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Pathways of fluoride removal and MgF2 recovery from fluoride-containing wastewater using different magnesium sources
Chao Zhang1, Xinlei Pan1, Lanfeng Li1
1School of Environmental Studies, China University of Geosciences, Wuhan 430074, Hubei, China.
Abstract:
Removing fluoride from fluoride-containing wastewater while recovering fluorine resources is important for both environmental protection and resource utilization. Here, three magnesium sources (MgO, MgCl2, and MgSO4) were compared for fluoride removal and magnesium fluoride (MgF2) recovery, and the roles of different Mg2+ supply pathways in MgF2 recovery were clarified. At pH 1.6-2.4, the hydration products of MgO drive MgF2 precipitation via acid-promoted dissolution and interfacial F- enrichment, whereas the two soluble magnesium salts provide a stable supply of dissolved Mg2+ at pH 5-8, thus favoring MgF2 nucleation and crystal growth. All three magnesium sources yielded rutile-type MgF2 with purities of 88.3 %-90.5 %, as determined by chemical composition analysis, and all recovered products met the MF-2 grade requirement. Appropriate magnesium source selection, through distinct Mg2+ supply pathways, broadened the operable pH range for fluoride removal and MgF2 recovery. Additionally, the anions introduced by the magnesium sources exerted stage-specific effects on MgF2 crystallization, with Cl- promoting nucleation and SO42- facilitating early crystal growth and particle aggregation. These findings provide mechanistic insight into MgF2 recovery from complex fluoride-containing wastewater matrices and practical guidance for magnesium source selection.
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