首页> 外文会议>Materials Science amp; Technology 2003 Conference; Nov 9-12, 2003; Chicago, Illinois, USA >Theoretical and Practical Aspects of Direct Recycling of Slags in E.A.F
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Theoretical and Practical Aspects of Direct Recycling of Slags in E.A.F

机译:电炉渣直接回收的理论和实践方面

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In small steelmaking shops, in foundries and forging plants, there are not too many option to recycle the basic slags, which are not suitable for many purposes of recycling, because of their low chemical and structural stability. A solution of an adequate recycling is a direct recycling in EAF. Several quality requirements, physico-chemical properties and proportions of slags must be analysed. The progress in this fields permites to establish an adequate proportion of recycled slag, based on enough exact computation of the related property. For oxydizing slag, obtained during melting and in the first part of decarburization operation, the problem of phosphoms contents can be analysed using the phosphate capacity (C_(PO_4~(3-)). For reducing periods, during deoxidization operation, desulphurization also occures and the problem of the sulphur contents can be analysed using the sulphur and sulphide capacities (C_s/C'_s) Between this two complex thermodynamic indicators of the slags, a direct relation is established, using thermodynamic aspects, resulting from the equilibrium constants for dephosphorization and desulphurization process and also, using the optical basicity of slags, computable from the chemical analysis of the slags. On this basis starting from the steel quality requirements, adequate strategies can be established in order to obtain high rates of recycling (between 50-80%) of steelmaking slags. Important cost savings are obtained through this procedure, based on the correct amounts of the fresh lime, iron ore and fluidizers.
机译:在小型炼钢厂,铸造厂和锻造厂中,没有太多的选择来回收基本炉渣,这些炉渣由于其化学和结构稳定性差而不适用于许多回收目的。充分回收的解决方案是在电炉中直接回收。必须分析几个质量要求,理化性质和炉渣的比例。基于相关特性的足够精确的计算,该领域的进展允​​许建立足够比例的再生炉渣。对于在熔化过程中和脱碳操作的第一部分中获得的氧化渣,可使用磷酸盐容量(C_(PO_4〜(3-))分析磷含量的问题;在还原期,脱氧操作中也会发生脱硫并且可以使用硫和硫化物容量(C_s / C'_s)分析硫含量的问题。在这两个炉渣的复杂热力学指标之间,利用热力学方面,建立了由脱磷平衡常数得出的直接关系。脱硫过程,并利用炉渣的光学碱度,可通过炉渣的化学分析计算得出。在此基础上,从钢的质量要求出发,可以制定适当的策略以获得高回收率(50-80之间)根据正确的新鲜石灰,铁矿石的量,通过此程序可节省大量成本和流化器。

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