Shuibo Xie, Chun Zhang, Xinghuo Zhou, Jing Yang, Xiaojian Zhang, Jingsong Wang
School of Urban Construction, University of South China, Hengyang, Hunan, PR China.
J Environ Radioact. 2009 Feb;100(2):162-6. doi: 10.1016/j.jenvrad.2008.09.008. Epub 2008 Dec 19.
Hematite, a type of inorganic-sorptive medium, was used for the removal of U (VI) from aqueous solutions. Variables of the batch experiments including solution pH, contact time, initial concentration, temperature, calcium and magnesium ions were studied. The results indicated that the adsorption capacities are strongly affected by the solution pH, contact time and initial concentration. A higher pH favors higher U (VI) removal. The adsorption was also affected by temperature and calcium and magnesium ions, but the effect is very weak. The maximum adsorption capacity (q(m)) only increased from 3.36 mgg(-1) to 3.54 mgg(-1) when the temperature was increased from 293 K to 318 K. A two-stage kinetic behavior was observed in the adsorption of uranium (VI): very rapid initial adsorption in a few minutes, followed by a long period of slower uptake. It was found that an increase in temperature resulted in a higher uranium (VI) loading per unit weight of the sorbent. The adsorption of uranium by hematite had good efficiency, and the equilibrium time of adsorbing uranium (VI) was about 6h. The isothermal data were fitted with both Langmuir and Freundlich equations, but the data fitted the former better than the latter. The pseudo-first-order kinetic model, pseudo-second-order kinetic model and intraparticle diffusion model were used to describe the kinetic data, but the pseudo-second-order kinetic model was the best. The thermodynamic parameter Delta G(0) were calculated, the negative Delta G(0) values of uranium (VI) at different temperatures confirmed the adsorption processes were spontaneous.
赤铁矿作为一种无机吸附介质,用于从水溶液中去除U(VI)。研究了批量实验的变量,包括溶液pH值、接触时间、初始浓度、温度、钙离子和镁离子。结果表明,吸附容量受溶液pH值、接触时间和初始浓度的强烈影响。较高的pH值有利于更高的U(VI)去除率。吸附也受温度以及钙离子和镁离子的影响,但影响非常微弱。当温度从293K升高到318K时,最大吸附容量(q(m))仅从3.36mg g(-1)增加到3.54mg g(-1)。在铀(VI)的吸附过程中观察到两阶段动力学行为:最初几分钟内吸附非常迅速,随后是较长时间的较慢吸附。发现温度升高导致单位重量吸附剂的铀(VI)负载量增加。赤铁矿对铀的吸附效率良好,吸附铀(VI)的平衡时间约为6小时。等温数据用Langmuir方程和Freundlich方程拟合,但数据对前者的拟合优于后者。用伪一级动力学模型、伪二级动力学模型和颗粒内扩散模型描述动力学数据,但伪二级动力学模型效果最佳。计算了热力学参数ΔG(0),不同温度下铀(VI)的负ΔG(0)值证实吸附过程是自发的。