首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Volatilization characteristics of high-lead slag and its influence on measurement of physicochemical properties at high temperature
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Volatilization characteristics of high-lead slag and its influence on measurement of physicochemical properties at high temperature

机译:高铅渣的挥发特征及其对高温物理化学性质测量的影响

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Volatilization causes measurement deviations of physicochemical properties for volatiles-containing slag at high temperature. Hence, investigating the degree of volatilization and identifying the volatilization mechanism and deviation rules are crucial to improve the accuracy of the measured properties. Here, PbO-FeOx-CaO-SiO2-ZnO slag system was selected as a research subject. The volatile characteristics and non-isothermal intrinsic kinetic models of high-temperature volatilization for lead slag were established by thermogravimetric analysis (TGA), and the volatilization mechanism and deviation in the measured properties were determined by analyzing the phase and chemical composition of the residues. In addition, experimental measurements of the melting temperature/ viscosity were compared with theoretically calculated results. The volatilization of PbO decreased the lead-containing phase, but increased the amount of precipitated spinel phase, which led to the deviation in the measured physicochemical properties of the studied slags. The volatilization kinetics for PbO in the slags followed three-dimensional diffusion. The diffusion of PbO gas from PbO-FeOx-CaO-SiO2-ZnO slag was the restrictive step of volatile reaction, and mechanism function was g(α)=1-(1-α)1?3. Moreover, during the slag properties measurement at high temperatures, a high heating rate and protective gas can be used to reduce volatilization of lead slag and avoid consequent properties deviation.
机译:挥发导致高温下含挥发物的物理化学性质的测量偏差。因此,调查挥发程度和识别挥发机制和偏差规则对于提高测量性能的准确性至关重要。这里,选择PbO-Feox-CaO-SiO2-ZnO渣系统作为研究主题。通过热重分析(TGA)建立了高温挥发的挥发性特性和非等温内在动力学模型,并通过分析残留物的相和化学成分来确定测量性质的挥发机理和偏差。另外,将熔融温度/粘度的实验测量与理论计算结果进行比较。 PBO的挥发降低了含铅相,但增加了沉淀的尖晶石相的量,这导致了所研究的炉渣的测量物理化学性质的偏差。渣中PBO的挥发动力学跟随三维扩散。 PbO气体来自PbO-Feox-CaO-SiO 2-ZnO渣的扩散是挥发反应的限制性步骤,机理函数是G(α)= 1-(1-α)1→3。此外,在高温下的炉渣性能期间,高加热速率和保护气体可用于减少铅渣的挥发并避免随后的性能偏差。

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