Numerical Simulation and Experimental Study of Shear-Enhanced Goethite Process for Iron Removal

Tianxiang Nan, Jianguang Yang*, Weizhi Zeng*, Qiang Zhu, Shiyang Tang, Chaobo Tang, Mari Lundström

*Corresponding author for this work

Research output: Contribution to journalArticleScientificpeer-review

1 Citation (Scopus)

Abstract

A shear-enhanced method based on strong homogenization was proposed and applied in the goethite process for iron removal from the zinc process solution to overcome the low reaction efficiency and the difficulty in residue filtration. A 3D shear-enhanced rector model was designed, and the process was simulated to reveal the characteristics of fluid flow, gas mass transfer, and goethite particle movement under the coupling multi-physical field at different shearing speeds. The results showed that the homogenization of the solution in the reactor is improved by increasing the flow rate of fluids. The gas dispersion is strengthened to increase the mass transfer rate, further accelerating the iron removal reaction. In addition, after iron precipitation, the formed goethite particles and grains can be broken and refined at a high shearing speed. Zinc in the iron precipitation residue is present in adsorption instead of incorporation, indicating fewer zinc losses. Finally, the reliability of the model was verified by experiments. The shear-enhanced goethite process was suggested to improve iron removal efficiency, and it obtains the iron precipitation residue with the crystal structure of α-FeOOH, suggesting further good filtration performance in the following solid/liquid separation stages.

Original languageEnglish
Pages (from-to)4024-4038
Number of pages15
JournalJOM
Volume75
Issue number9
Early online date15 Jun 2023
DOIs
Publication statusPublished - Sept 2023
MoE publication typeA1 Journal article-refereed

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