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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Comparative Kinetics of Iron Ore Dissolution in Aqueous HCl-HNO3 System
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Comparative Kinetics of Iron Ore Dissolution in Aqueous HCl-HNO3 System

机译:HCl-HNO3水溶液中铁矿石溶解动力学的比较动力学

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The dissolution kinetics of the dissolution of iron ore in aqueous HCl/HNO3solution was studied. The elemental composition of the ore was carried out using the inductively coupled plasma-optical emission spectrophotometer (ICP-OES). The result showed that the iron ore contain; Fe (62.1%), O (21.7%), Cu (11.1%), Mg (2.39%), Na (1.51%), Mn (1.47%), K (0.78%), Ca (0.58%) and Zn (0.01%). It was determined that the dissolution rate increased with increased solution concentration, temperature, time and decreased particle size of the ore. The optimum conditions for effective dissolution of 88% of the iron ore were found to be 8 Mof the solution, 353 K, 100 min and ore particle size of less than 75 μm. The kinetic evaluation of the dissolution process was studied using three different shrinking core models (SCM); Film diffusion: kft =XB; interfacial chemical reaction krt =?1-(1-XB)1/3?and ash/product layer diffusion :??for spherical materials was performed. The results obtained showed that the rate determining step for the dissolution process was the product layer diffusion and therefore, the reaction followed this mechanism. The apparent activation energy (Ea) and the order of reaction were found to be 20.48 kJ/mol and 0.7 respectively.
机译:研究了铁矿石在HCl / HNO3水溶液中的溶解动力学。矿石的元素组成使用电感耦合等离子体发射光谱仪(ICP-OES)进行。结果表明,铁矿石中含有铁。 Fe(62.1%),O(21.7%),Cu(11.1%),Mg(2.39%),Na(1.51%),Mn(1.47%),K(0.78%),Ca (0.58%)和锌(0.01%)。可以确定,溶解速率随溶液浓度,温度,时间和矿石粒度的减小而增加。发现有效溶解88%的铁矿石的最佳条件是溶液为8 Mof,353 K,100分钟且矿石粒度小于75μm。使用三种不同的收缩核模型(SCM)研究了溶解过程的动力学评估。膜扩散:kft = XB;界面化学反应krt =α1-(1-XB)1/3且灰分/产物层扩散:对于球形材料进行。所得结果表明,溶解过程的速率决定步骤是产物层的扩散,因此反应遵循该机理。表观活化能(Ea)和反应顺序分别为20.48 kJ / mol和0.7。

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