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Isothermal reduction kinetics and mineral phase of chromium-bearing vanadium-titanium sinter reduced with CO gas at 873-1273 K

机译:在873-1273 k下,含铬含铬钒钛烧结的等温降低动力学和矿物相

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摘要

Reduction of chromium-bearing vanadium-titanium sinter (CVTS) was studied under simulated conditions of a blast furnace, and thermodynamics and kinetics were theoretically analyzed. Reduction kinetics of CVTS at different temperatures was evaluated using a shrinking unreacted core model. The microstructure, mineral phase, and variation of the sinter during reduction were observed by X-ray diffraction, scanning electron microscopy, and metallographic microscopy. Results indicate that porosity of CVTS increased with temperature. Meanwhile, the reduction degree of the sinter improved with the reduction rate. Reduction of the sinter was controlled by a chemical reaction at the initial stage and inner diffusion at the final stage. Activation energies measured 29.22-99.69 kJ/mol. Phase transformations in CVTS reduction are as follows: Fe2O3 - Fe3O4 - FeO - Fe; Fe2TiO5 - Fe2TiO4 - FeTiO3; FeO center dot V2O3 - V2O3; FeO center dot Cr2O3 - Cr2O3.
机译:在高炉的模拟条件下研究了含铬钒 - 钛烧结(CVT)的减少,理论上分析了热力学和动力学。 使用收缩未反应的核心模型评估CVTS在不同温度下的减少动力学。 通过X射线衍射,扫描电子显微镜和金相显微镜观察还原过程中的微观结构,矿物相和烧结过程的变化。 结果表明CVT的孔隙率随温度而增加。 同时,烧结率的缩小程度随着还原率改善。 通过在最终阶段的初始阶段和内扩散处的化学反应控制烧结的还原。 测量的激活能量29.22-99.69 kJ / mol。 CVTS减少中的相变如下:Fe2O3 - & Fe3O4 - & feo - & FE; fe2tio5 - & fe2tio4 - & Fetio3; Feo Center Dot V2O3 - & V2O3; FEO中心点CR2O3 - & CR2O3。

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