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矿物浮选过程中的交互影响 被引量:13
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作者 印万忠 唐远 +2 位作者 姚金 罗溪梅 王纪镇 《矿产保护与利用》 2018年第3期55-60,共6页
复杂矿石体系中矿物间难以分离的主要原因是有用矿物的嵌布粒度太细,有用矿物与脉石矿物的共生关系复杂,要实现矿物之间的单体解离,首先必须对矿石进行细磨,从而造成矿石泥化现象以及矿物之间的相互罩盖,进而对矿物的可浮性产生交互影响... 复杂矿石体系中矿物间难以分离的主要原因是有用矿物的嵌布粒度太细,有用矿物与脉石矿物的共生关系复杂,要实现矿物之间的单体解离,首先必须对矿石进行细磨,从而造成矿石泥化现象以及矿物之间的相互罩盖,进而对矿物的可浮性产生交互影响,导致矿物分离困难。矿物浮选的交互影响是指复杂矿石浮选体系中两种以上矿物间相互吸附、表面转化等对浮选分离产生的影响。因此,要实现复杂矿物体系中有用矿物的选择性分离,首先必须摸清不同复杂矿石体系中矿物之间的交互影响规律,进而找到利用或消除矿物间交互影响的方法,最终达到提高分离选择性的目的。系统阐述了近年来在复杂铁矿石、菱镁矿矿石和钨矿石体系中不同矿物间的浮选交互影响规律的研究成果,以及浮选过程中不同类型复杂矿石中各矿物交互影响的晶体化学和表面物理化学机制,并提出了削弱或促进矿物之间交互影响和适于不同类型复杂矿石浮选分离的方法,建立了复杂铁矿石、菱镁矿矿石和白钨矿矿石中矿物浮选交互影响的理论体系。 展开更多
关键词 浮选 矿石 菱镁矿矿石 白钨矿矿石 交互影响
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Characterization and processing of talc-magnesite from the Zinelbulak deposit 被引量:2
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作者 HOJAMBERDIEV Mirabbos ARIFOV Pulat +1 位作者 TADJIEV Kamil XU Yunhua 《Mining Science and Technology》 EI CAS 2010年第3期415-420,433,共7页
The characteristics of talc-magnesite from the Zinelbulak deposit(Uzbekistan) were investigated via X-ray diffraction, differential thermal analysis,infrared spectroscopy and optical microscopy.The mineralogical compo... The characteristics of talc-magnesite from the Zinelbulak deposit(Uzbekistan) were investigated via X-ray diffraction, differential thermal analysis,infrared spectroscopy and optical microscopy.The mineralogical composition of the Zinelbulak talc-magnesite consists of 52 wt.%talc,43 wt.%carbonates and 5 wt.%of the iron-containing minerals magnetite,siderite and chlorite.Petrographic analysis confirmed the presence of carbonates in two forms:magnesite and breunnerite.Grindability tests revealed that talc and magnesite particles are completely separated after a grinding process carried out for 10~12 min.The distribution of the yield of talc and magnesite,as a function of the particle size,shows an irregular feature in that a comparatively coarser sample(>0.1 mm) is richer in magnesite and poor in talc while a comparatively finer sample(<0.1 mm) has a composition poorer in magnesite.The dressability of the Zinelbulak talc-magnesite was tested using conventional gravity concentration,flotation and electromagnetic separation.Gravity concentration was found to be the most economic initial process for the complete separation of magnesium carbonate and talc.Subsequent flotation and magnetic separation techniques could further increase the yield of high quality magnesite and talc.Refractory samples prepared by heating the separated magnesite at 1600℃for 2 h met the State Standards for refractory materials. 展开更多
关键词 talc-magnesite GRINDING froth flotation gravity concentration magnetic separation
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