Selective Separation of Galena from Sphalerite with a Novel Depressant Sodium Thiophosphate: Flotation and Adsorption Mechanism

抑制剂 闪锌矿 吸附 化学 方铅矿 无机化学 接触角 矿物 润湿 选择性吸附 泡沫浮选 化学工程 选矿 密度泛函理论 硫化物矿物 核化学 分子 降级(电信) 黄铁矿
作者
Jie Jin,Yanbo Shang,Hao Lai,S. Ling,Jinpeng Cai,Peilun Shen,Wei Xiao,Dianwen Liu
出处
期刊:Langmuir [American Chemical Society]
卷期号:41 (41): 28038-28051 被引量:3
标识
DOI:10.1021/acs.langmuir.5c03873
摘要

The selective flotation of galena from sphalerite is a persistent challenge in mineral processing due to their similar floatability. This study introduces sodium thiophosphate (Na3PO3S) as a novel and highly efficient depressant for sphalerite. The depression performance and underlying mechanisms were systematically investigated through microflotation tests, contact angle measurements, adsorption studies, microcalorimetry, surface analyses (Raman, ToF-SIMS, XPS), and Density Functional Theory (DFT) calculations. Flotation results demonstrated that Na3PO3S exhibits selective depression against sphalerite in the pH range of 4.0-11.5, while having a negligible effect on galena flotation. In a mixed mineral system at pH 8.5, a lead concentrate with a lead recovery of 93.59% was obtained, while zinc recovery was suppressed to just 8.36%. Contact angle and adsorption measurements revealed that Na3PO3S strongly adsorbs on the sphalerite surface, which enhances the hydrophilicity of sphalerite, while its adsorption on galena is weak and it can be replaced by DDTC. Spectroscopic analyses (Raman, ToF-SIMS, XPS) provided evidence that Na3PO3S forms ZnSPO3- by reacting with Zn sites on the sphalerite surface, which enhances the hydrophilicity of sphalerite and hinders the adsorption of the collector (DDTC). Microcalorimetry results revealed that the heat of adsorption on sphalerite was twice that on galena, amounting to 0.30 J/g. This aligns with DFT calculations, which showed that the adsorption energy of Na3PO3S on the sphalerite (1 1 0) surface (-291.085 kJ/mol) is substantially higher than that on the galena (1 0 0) surface (-186.783 kJ/mol), confirming the adsorption on sphalerite is more stable compared to galena. This work presents Na3PO3S as a promising and effective depressant for the selective and efficient separation of lead-zinc sulfide ores.
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