Separation and extraction of a typical high-phosphorus hematite at the non-melt state
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摘要: 對湖北恩施的典型高磷赤鐵礦樣品進行了非熔態分離提取實驗研究.礦樣基礎特性研究表明,該礦為典型鮞狀高磷赤鐵礦,礦中鐵元素與磷元素之間并未處于化學結合狀態.據此采用高速氣流磨技術,將其磨至平均粒度為2μm的超細粒度,觀察發現鐵元素與磷元素在各個超細礦粉顆粒中的含量分布不均勻,Fe、P化合物有所解離.進而采用流態化技術進行氣力分離,設計制造了流態化裝置,對超細礦粉的流態化特征進行研究,結果表明超細鐵礦粉的流態化特征與常規細粉不同.基于富鐵物料與富磷物料的密度差異,設計制造了氣力分離裝置,對超細高磷赤鐵礦粉進行氣力分離實驗,初步實現了鐵元素和磷元素的分離.Abstract: Experiments were done to study the physical dissociation of phosphorus and iron elements in typical high-phosphorus hematite ore samples from the Enshi area of Hubei Province, China. The basic characteristics analyses of the ore samples show the ore is a typical oolitic hematite in which iron and phosphorus elements are not in a chemical combination state, indicating that by the high-speed jet mill technology, the high-phosphorus hematite is finely ground to an average particle size of 2 p,m. It is found that the contents of iron and phosphorus are not evenly distributed in the ultra-fine powders, meaning that the effective dissociation of iron and phosphor-us elements is achieved in the ore. Then a fluidization device for pneumatic separation was designed and manufactured to investigate the fluidization characteristics of the uhra-fine powders. The result shows that the ultra-fine powders have different fluidization characteris-tics from the conventional particles, and this provides basic parameters for the pneumatic separation of iron and phosphorus. Based on the different densities of Fe-rich or P-rich materials, an experimental facility of pneumatic separation can be designed and manufactured, and preliminary make iron and phosphorus separated from the ultra-fine high-phosphorus hematite.
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Key words:
- hematite /
- phosphorus /
- particle size /
- fluidization /
- pneumatics /
- separation
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