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Purification, characterization and application of cherty rocks as sorbent for separation and preconcentration of rare earths

机译:钙质石作为稀土分离富集吸附剂的纯化,表征及应用

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Cherty rocks, most abundant byproduct of mining industry, were used as adsorbent for the extraction of rare earth elements. Purified chert was characterized by various analytical methods (XRD, FX-ED, MEB, FTIR, laser granulometry). XRD patterns showed diffraction peaks of quartz, tridymite, cristobalite and clinoptilolite-Ca phases. SEM micrographs showed granular morphology of studied chert and particle size distribution was lower than 100μm and unimodal. Adsorption behaviors of La(III) and Ce(III) ions on chert were investigated with various chemical methods and ICP-AES. Various experimental parameters were optimized such as contact time, initial rare earth concentration, temperature, agitation rate, and calcination of chert. Stable adsorption of Ce(III) and La(III) on chert were observed at stirring speed 400 and 200rpm respectively. However the process of calcination does not affect the adsorption capacity of the two rare earths. The adsorption kinetics, the effect of various parameters influencing the adsorption capacity and adsorption isotherms were determined. Results showed instantaneous adsorption, fast kinetics and maximum percentages of adsorption ranged between 80 and ~100%. Highest correlation coefficients were obtained for the pseudo-second order kinetic that are described satisfactorily by the Langmuir model. Thermodynamic parameters obtained indicate an endothermic and spontaneous adsorption process for lanthanum and exothermic and nonspontaneous adsorption process for cerium. Adsorption of rare earths on chert showed similar adsorption capacities to commercial diatomaceous earth and low matrix effect was observed when chert is used as an adsorbent of REE from a phosphogypsum leachate.
机译:采矿业最丰富的副产品Cherty岩石被用作吸附剂来萃取稀土元素。通过各种分析方法(XRD,FX-ED,MEB,FTIR,激光粒度分析)对纯化的石进行表征。 XRD图谱显示石英,鳞石英,方石英和斜发沸石-Ca相的衍射峰。扫描电镜观察表明,所研究的石呈颗粒状,粒径分布小于100μm,呈单峰。用各种化学方法和ICP-AES研究了La(III)和Ce(III)离子在石上的吸附行为。优化了各种实验参数,例如接触时间,初始稀土浓度,温度,搅拌速率和石煅烧。分别在400和200rpm的搅拌速度下观察到铈(III)和镧(III)在on石上的稳定吸附。但是,煅烧过程不会影响两种稀土的吸附能力。确定了吸附动力学,各种参数对吸附容量和吸附等温线的影响。结果表明,瞬时吸附,快速动力学和最大吸附百分比在80%〜100%之间。对于伪二阶动力学,获得了最高的相关系数,Langmuir模型令人满意地描述了该系数。获得的热力学参数表明镧的吸热和自发吸附过程以及铈的放热和非自发吸附过程。稀土在石上的吸附显示出与商用硅藻土相似的吸附能力,当将石用作磷石膏浸出液中的REE吸附剂时,观察到较低的基质效应。

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