Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/9142
Title: Measuring the velocity profile of spinning particles and its impact on Cr (VI) sequestration
Authors: Aigbe, Uyiosa Osagie 
Ukhurebor, Kingsley Eghonghon 
Onyancha, Robert Birundu 
Osibote, Otolorin Adelaja 
Kusuma, Heri Septya 
Darmokoesoemo, Handoko 
Keywords: Clean water;cluster particles;magnetic interaction;micromixing;water treatment
Issue Date: 2022
Publisher: Elsevier
Source: Aigbe, U. O., Ukhurebor, K. E., Onyancha, R. B. et al. 2022. Measuring the velocity profile of spinning particles and its impact on Cr (VI) sequestration. Chemical Engineering and Processing - Process Intensification, 178: 109013. [https://doi.org/10.1016/j.cep.2022.109013]
Journal: Chemical Engineering and Processing - Process Intensification 
Abstract: The evolution and development of magnetic nanoparticles (MNPs) are of great interest to researchers owing to their novel properties and wide-ranging applications. Essentially, MNPs coupled with magnetic fields (MF) have been used in biomedical separation, catalysis, cell separation, magnetic target drug delivery, hyperthermia, nucleic acid separation and wastewater treatment. In that regard, this paper reports the investigation of the sorption phenomena of chromium six (Cr(VI)) to MNPs interaction spun under the influence of alternating MF utilizing this unique particle shadow velocimetry technique. Under an alternating MF, the velocity field of spinning particles was observed to increase with magnetic field intensification. The determined mean velocity field for the spinning particles in the Cr(VI) solution increases from 0.0075-0.0125 m/s at a MF range of 16.54- 25.54 mT. The rotating MF was observed to improve the magnetic force and torque induced on the particles, with particle aggregates reorienting with the magnetic moment of the field. The variability observed at the liquidparticle interface led to a fast mixing, with chaotic flow behaviour in the channel wall induced by the magnetic force observed. The induced cluster particle rotation and broad magnetic velocity distributions also led to cluster particle collisions hence the enhanced sorption process.
URI: http://hdl.handle.net/11189/9142
ISSN: 0255-2701
DOI: https://doi.org/10.1016/j.cep.2022.109013
Appears in Collections:Eng - Journal articles (DHET subsidised)

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