首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Modeling batch kinetics of cesium, cobalt and strontium ions adsorption from aqueous solutions using hydrous titanium oxide
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Modeling batch kinetics of cesium, cobalt and strontium ions adsorption from aqueous solutions using hydrous titanium oxide

机译:使用含水氧化钛模拟从水溶液中吸附铯,钴和锶离子的批动力学

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摘要

Hydrous titanium oxide was chemically synthesized and tested as adsorbent material for the removal of cesium, cobalt and strontium ions from chloride waste solutions using batch technique. The influences of pH, contact time, and temperature have been reported. The uptake of both strontium and cobalt ions was found to be greater than that of cesium and the apparent sorption capacity of each ion increases with increase in temperature. Thermodynamic parameters such as changes in Gibbs free energy (Delta G(0)), enthalpy (Delta H-0), and entropy (Delta S-0) were calculated. The numerical value of Delta G(0) decreases with an increase in temperature, indicating that the sorption reaction of each ion was more favorable at higher temperature. The positive values of Delta H-0 correspond to the endothermic nature of sorption processes and suggested that chemisorption was the predominant mechanism. Analysis of the respective rate data in accordance with three kinetic models revealed that the homogeneous particle diffusion kinetic model was found to best correlate the experimental rate data. The numerical values of the rate constants and particle diffusion coefficients were determined from the graphical representation of the proposed models. The results indicated that prepared hydrous titanium oxide can be used as an efficient adsorbent material for the removal of strontium and cobalt ions from radioactive aqueous wastes.
机译:化学合成了含水的氧化钛,并使用分批技术测试了含水的二氧化钛作为吸附剂材料从氯化物废液中去除铯,钴和锶离子的能力。已经报道了pH,接触时间和温度的影响。发现锶和钴离子的吸收均大于铯,并且每个离子的表观吸附能力随温度的升高而增加。计算热力学参数,例如吉布斯自由能(ΔG(0)),焓(ΔH-0)和熵(ΔS-0)的变化。 ΔG(0)的数值随着温度的升高而降低,表明在较高温度下每种离子的吸附反应更有利。 ΔH-0的正值对应于吸附过程的吸热性质,表明化学吸附是主要机理。根据三个动力学模型对各自的速率数据进行分析后发现,均相颗粒扩散动力学模型与实验速率数据具有最佳相关性。速率常数和颗粒扩散系数的数值由所提出模型的图形表示确定。结果表明,所制备的含水二氧化钛可以用作从放射性含水废物中去除锶和钴离子的有效吸附材料。

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