Efficiency of high gradient magnetic separation applied to micrometric magnetic particles
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Luňáček, Jiří
Lesňák, Michal
Jandačka, Petr
Dvorský, Richard
Repková, Jana
Seidlerová, Jana
Vítkovská, Nikola
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Taylor & Francis
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This article presents two prototypes of laboratory magnetic separators that generate high gradient magnetic fields. Such a field is created in a separation cell via steel wool. The efficiency of separators was tested on a water suspension containing weakly magnetic Fe2O3 nano/micro-particles, prepared in three size fractions in a size range of 60 nm – 10 μm. The separation process was evaluated via optical transmittance of the suspension before and after sequential separation processes. Repeated separations on the same sample exhibit an asymptotic trend that results in the conclusion that it is not possible to trap all solid content. According to the decrease of solid particles concentrations during cyclic separation we set the efficiency of the process. It is maximally 46% for fine fraction, 65% for medium fraction, and 40% for coarse fraction after infinity separation cycles.
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Separation Science and Technology. 2015, vol. 50, issue 16, p. 2606-2615.
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Publikační činnost VŠB-TUO ve Web of Science / Publications of VŠB-TUO in Web of Science
Publikační činnost Centra nanotechnologií / Publications of Nanotechnology Centre (9360)
Publikační činnost Institutu fyziky / Publications of Institute of Physics (516)
Publikační činnost IT4Innovations / Publications of IT4Innovations (9600)
Publikační činnost RMTVC (606)
Články z časopisů s impakt faktorem / Articles from Impact Factor Journals
Publikační činnost Centra nanotechnologií / Publications of Nanotechnology Centre (9360)
Publikační činnost Institutu fyziky / Publications of Institute of Physics (516)
Publikační činnost IT4Innovations / Publications of IT4Innovations (9600)
Publikační činnost RMTVC (606)
Články z časopisů s impakt faktorem / Articles from Impact Factor Journals