首页> 外文会议>EPD congress 2004 >MECHANISM AND TECHNOLOGY OF SEGREGATION ROASTING OF OXIDE NICKEL ORES WITH SUBSEQUENT CALCINE FLOTATION AND CONCENTRATE LEACHING
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MECHANISM AND TECHNOLOGY OF SEGREGATION ROASTING OF OXIDE NICKEL ORES WITH SUBSEQUENT CALCINE FLOTATION AND CONCENTRATE LEACHING

机译:继碱钙浮选精矿浸出氧化镍矿的分选焙烧机理与技术

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Results of thermodynamic computations have been presented for reactions occurring in the process of segregation roasting of oxide nickel ores to describe more accurately the mechanism of the process. Under conditions of laboratory-scale roasting in combination with close-circuit flotation flowsheets and magnetic separation, a recovery of 80-82% of nickel into 8 to 10% Ni concentrate and a recovery of up to 66% of cobalt was achieved. Process conditions have been selected for processing of both high-iron and high-magnesium ores. The feasibility of conversion of 94-98% of nickel and cobalt into solution by oxidizing pressure leaching with sulfuric acid has been demonstrated. It has been substantiated that it is reasonable to introduce double-stage segregation roasting.
机译:对于氧化物镍矿石的偏析焙烧过程中发生的反应,已经给出了热力学计算的结果,以更准确地描述该过程的机理。在实验室规模的焙烧与闭路浮选流程和磁选相结合的条件下,可将80-82%的镍回收到8%至10%的镍精矿中,并回收高达66%的钴。选择了用于加工高铁和高镁矿石的工艺条件。已经证明了通过用硫酸氧化加压浸出将94-98%的镍和钴转化为溶液的可行性。已经证实引入双阶段隔离焙烧是合理的。

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