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采用响应面法优化钒铬还原渣的高效氧化-堿浸出工艺。

Highly efficient oxidative-alkaline-leaching process of vanadium-chromium reducing residue and parameters optimization by response surface methodology.

机构信息

Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Chongqing, People's Republic of China.

出版信息

Environ Technol. 2022 Jun;43(14):2167-2176. doi: 10.1080/09593330.2020.1869317. Epub 2020 Dec 30.

DOI:10.1080/09593330.2020.1869317
PMID:33356978
Abstract

Vanadium-chromium reducing residue was not only a typical solid waste in the steel industry but also a valuable secondary source for recovery of vanadium and chromium. A highly efficient oxidative-alkaline-leaching technology with NaSO was applied in this work. The effect of experimental factors including m(NaOH)/m(Residue), liquid-to-solid ratio, reaction temperature, m(NaSO)/m(Residue) and reaction time, on the leaching process were investigated. It was showed that 96.3% vanadium was leached out under selected conditions: m(NaOH)/m(Residue) = 0.30, liquid-to-solid ratio of 5 mL/g, reaction time of 60 min, m(NaSO)/m(Residue) = 0.50, reaction temperature of 90°C and stirring rate at 500 rpm, respectively. The leaching kinetics behaviour analysis demonstrated that the controlling step of the reaction was the diffusion of residue through the liquid film, and the Ea for vanadium leaching out was calculated to 15.57 kJ/mol. Response surface methodology was applied to analyze the interaction of the main conditions and the results showed that the influence of experimental factors on the leaching efficiency of vanadium followed the order: m(NaOH)/m(Residue) (B) > m(NaSO)/m(Residue) (C) > reaction temperature (E) > reaction time (D) > liquid-to-solid ratio (A).

摘要

钒铬还原渣不仅是钢铁行业的典型固体废物,也是回收钒和铬的有价值的二次资源。本工作采用 NaSO 进行了高效的氧化-堿性浸出技术。研究了实验因素,包括 m(NaOH)/m(残渣)、液固比、反应温度、m(NaSO)/m(残渣)和反应时间对浸出过程的影响。结果表明,在选定的条件下,96.3%的钒被浸出:m(NaOH)/m(残渣) = 0.30,液固比为 5 mL/g,反应时间为 60 min,m(NaSO)/m(残渣) = 0.50,反应温度为 90°C,搅拌速度为 500 rpm。浸出动力学行为分析表明,反应的控制步骤是残渣通过液膜的扩散,计算出钒浸出的 Ea 为 15.57 kJ/mol。应用响应面法分析了主要条件的相互作用,结果表明,实验因素对钒浸出效率的影响顺序为:m(NaOH)/m(残渣) (B) > m(NaSO)/m(残渣) (C) > 反应温度 (E) > 反应时间 (D) > 液固比 (A)。

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