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Advancing iron ore slimes magnetic separation with functionalized Nanoparticles: Molecular insights from free energy simulations
被引:8
|作者:
Goncalves, Tatiane Aparecida Rocha
[1
,3
]
Silva, Lucas Andrade
[2
]
Pereira, Alexandre Moni
[2
]
Peres, Antonio Eduardo Clark
[3
]
Correia, Julio Cesar Guedes
[2
]
机构:
[1] VALE SA, Mineral Proc Dev Dept, Ave Dr Marco Paulo Simon Jardim,3580 Bairro Piemon, Nova Lima, MG, Brazil
[2] Ctr Mineral Technol CETEM, Mol Modeling Lab, Av Pedro Calmon 900, BR-21941908 Rio De Janeiro, RJ, Brazil
[3] Univ Fed Minas Gerais UFMG, Dept Met & Mat Engn, Ave Antonio Carlos 6627, BR-31270901 Belo Horizonte, MG, Brazil
关键词:
Magnetic Nanoparticles;
Selective Magnetic Coating;
Surface Magnetization;
Hydrophobic Grafting;
Iron Ore;
Molecular Dynamics Simulations;
Free Energy Calculation;
UNSATURATED FATTY-ACIDS;
SURFACE-CHARGE;
DYNAMICS SIMULATIONS;
SODIUM OLEATE;
ADSORPTION;
PENTLANDITE;
FLOTATION;
FORCE;
STABILITY;
HEMATITE;
D O I:
10.1016/j.apsusc.2023.158498
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Magnetic nanoparticles have diverse scientific and technological applications, as their properties can be tuned accordingly. An example is the selective magnetic coating technique for the selective adsorption of these colloidal particles on the surface of iron minerals to improve recovery of fines by magnetic separation. Thus, fundamental physicochemical knowledge of such systems is of paramount importance. Herein, we investigate the adsorption of magnetite nanoparticles on mineral surfaces and the impact of hydrophobic coating on the adsorption process and magnetic separation. We present structural and thermodynamic characterizations from molecular dynamics and free energy simulations to rationalize the differences in association process in both native and coated particle conditions. We demonstrate that hydrophobic coating of both nanoparticle and target iron oxide surfaces is essential for selective adhesion, revealed by Delta G. Also, tuning the degree of surface coverage by oleate leads to better interactions then simply establishing a monolayer coating, because of interdigitation of adsorption layers allowing higher contact area, shorter interparticle distance and less oleate consumption. Magnetic separation experiments of ultrafine iron ore particles under different oleate and colloidal magnetite concentrations validated the molecular level analyses, thus achieving successful experiment-theory nexus based on a sound theoretical background explored beforehand by computational simulations.
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页数:11
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