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◆ Minerals Engineering2026-03-31· Depressant

Selective flotation separation of spodumene and feldspar under low alkalinity enabled by a sulfonate-based organic depressant

Man Cui, Dongfang Lu, Yuhua Wang, Xiayu Zheng

原始摘要(英文原文)· Original abstract
The flotation separation of spodumene from feldspar under low-alkaline conditions remains challenging due to their similar aluminosilicate surface characteristics and the limited selectivity of conventional reagent schemes. In this study, a sulfonate-based polyanionic organic depressant with aromatic backbone and sulfonate (−SO 3 - ) functional groups, denoted as ODA-1, was introduced for spodumene-feldspar separation in the sodium oleate/dodecylamine (NaOL/DDA) mixed collector system under low-alkaline conditions (pH = 8.5 ± 0.1). Micro-flotation experiments on single minerals and binary mixtures were combined with zeta potential measurements, Fourier-transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), and density functional theory (DFT) calculations to elucidate the underlying adsorption mechanism. The flotation results show that at 100 mg/L ODA-1 and pH 8.5, efficient separation of spodumene from feldspar was achieved. Surface analyses revealed that ODA-1 preferentially adsorbed on feldspar with surface Al and Si atoms via its sulfonate groups, forming a hydrophilic layer that suppresses NaOL/DDA adsorption. In contrast, ODA-1 interacts weakly with spodumene and is readily displaced by NaOL/DDA, leading to surface hydrophobization. This work provides fundamental insights into the interfacial regulation mechanism of selective organic depressants under low-alkalinity conditions.
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Selective flotation separation of spodumene and feldspar under low alkalinity enabled by a sulfonate-based organic depressant — 科研速览 Science Skim