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  1. Home
  2. Staff Publications
  3. Indexed Publication
  4. A Kinetic Study of Ex-situ Soil Remediation by Nickel Extraction Using Natural Deep Eutectic Solvent
 
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A Kinetic Study of Ex-situ Soil Remediation by Nickel Extraction Using Natural Deep Eutectic Solvent

Journal
Environmental Technology
ISSN
0959-3330
Date Issued
2024
Author(s)
Shahidah Nusailah Rashid
Hanee F. Hizaddin
Adeeb Hayyan
Shee En Chan
Khairunnisa Hasikin
Sarah Abdul Razak
Mohd Istajib Mokhtar
Muhammad Mokhzaini Azizan 
Universiti Sains Islam Malaysia 
DOI
10.1080/09593330.2023.2283093
Abstract
Using natural deep eutectic solvents (NADESs) as a green reagent is a step toward producing environmentally friendly and sustainable technology. This study screened three natural DESs developed using quaternary ammonium salt and organic acid to analyse their capability to extract nickel ions from contaminated mangrove soil, which are ChCl: Acetic Acid (ChCl-AceA), ChCl: Levulinic Acid (ChCl-LevA), and ChCl: Ethylene Glycol(ChCl-Eg) at molar ratio 1:2. The impact of various operating parameters such as washing agent concentration, pH solution, and contact time on the NADES performance in the dissolution of Ni ions batch experiments were performed. The optimal soil washing conditions for metal removal were 30% and 15% concentration, a 1:5 soil-liquid ratio, and pH 2 of ChCl-LevA and ChCl-AceA, respectively. A single removal washing may remove 70.8% and 70.0% Ni ions from the contaminated soil. The dissolution kinetic of Ni ions extraction onto NADES was explained using the linear kinetic pseudo and intraparticle mass transfer diffusion models. The kinetic validation demonstrates a good fit between the experimental and pseudo-second-order Lagergren data. The model’s maximum Ni dissolution capacity, Qe are 51.56 mg g−1 and 52.00 mg g−1 of ChCl-LevA and ChCl-AceA, respectively. The synthesised natural-based DES has the potential to be a cost-effective, efficient, green alternative extractant to conventional solvent extraction of heavy metals.
Subjects

mangrove conservation...

Natural deep eutectic...

nickel

pollution research

soil washing

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