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首页> 外文期刊>ISIJ international >Enhancement of Quicklime Dissolution in Steelmaking Slags by Utilizing Residual CO2 from Quicklime
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Enhancement of Quicklime Dissolution in Steelmaking Slags by Utilizing Residual CO2 from Quicklime

机译:利用生石灰残留的CO 2 提高炼钢渣中生石灰的溶解

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In steelmaking processes, quicklime is generally used to produce CaO-based slags, and its dissolution rate is important for steel refining. The dissolution rate of quicklime is conventionally measured by the rotating cylinder method using dense and hard lime samples which gives rates that are slower than estimated rates from the actual operation. The authors established a new method to measure the dissolution rate of quicklime by measuring the variation of slag composition and reported that the quicklime used in the actual operation had a much higher dissolving rate than that of completely calcined quicklime. The significant increase of the dissolution rate was caused by gas formation from the quicklime due to the thermal decomposition of residual limestone existing in quicklime. In this study, the dissolution rate of quicklime with the accompanying gas formation is quantitatively investigated by using quicklimes with different CO_(2) contents produced by a rotary kiln process through the direct observation of the dissolution behavior of quicklime particles and the change of the CaO content in the slag. The results revealed that quicklime emits the gas in two steps, and the second occurrence of gas formation effectively enhances the quicklime dissolution. The weight of the CaCO_(3) core differed among particles from the same grade of quicklime, and the corresponding dissolution rates were different as well. The dissolution rates of quicklime during the second foaming, however, were 5–10 times higher than without foaming and were similar regardless of the CO_(2) content in a quicklime particle.
机译:在炼钢过程中,生石灰通常用于生产基于CaO的炉渣,其溶解速率对炼钢非常重要。生石灰的溶解速率通常通过旋转圆筒法使用稠密的和硬质的石灰样品来测量,该速率比实际操作中估计的速率要慢。作者建立了一种通过测量炉渣成分的变化来测量生石灰溶解速率的新方法,并报告说,实际操作中使用的生石灰的溶解速率要比完全煅烧的生石灰的溶解速率高得多。溶解速率的显着提高是由于生石灰中存在的残留石灰石的热分解,由生石灰形成的气体引起的。在这项研究中,通过直接观察生石灰颗粒的溶解行为和CaO的变化,通过使用回转窑工艺产生的具有不同CO_(2)含量的生石灰,定量研究了生石灰的溶解速率以及伴随的气体形成。炉渣中的含量。结果表明,生石灰分两步释放出气体,第二次形成气体有效地增强了生石灰的溶解。不同等级的生石灰中,CaCO_(3)核的重量不同,相应的溶出速率也不同。然而,在第二次发泡过程中,生石灰的溶解速率比未发泡时高5-10倍,并且与生石灰颗粒中的CO_(2)含量无关。

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