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首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Hydrothermal decomposition of industrial jarosite in alkaline media: The rate determining step of the process kinetics
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Hydrothermal decomposition of industrial jarosite in alkaline media: The rate determining step of the process kinetics

机译:工业黄钾铁矾在碱性介质中的水热分解:过程动力学的速率确定步骤

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This work examines the role of NaOH and Ca(OH)2 on the hydrothermal decomposition of industrial jarosite deposited by a Mexican company in a tailings dam. The industrial jarosite is mainly composed by natrojarosite and contains 150 g Ag/t, showing a narrow particle size distribution, as revealed by XRD, fire assay, SEM-EDS and laser-diffraction analysis. The effect of the pH, when using NaOH or Ca(OH)2 as alkalinizing agent was studied by carrying out decomposition experiments at different pH values and 60°C in a homogeneous size particle system (pH = 8, 9, 10 and 11) and in a heterogeneous size particle system (pH = 11). Also, the kinetic study of the process and the controlling step of the decomposition reaction when NaOH and Ca(OH)2 are used was determined by fitting the data obtained to the shrinking core model for spherical particles of constant size. These results, supported by chemical (EDS), morphological (SEM) and mapping of elements (EDS) analysis of a partially reacted jarosite particle allowed to conclude that when NaOH is used, the process kinetics is controlled by the chemical reaction and when Ca(OH)2 is used, the rate determining step is changed to a diffusion control through a layer of solid products.
机译:这项工作研究了NaOH和Ca(OH)2在一家墨西哥公司在尾矿坝中沉积的工业黄铁矿水热分解中的作用。工业黄钾铁矾主要由菱铁矾组成,每吨含150 g Ag,显示出窄的粒度分布,通过X射线衍射,火焰分析,SEM-EDS和激光衍射分析可知。通过在均一粒径的颗粒体系(pH = 8、9、10和11)中于不同pH值和60°C下进行分解实验,研究了使用NaOH或Ca(OH)2作为碱化剂时pH的影响。并在大小不一的颗粒系统中(pH = 11)。此外,通过将获得的数据拟合到恒定尺寸的球形颗粒的收缩核模型中,可以确定使用NaOH和Ca(OH)2时分解反应过程和控制步骤的动力学研究。这些结果得到部分反应的黄钾铁矾颗粒的化学(EDS),形态学(SEM)和元素映射(EDS)分析的支持,可以得出以下结论:使用NaOH时,过程动力学受化学反应控制,并且当Ca(使用OH)2,将速率确定步骤改变为通过固体产物层的扩散控制。

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