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Thermodynamic optimization of the binary PbO-'Cu2O', 'Cu2O'-SiO2 and ternary PbO-'Cu2O'-SiO2 systems

机译:二元PBO-“CU2O”,“CU2O”-SiO2和三元PBO-“CU2O”系统的热力学优化

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Liquidus phase equilibrium data obtained in the recent study by the authors for the binary PbO-"Cu2O", "Cu2O"-SiO2 and the ternary PbO-"Cu2O"-SiO2 systems in equilibrium with metallic Cu or Pb-Cu alloy (as a part of research program on the characterization of the multicomponent PbO-ZnO-FeO-Fe2O3-"Cu2O"-CaO-SiO2 system), combined with phase equilibrium and thermodynamic data from the literature, have been used to obtain a self-consistent set of parameters of the thermodynamic models for all phases. The modified quasichemical model is used for the liquid slag phase. From these model parameters, the optimized ternary phase diagram is back calculated. Liquidus surface with cristobalite, tridymite and quartz (SiO2), two immiscible liquids, cuprite (Cu2O), lead silicates (PbSiO3, Pb2SiO4, Pb11Si3O17, Pb5SiO7), massicot (PbO) and copper plumbite Cu2PbO2 primary phase fields has been constructed. Available experimental data are described within uncertainties. Oxygen partial pressures and distribution of lead between slag and metal have been calculated.
机译:在近期基二元PBO-“Cu2O”,“Cu 2 O”-SiO 2和三元PBO-“Cu2O”-SiO2系统中获得的液相率相平衡数据在均衡的金属Cu或Pb-Cu合金(如关于多组分PbO-ZnO-FeO-Fe2O3-“Cu2O”-CaO-SiO2系统的表征的研究方案的一部分,结合了来自文献的相平衡和热力学数据,已被用于获得自我一致的一组所有阶段的热力学模型的参数。改性的QuiChemical Model用于液体渣阶段。从这些模型参数来看,返回优化的三元相位图。采用Cristobalite,Tridymite和石英(SiO 2),两个不混溶的液体,铜矿(Cu 2 O),铅硅酸盐(PBSIO3,PB2SIO4,PB11SI3O17,PB5SIO7),Massicot(PBO)和铜铅柱Cu2PBO2初级相域。可用的实验数据在不确定性中描述。已经计算了氧气部分压力和炉渣和金属之间的铅分布。

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