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Phase Equilibrium for the CaO–SiO2–FeO–5mass%P2O5–5mass%Al2O3 System for Dephosphorization of Hot Metal Pretreatment

机译:CaO–SiO 2 –FeO-5mass%P 2 O 5 –5mass%Al 2 的相平衡O 3 系统进行铁水预处理脱磷

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Recently, after the restriction of the use of CaF_(2), dephosphorization process often generates large amount of slag, due to the neglect of refining functions of solid phases. Consequently, this brings environmental issues and influences refining. In order to improve the utilization efficiency of solid CaO and its compounds in the dephosphorization slag, multiphase flux refining has been proposed by considering the enrichment of phosphorus within the solid phases. As to provide theoretical fundamentals for both understanding on the reaction mechanism of phosphorus and practical slag control, phase relationship for the CaO–SiO_(2)–FeO–5mass%P_(2)O_(5)–5mass%Al_(2)O_(3) system has been studied based on chemical equilibration technique with oxygen partial pressure of 10~(?10) atm at 1673 K. In current work, the liquidus saturated with P_(2)O_(5)-rich solid solution has been firstly deduced on the CaO–SiO_(2)–FeO ternary system, and the discussions on the relationship between solid solution and liquid phase has been proceeded. It has been found that the existence of Al_(2)O_(3) enlarges the liquid phase area, but does not affect the composition of solid solution. On the other hand, the equilibrium solid phase has been confirmed as 2CaO·SiO_(2)–3CaO·P_(2)O_(5) solid solution, while the ratio between both varies along with liquidus. As expected, the large equilibrium partition ratio of phosphorus between solid solution and liquid slag has also been found and discussed.
机译:近来,在限制使用CaF_(2)之后,由于忽略了固相的提纯功能,脱磷过程经常产生大量的炉渣。因此,这带来了环境问题并影响了提炼。为了提高固态钙及其化合物在脱磷炉渣中的利用效率,已经提出了考虑固相中磷的富集的多相熔剂精炼方法。为了为理解磷的反应机理和控制炉渣提供理论基础,CaO-SiO_(2)-FeO-5mass%P_(2)O_(5)-5mass%Al_(2)O_的相关系(3)基于化学平衡技术,在1673 K的氧分压为10〜(?10)atm的条件下研究了系统。在当前工作中,富含P_(2)O_(5)的固溶体饱和了液相首先推导了CaO-SiO_(2)-FeO三元体系,并进行了固溶与液相关系的讨论。已经发现Al_(2)O_(3)的存在扩大了液相面积,但是不影响固溶体的组成。另一方面,平衡固相已被确认为2CaO·SiO_(2)–3CaO·P_(2)O_(5)固溶体,两者之比随液相线而变化。如所期望的,还已经发现并讨论了磷在固溶体和液态炉渣之间的大平衡分配比。

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