Extracting reaction mechanism analysis of Zn and Si from zinc oxide ore by NaOH roasting method

来源期刊:中南大学学报(英文版)2017年第10期

论文作者:申晓毅 陈兵 顾惠敏 邵鸿媚 翟玉春 马培华

文章页码:2266 - 2274

Key words:zinc oxide ore; NaOH roasting method; reaction process; reaction mechanism; kinetics

Abstract: The orthogonal test was used to optimize the reaction conditions of roasting zinc oxide ore with NaOH aiming to comprehensively utilize zinc oxide ore. The optimized reaction conditions were molar ratio of NaOH to zinc oxide ore 6:1, roasting temperature 450 °C, holding time 150 min. The molar ratio of NaOH to zinc oxide ore was the most predominant factor affecting the extraction ratios of zinc oxide and silica. The mineral phase transformations were investigated by testing the phases of specimens obtained at different temperatures. The process was that silica reacted with molten NaOH to form Na2SiO3 at first, then transformed into Na4SiO4 with temperature rising. ZnCO3 and its decomposing product ZnO reacted with NaOH to form Na2ZnO2. Na2ZnSiO4 was also obtained. The reaction rate was investigated using unreacted shrinking core model. Two models used were chemical reaction at the particle surface and diffusion through the product layer. The results indicated that the reaction rate was combine-controlled by two models. The activation energy and frequency factor were obtained as 24.12 kJ/mol and 0.0682, respectively.

Cite this article as: CHEN Bing, SHEN Xiao-yi, GU Hui-min, SHAO Hong-mei, ZHAI Yu-chun, MA Pei-hua. Extracting reaction mechanism analysis of Zn and Si from zinc oxide ore by NaOH roasting method [J]. Journal of Central South University, 2017, 24(10): 2266–2274. DOI:https://doi.org/10.1007/s11771-017-3637-z.

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