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A Further Evaluation of the Coupling Relationship between Dephosphorization and Desulfurization Abilities or Potentials for CaO-based Slags: Influence of Slag Chemical Composition

机译:CaO基炉渣的脱磷与脱硫能力或电位之间的耦合关系的进一步评估:炉渣化学成分的影响

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The coupling relationships between dephosphorization and desulfurization abilities or potentials for CaO–FeO–Fe 2 O 3 –Al 2 O 3 –P 2 O 5 slags over a large variation range of slag oxidization ability during the secondary refining process of molten steel have been proposed by the present authors as log L P + 5 log L S or log C PO 4 3 ? + log C S 2 ? in the reducing zone and as log L P + log L S ? 5 log N Fe t O or log C PO 4 3 ? + log C S 2 ? ? log N FeO in the oxidizing zone based on the ion and molecule coexistence theory (IMCT). In order to further verify the validation and feasibility of the proposed coupling relationships, the effects of chemical composition of the CaO-based slags are provided. The chemical composition of slags was described by three group parameters including reaction abilities of components represented by the mass action concentrations N i , two kinds of slag basicity as simplified complex basicity ( % ? CaO ) / [ ( % ? P 2 O 5 ) + ( % ? Al 2 O 3 ) ] and optical basicity Λ , and the comprehensive effect of iron oxides Fe t O and basic oxide CaO. Comparing with the strong effects of chemical composition of the CaO-based slags on dephosphorization and desulfurization abilities or potentials, the proposed coupling relationships have been confirmed to not only be independent of slag oxidization ability as expected but also irrelevant to the aforementioned three groups of parameters for representing the chemical composition of the CaO-based slags. Increasing temperature from 1811 to 1927 K (1538 to 1654 °C) can result in a decreasing tendency of the proposed coupling relationships. In terms of the proposed coupling relationships, chemical composition of slags or fluxes with assigned dephosphorization ability or potential can be theoretically designed or optimized from its desulfurization ability or potential, and vice versa. Considering the large difference of magnitude between phosphate capacity C PO 4 3 ? and sulfide capacity C S 2 ? , the proposed coupling relationships between dephosphorization and desulfurization abilities for CaO-based slags are recommended to design or optimize chemical composition of slags.
机译:提出了在钢水二次精炼过程中,在较大的渣氧化能力变化范围内,CaO–FeO–Fe 2 O 3 –Al 2 O 3 –P 2 O 5渣的脱磷能力与脱硫能力之间的耦合关系。由当前作者以log LP + 5 log LS或log C PO 4 3表示? + log C S 2?在还原区中,并作为log L P + log L S? 5 log N Fe t O或log C PO 4 3? + log C S 2? ?根据离子和分子共存理论(IMCT)在氧化区中记录N FeO。为了进一步验证所提出的耦合关系的有效性和可行性,提供了基于CaO的炉渣化学成分的影响。炉渣的化学组成由三组参数来描述,包括以质量作用浓度N i表示的组分的反应能力,两种炉渣碱度作为简化的复杂碱度(%CaO)/ [(%P 2 O 5)+ (%≥Al2 O 3)]和光学碱度Λ,以及铁氧化物Fe t O和碱性氧化物CaO的综合作用。与基于CaO的炉渣的化学成分对脱磷和脱硫能力或潜力的强大影响相比,已证实所提出的耦合关系不仅与预期的炉渣氧化能力无关,而且与上述三组参数无关用于表示CaO基炉渣的化学成分。将温度从1811升高到1927 K(1538到1654°C)会导致所提出的耦合关系降低。根据所提出的耦合关系,可以根据脱硫能力或电势从理论上设计或优化具有指定的脱磷能力或电势的炉渣或熔剂的化学成分,反之亦然。考虑到磷酸盐容量C PO 4 3≥之间的大小差异很大。和硫化物容量CS 2?因此,建议对CaO基炉渣的脱磷和脱硫能力之间建议的耦合关系来设计或优化炉渣的化学成分。

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