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首页> 外文期刊>Indian journal of chemical technology >Kinetics of aluminium leaching from coal fly ash by sulphuric acid
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Kinetics of aluminium leaching from coal fly ash by sulphuric acid

机译:硫酸煤粉煤灰浸出的动力学

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摘要

The extraction of aluminium from coal fly ash (CFA) is an important industrial process and has produced commercial interest. However, the leaching kinetics of aluminium has received little attention. This work, therefore, addresses the leaching kinetics of aluminium from fly ash in sulphuric acid. A shrinking core model has been used to investigate aluminium extraction kinetics and its results are presented. The effects of leaching time, solid to liquid ratios and reaction temperature on aluminium extraction rate are studied. The process optimization reveals that the extraction rate can reach up to 68.68% when the fly ash reacts with sulphuric acid at a 1:3 solid to liquid ratios of fly ash / H 2 SO 4 (100 g / 300 mL) at 220°C for 4 hour reaction time. The sulphuric acid concentration was maintained constant at 18 M. The leaching rate increases with increasing temperature and solid to liquid ratios. The leaching kinetics indicates that chemical reaction at the surface of the particles is the rate-controlling process during the reaction. The shrinking core model enabled the determination of activation energy of about 60.85 kJ/mol, which is likely to be a consequence of the chemical reaction at the surface of the particles.
机译:从煤粉煤灰(CFA)铝的提取是一个重要的工业过程,并产生了商业利益。然而,铝的浸出动力学似乎很少受到关注。因此,这项工作通过硫酸中的粉煤灰来解决铝的浸出动力学。已经使用收缩核心模型来研究铝提取动力学及其结果。研究了浸出时间,固体对液体比率和反应温度对铝提取率的影响。该方法优化显示,当粉煤灰在220℃下与氨基/ H 2 SO 4(100g / 300ml)的液体比在1:3固体下与硫酸反应时,提取率可达68.68%。 4小时反应时间。在18米处保持硫酸浓度恒定。随着温度的增加和固体液体比率,浸出速率增加。浸出动力学表明颗粒表面的化学反应是反应过程中的速率控制过程。收缩芯模型使得确定约60.85kJ / mol的激活能量,这可能是颗粒表面的化学反应的结果。

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