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机构地区:[1]东北大学资源与土木工程学院,辽宁沈阳110819
出 处:《矿产综合利用》2016年第4期43-47,共5页Multipurpose Utilization of Mineral Resources
基 金:国家自然科学基金资助项目(51204035)
摘 要:本文进行了一系列锡石单矿物试验来探究Fe^(3+)、Cu^(2+)、Pb^(2+)、Mg^(2+)四种金属离子对油酸钠体系中锡石浮选行为的影响,结果表明在p H=2~12范围内Fe^(3+)、Cu^(2+)、Mg^(2+)对锡石具有抑制作用;在p H=2~7.5范围内Pb^(2+)对锡石具有活化效果,在p H=7.5~12范围内Pb^(2+)对锡石也具有抑制作用。接触角检测表明,Fe^(3+)、Cu^(2+)、Mg^(2+)可以阻碍油酸阴离子在锡石表面的吸附,而Pb^(2+)可以增大锡石表面的疏水性。对Fe^(3+)的溶液化学分析显示,在p H=2~3和p H=3~12范围内抑制锡石的主要组分分别是Fe^(3+)和Fe(OH)3(s)。对Pb^(2+)的溶液化学分析显示,在p H=2~7.5范围内Pb^(2+)和Pb OH+在锡石表面的吸附使锡石表面活性增加,从而对锡石实现活化。Some single mineral experiments were carried out to study theeffects of Fe3+, Cu2+, Pb2+, Mg2+ on thefloatation behaviors of fine cassiterite with sodium oleate as a collector. The results demonstrated that the three metalions Fe3+, Cu2+, Mg2+ could reduce the recovery of cassiterite during the pH range from 2 to 12. Pb2+ had a positiveeffect on the flotation of cassiterite when the pH was 2 - 7.5, but a negative effect when the pH was 7.5 - 12. Con-tact angle measurements indicated that Fe3+, Cu2+ ,Mg2+hindered sodium oleate from adsorbing onto the surfaces ofcassiterite and Pb2+ enhanced the hydrophobicity of cassiterite. The solution chemistry analysis revealed that themain components that acted as depressants in Fe3+ solution were Fe3+ and Fe (OH)3+s)when pH was 2 -3 and pHwas 3 - 12, respectively. And in Pb2+ solution, Pb2+ and PbOH+ were the main components that activated cassiterite.
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