铅锌分离高效捕收剂MY-1机理及应用

    Mechanism and Application of High-efficiency Collector MY-1 for Lead-zinc Separation

    • 摘要: 【目的】广西某矿山有用矿物主要为脆硫锑铅矿与铁闪锌矿,使用常规捕收剂时需要配合石灰在高碱性条件下实现铅锌分离,药剂选择性较差,石灰用量大。【方法】针对上述问题,以脆硫锑铅矿、铁闪锌矿为研究对象,通过单矿物及人工混矿实验,筛选出一种高效铅锌分离捕收剂MY-1,并开展了实际矿石浮选实验。【结果】研究结果表明,MY-1是脆硫锑铅矿选择性捕收剂,可在弱酸性条件下实现两者的有效分离。在磨矿细度为-0.074 mm 65%时,采用铅锑、锌、硫顺序优先流程,使用“硫酸+硫酸锌+焦亚硫酸钠+MY-1”药剂制度选铅,使用“石灰+硫酸铜+Z200”药剂制度选锌,闭路实验可获得铅锑精矿含Pb27.74%、Sb 23.76%、Zn 5.58%,铅回收率90.56%;锌精矿含Zn 47.26%,锌回收率91.83%的较好指标。【结论】动电位、红外光谱及XPS分析结果表明,MY-1在铁闪锌矿表面仅发生了微弱的物理吸附,但可与脆硫锑铅矿表面铅原子作用,生成疏水性难溶物硫代磷酸铅,而是强烈化学吸附于脆硫锑铅矿表面,这可能是捕收剂MY-1具有较好选择性的原因。

       

      Abstract: ObjectiveThe main useful minerals in a mine (Guangxi) are jamesonite and marmatite. When using conventional collector, lime is needed to separate lead from zinc at high alkaline condition, and the selectivity of agent is poor in the presence of high lime dosage. MethodIn view of the above problems, an efficient and environmentally friendly collector MY-1 for separating lead and zinc was screened by single mineral and artificial ore mixing tests with jamesonite and marmatite as the research object, and the actual ore flotation test was also carried out. ResultThe results show that MY-1 is a selective collector for jamesonite, which is expected to achieve effective separation of jamesonite and marmatite at weak acid conditions. When the grinding fineness is -0.074 mm 65%, adopting lead(antimony)-zinc-sulfur priority process by using the reagent system of 'sulfuric acid+zinc sulfate+sodium pyrosulfite+MY-1' floating lead and 'lime+copper sulfate+Z200' floating zinc, lead antimony concentrate containing 27.74% Pb, 23.76% Sb, 5.58% Zn was obtained with lead recovery rate of 90.56%; Zinc concentrate contains 47.26% Zn was also achieved with 91.83% zinc recovery. ConclusionThe results of electrokinetic potential, infrared spectroscopy and XPS analysis show that MY-1 occur a weak physical adsorption on marmatite surface, while strongly chemically adsorbed on jamesonite surface through reacting with lead atoms to form a hydrophobic insoluble lead thiophosphate, which may be the reason why collector MY-1 has better selectivity.

       

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