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Estimating effect of chrome ore granulometry on sintered pellet properties

机译:铬矿粒度对烧结球团性能的影响评估

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摘要

Chromite ore pellets are used for ferrochrome production by the smelting reduction process. The strength and porosity of the sintered pellets play a significant role in smelting reduction. Granulometry of the chromite fines used for pellet production is an imperative enabler which controls the pellet strength and porosity by packing of particles and formation of bonds due to melting of gangues at high temperature sintering. The effect of chromite ore granulometry and sintering process parameters was evaluated to improve the metallurgical performance of pellets in a submerged arc furnace. The drop test, compressive strength and porosity of sintered pellet samples from plant and laboratory tests were evaluated. Mathematical correlations of the pellet properties (strength and porosity), ore granulometry and sintering parameters were determined using Statistica (ver7), statistical software package. It was found that ore granulometry, i.e. particle size, plays a vital role in the pelletisation process by controlling the number of contact points for bond formation and due to different liberation and smelting reduction characteristics of gangue minerals. It was concluded that for Sukinda chromite ores, required pellet properties can be achieved by maximising the 74-37 mu m fraction of chromite fines in the charge and sintering at 1000 deg C.
机译:铬铁矿球团通过熔炼还原工艺用于生产铬铁。烧结颗粒的强度和孔隙率在熔炼还原中起着重要作用。用于粒料生产的亚铬酸盐细粉的粒度测定是势在必行的促成因素,其通过在高温烧结时由于脉石的熔化而堆积颗粒和形成粘结来控制粒料强度和孔隙率。评价了铬铁矿矿石粒度和烧结工艺参数的影响,以改善埋弧炉中球团的冶金性能。评价了来自工厂和实验室测试的烧结颗粒样品的跌落试验,抗压强度和孔隙率。使用统计软件包Statistica(ver7)确定球团特性(强度和孔隙率),矿石粒度和烧结参数的数学相关性。已经发现,矿石的粒度,即粒度,通过控制用于形成键的接触点的数量以及由于脉石矿物的不同的释放和熔融还原特性而在造粒过程中起着至关重要的作用。结论是,对于Sukinda铬铁矿矿石,可以通过在装料中最大化74-37μm铬铁矿细粒的比例并在1000℃下烧结来获得所需的丸粒性能。

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