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萤石磨浮工艺流程及H_(1105)的工业实践
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作者 卫生明 《有色金属(选矿部分)》 CAS 北大核心 1996年第2期8-12,共5页
就浮选萤石的五种磨浮工艺流程进行了工业实践,找出了粗精矿再磨、一次精选尾矿返回扫选、二次精选中矿及一次扫选精矿返回粗选第三槽的磨浮新工艺。采用新型抑制剂H11005、油酸药剂制度,配合新工艺确定了较佳选别工艺条件。实... 就浮选萤石的五种磨浮工艺流程进行了工业实践,找出了粗精矿再磨、一次精选尾矿返回扫选、二次精选中矿及一次扫选精矿返回粗选第三槽的磨浮新工艺。采用新型抑制剂H11005、油酸药剂制度,配合新工艺确定了较佳选别工艺条件。实践证明,新工艺、新药剂对生产高质量萤石精矿和提高选别指标效果显著。 展开更多
关键词 萤石 选矿 磨矿 浮游选矿 油酸药剂 H1105
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Effects of particle size and particle interactions on scheelite flotation 被引量:16
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作者 印万忠 王纪镇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第11期3682-3687,共6页
Effects of size distribution (particle size and content of fine fraction (<10μm)) on scheelite flotation were studied using flotation tests and theoretical calculations. The results show that particle size influen... Effects of size distribution (particle size and content of fine fraction (<10μm)) on scheelite flotation were studied using flotation tests and theoretical calculations. The results show that particle size influences the scheelite recovery and the performance of combined reagents. The scheelite recovery is lowered by adding fine particles (<10μm) into the pulp containing coarse particles. Extended DLVO (EDLVO) theory confirms that the fine fractions (<10μm) could interface with the coarse fractions. The interaction energy and fluid forces are relative to the particle size, which might explain why the fine fractions influence the scheelite flotation. The highest recovery of scheelite using combined reagents as collector and optimum ratio of combined reagents were determined by scheelite particle size and reagent performance. However, the optimum adding order was only determined by reagent performance, which has nothing to do with particle size. 展开更多
关键词 SCHEELITE FLOTATION sodium oleate benzohydroxamic acid particle size combined reagents
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