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Variation in hot metal and slag composition during tapping of blast furnace

机译:高炉出铁过程中铁水和炉渣成分的变化

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To determine the quality of the hot metal and the thermal conditions inside the blast furnace, the composition of the hot metal and slag must be known. Obtaining representative metal and slag samples during tapping is thus highly important to blast furnace operation. The study covered in the present report focused on hot metal and slag composition variation during tapping from a commercial blast furnace. From the results, optimal sampling time points for obtaining elemental concentrations that can be taken as representative for the whole tapping sequence were identified. It was furthermore concluded that the reliability of hot metal composition data is significantly improved by averaging elemental concentrations determined from two samples, each taken at a particular time point. One sampling, however, was found to be adequate for slag. Results from the study also showed a fairly strong correlation between amounts of silicon and carbon, sulphur and carbon, and silicon and sulphur in the hot metal, while a weaker correlation between hot metal temperature and each of these elements was observed.
机译:为了确定高炉内铁水的质量和热条件,必须知道铁水和炉渣的成分。因此,在出钢过程中获得代表性的金属和炉渣样品对高炉操作非常重要。本报告中涉及的研究集中于从商业高炉出钢期间的铁水和炉渣成分变化。从结果中,确定了获得元素浓度的最佳采样时间点,可以将其作为整个攻丝序列的代表。此外得出的结论是,通过平均两个样品(每个样品在特定时间点采集)确定的元素浓度,可以大大提高铁水成分数据的可靠性。然而,发现一个取样足以容纳炉渣。研究结果还显示,铁水中硅和碳,硫和碳以及硅和硫的量之间存在相当强的相关性,而铁水温度与这些元素中的每一种之间的相关性则较弱。

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