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PROCESSING OF OXIDIZED ZINC-LEAD BEARING RAW MATERIALS

机译:加工氧化锌铅轴承原料

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At present, a large volume of ores is not processed due to complex mineral composition of the raw materials represented by hard-to-enrich minerals, their close association with barren rock and with each other in the form of fine superficial films of different minerals or peripheral films, and low content of nonferrous metals, which predetermines their significant loss with wastes. Involvement into processing of hard to enrich oxidized zinc-lead bearing ores is possible by combining the process of preliminary sulfidization of oxidized compounds with elemental sulfur or pyrite with subsequent magnetic and flotation enrichment of products of sulfidization. The investigation has provided proof of the possibility of obtaining hydrophobic zinc and lead sulfides as the result of sulfidization. The hydrophoby of pyrite dissociation products decreases in the process of sulfidization with simultaneous increase of magnetic permeability of pyrrhotite formed during pyrite decomposition. This predetermines the technological flow sheet of processing of hard to enrich oxidized finely disseminated lead-zinc bearing ores.
机译:目前,由于难以丰富的矿物质代表的原料的复杂矿物成分,它们与贫瘠岩石的密切相关,并且彼此以不同矿物的细微浅表薄膜的形式彼此之间的矿物质组成,因此不会加工大量的矿石。外周膜,有色薄膜,有色金属的低含量,预先确定其浪费的显着损失。通过将具有元素硫或黄铁矿的氧化化合物的初步硫化方法与随后的磁性和浮动富集的磺化产品组合,可以参与氧化氧化锌轴承矿石的加工方法是可以进行氧化氧化锌轴承矿石。该研究提供了作为硫化的结果获得疏水性锌和铅硫化物的可能性证据。硫酸盐离解产物的疏水性降低了硫化物分解期间吡咯岩磁性渗透率同时增加的硫化物。这预先确定了难以富含氧化的细化铅锌轴承矿石的加工技术流程图。

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