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Hot metal dephosphorisation by low basicity slag in the early stage of converting process

机译:通过低碱度渣在转换过程中的低碱度渣的热金属脱磷酸化

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摘要

The suitable process parameters and mechanism on dephosphorisation by low basicity slag become the key problem of the return-slag and double-slag operation (RDO) in the early stage of converting steelmaking process. The experimental results of 80 t converter steelmaking show that the dephosphorisation ratio of hot metal is high in condition that the slag basicity is 1.2-2 and the temperature of slag tapping is 1600-1700 K in the early stage. The observations on the mineralogical phase of the dephosphorisation slag suggest that C2S precipitation accompanying with phosphorous enrichment in the slag is key to increase phosphorus distribution ratio. The results of X-ray photoelectron spectroscopy show that the dephosphorisation slag contains C2S and C3P, which suggest that Ca2+ reacts with and originated from the oxidation of hot metal to form C2S and C3P in the early stage. Furthermore, C2S and C3P could form a solid solution of C2S + C3P (R) and R + C2S in low basicity slag.
机译:低碱度渣脱磷的合适工艺参数和机制成为转换炼钢过程的早期返回渣和双渣操作(RDO)的关键问题。 80 T转换炼钢的实验结果表明,热金属的脱磷比率在炉渣碱度为1.2-2的条件下,炉渣沥青的温度在早期阶段为1600-1700 k。 脱磷渣矿物学阶段的观察结果表明C2S沉淀在炉渣中伴随磷富集是增加磷分布比的关键。 X射线光电子能谱结果表明,脱磷渣含有C2s和C3p,表明Ca2 +与热金属的氧化反应,在早期形成C2s和C3p。 此外,C2S和C3P可以在低碱度渣中形成C 2 S + C3P(R)和R + C2s的固溶体。

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