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Experimental study of rotating dry slag granulation unit: Operating regimes, particle size analysis and scale up

机译:旋转式干渣造粒装置的实验研究:运行方式,粒度分析和放大

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摘要

Blast furnace slag is a high-value by-product of the iron and steel industry. It leaves the plant at a very high temperature and possesses a large quantity of high-grade energy. One of the promising methods to extract this energy is dry slag granulation. In this study, the effectiveness of dry slag granulation was studied using a mixture of rosin and paraffin wax as an analogue for blast furnace slag. The effects of various parameters such as rotational speed of the disc, diameter of the disc and flow rate of the molten liquid have been studied. Different ranges of operating conditions in terms of non-dimensional numbers for fiber formation and particle formation were determined. This helps us determine the operating conditions under which particle formation is ensured. The study shows that with an increase in the rotational speed or disc diameter the average particle diameter decreases whereas with an increase in the flow rate the average particle diameter increases. The design of a granulation unit for a commercial plant utilizing the data from lab scale experiments is discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:高炉矿渣是钢铁行业的高价值副产品。它离开植物的温度很高,并且拥有大量的高级能源。提取这种能量的有前途的方法之一是干渣造粒。在这项研究中,使用松香和石蜡的混合物作为高炉矿渣的类似物,研究了干渣造粒的有效性。研究了各种参数的影响,例如圆盘的转速,圆盘的直径和熔融液体的流速。根据纤维形成和颗粒形成的无量纲数,确定了操作条件的不同范围。这有助于我们确定确保颗粒形成的运行条件。研究表明,随着转速或圆盘直径的增加,平均粒径会减小,而随着流量的增加,平均粒径会增大。讨论了利用实验室规模实验数据为商业工厂设计的制粒装置。 (C)2016 Elsevier Ltd.保留所有权利。

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