Synthesis and characterization of magnetic-montmorillonite and magnetic-organo-montmorillonite: Surface sites involved on cobalt sorption

被引:40
作者
Barraque, Facundo [1 ]
Montes, Maria L. [2 ]
Fernandez, Mariela A. [1 ]
Mercader, Roberto C. [2 ]
Gandal, Roberto J. [3 ]
Torres Sanchez, Rosa M. [1 ]
机构
[1] CETMIC, Camino Centenario & 506,B1897ZCA, Manuel B Gonnet, Argentina
[2] Univ Nacl La Plata, IFLP, Fac Ciencias Exactas, CONICET CCT La Plata,Dept Fis, La Plata, Buenos Aires, Argentina
[3] Univ Nacl San Martin, Inst Invest Ingn Ambiental, CONICET, Ave 25 Mayo & Francia, RA-1650 San Martin, Argentina
关键词
Magnetic composite synthesis; Magnetite; Montmorillonite; Organo-montmorillonite cobalt sorption; CLAY-MINERALS; HEAVY-METALS; ADSORPTION; NANOPARTICLES; REMOVAL; SPECTROSCOPY; KAOLINITE; BENZENE; INSIGHT; CHARGE;
D O I
10.1016/j.jmmm.2018.07.052
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Montmorillonite magnetic-clay nanoparticles (MtMag) and its exchanged product with hexadecyltrimethylammonium (0100MtMag) were synthesized by alkaline oxidation of ferrous sulfate, characterized by diverse techniques (XRD, Mossbauer spectroscopy, VSM, SEM, Zeta Potential, total specific surface area, TOC) and used as Co2- sorbents. The magnetic characteristic of these materials allows them to be used in cases of decontamination of water polluted with dangerous materials, such as radioactive ones, reducing the risk to health due to indirect manipulation by means of external magnetic fields. For comparison, samples without magnetic material (0100Mt) and in absence of clay (Mag) were also synthesized. The synthesis of magnetic materials disclosed the presence of magnetite and goethite nanoparticles, while the saturation magnetization displayed by 0100MtMag was higher than that obtained for MtMag, indicating the existence of a higher amount of magnetite particles in the first one. This suggests that 0100MtMag could be manipulated easier than MtMag through external magnetic fields. Moreover, the surface electric charge of MtMag sample can be described as a mixture of Magnetite and montmorillonite, with ratios related to the surface of both components. Co2- sorption percentages, using an initial Co2- concentration of 85 mg/L, resulted similar for the different materials while the Co2- sorption was ascribed to interactions with the montmorillonite interlayer and external surface. The current results indicate that 0100MtMag is a more appropriate material than MtMag for Co2- removal by external magnets.
引用
收藏
页码:376 / 384
页数:9
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