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首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >Experimental determination and thermodynamic optimization of the CuCl-ZnCl2, ZnCl2-FeCl3, CuCl-FeCl3, CuCl-CuCl2, FeCl2-FeCl3, FeCl2-CuCl2 and CuCl-PbCl2 phase equilibria
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Experimental determination and thermodynamic optimization of the CuCl-ZnCl2, ZnCl2-FeCl3, CuCl-FeCl3, CuCl-CuCl2, FeCl2-FeCl3, FeCl2-CuCl2 and CuCl-PbCl2 phase equilibria

机译:CuCl-ZnCl2,ZnCl2-FECL3,CuCl-FECL3,CuCl-CuCl2,FECL2-FECL3,FECL2-CUCl2和CuCl-PBCl2相平纤维纤维纤维纤维纤维的实验测定和热力学优化

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摘要

In copper flash smelting, flue dust causes corrosion problems in the heat recovery boiler of the gas train due to formation of dust accretions on the boiler walls. Within these, presence of heavy metal chlorides results in formation of molten salt deposits causing rapid corrosion. CuCl-ZnCl2, FeCl3-ZnCl2 and CuCl-FeCl3 systems were studied experimentally by equilibration-quenching, scanning electron microscopy and energy-dispersive X-ray spectroscopy in order to evaluate melting behaviour of these chlorides, typically present in the corrosive dust deposits. In addition, CuCl-PbCl2, CuCl-CuCl2, FeCl2-FeCl3 and CuCl2-FeCl2 phase diagrams were optimized incorporating and evaluating all available phase diagram and thermodynamic data on the systems. The modified quasi-chemical model was used to describe the thermodynamic properties of molten phases and compound energy formalism was used to model the terminal solid solutions. The calculated phase diagrams are presented and compared with experimental observations as well as with all available phase diagram data from existing literature.
机译:在铜闪速熔炼中,由于锅炉壁上形成灰尘积聚,烟灰会导致燃气机组的热回收锅炉出现腐蚀问题。其中,重金属氯化物的存在导致熔盐沉积物的形成,从而导致快速腐蚀。通过平衡淬灭、扫描电子显微镜和能量色散X射线光谱对CuCl-ZnCl2、FeCl3-ZnCl2和CuCl-FeCl3系统进行了实验研究,以评估这些氯化物的熔化行为,这些氯化物通常存在于腐蚀性粉尘沉积物中。此外,结合并评估了系统上所有可用的相图和热力学数据,优化了CuCl-PbCl2、CuCl-CuCl2、FeCl2-FeCl3和CuCl2-FeCl2相图。用改进的准化学模型描述了熔融相的热力学性质,用复合能形式描述了终端固溶体。给出了计算的相图,并与实验观察结果以及现有文献中所有可用的相图数据进行了比较。

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