impregnating Mg(OH)2 or Mg(hydroxyl) into treated carbon is successfully work, the presence of Mg (w) in activated carbon was performed using X-Ray Fluorescence Analysis with the highest Mg presence about 28.587 (w) at impregnation ratio (IR) 2.0. © 2019 Trans Tech Publications Ltd, Switzerland.

Item Type: Article
Additional Information: Cited by: 0
Uncontrolled Keywords: Activated carbon; Activated carbon treatment; Adsorption; Chemicals removal (water treatment); Chlorine compounds; Fluorescence; Fourier transform infrared spectroscopy; Impregnation; Magnesium; Wastewater treatment; Activation method; Coconut shells; FTIR; FTIR analysis; FTIR spectroscopy; Impregnation ratios; Synthesis and characterizations; X ray fluorescence analysis; Magnesium compounds
Subjects: T Technology > TP Chemical technology
Divisions: Faculty of Engineering > Chemistry Engineering Department
Depositing User: Sri JUNANDI
Date Deposited: 30 Jun 2026 01:47
Last Modified: 30 Jun 2026 01:47
URI: https://ir.lib.ugm.ac.id/id/eprint/25458

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