Leaching of Ibute-Nze kaolin iron-oxide impurity with oxalic acid process optimization of dissolution conditions using response surface methodology

D. Ochi, Hauwau Mahmud, Marcellinus O. Ani, S. Aliu
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引用次数: 1

Abstract

The goal of this research was to remove iron oxide from Ibute-Nze kaolin by dissolving the clay mineral in an aqueous oxalic acid solution and optimizing the process. The chemical composition of the raw and modified clay was determined using x-ray fluorescence, and the morphology of the solid sample was determined using a scanning electron microscope. The best conditions for the oxalic acid leaching of iron-oxides impurity from Ibute-Nze kaolin were determined using response surface methodology based on Box-Behnken design. The studies were carried out within the following process parameter ranges: 40–90 leaching temperature; 0.075-0.355mm particle size; 1–6 mol/dm3 acid concentration; 0.02–0.12 g/cm3 kaolin sample to acid ratio and 30-240 min contact time. The characterization revealed that Ibute-Nze clay is kaolinitic in nature and calcination at 750 opens more pores for its leaching. According to the analysis of variance, a second-order polynomial regression equation provided the best fitting for the experimental data. The predicted and experimental response values were shown to be correlated (R2 = 0.9276) in the experimental runs. The following were found to be the best conditions for the leaching process variables: 83.2051 leaching temperature, 0.0827mm particle size, 3.6179mol/dm3 acid concentration; 0.0287g/cm3 kaolin to acid ratio and 217.932min reaction time. The chemical leaching process was 92.6035 per cent under these conditions, which made the clay good for industrial applications.
草酸浸出Ibute-Nze高岭土氧化铁杂质的工艺过程,利用响应面法优化溶出条件
本研究的目的是通过将粘土矿物溶解在草酸水溶液中并优化工艺来去除Ibute-Nze高岭土中的氧化铁。用x射线荧光测定了原料和改性粘土的化学成分,并用扫描电子显微镜测定了固体样品的形态。采用基于Box-Behnken设计的响应面法确定了从Ibute-Nze高岭土中草酸浸出氧化铁杂质的最佳条件。研究在以下工艺参数范围内进行:40-90浸出温度;0.075-0.355mm粒度;1 ~ 6 mol/dm3酸浓度;0.02-0.12 g/cm3高岭土样品与酸比,30-240 min接触时间。表征结果表明,Ibute-Nze粘土为高岭石性质,750℃煅烧可为其浸出打开更多孔隙。根据方差分析,二阶多项式回归方程对实验数据拟合最好。实验结果表明,预测响应值与实验响应值呈正相关(R2 = 0.9276)。优选的浸出工艺变量为:浸出温度83.2051,粒度0.0827mm,酸浓度3.6179mol/dm3;高岭土与酸比0.0287g/cm3,反应时间217.932min。在此条件下,化学浸出率为92.6035%,具有较好的工业应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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