Nuclear Science Programme, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, UKM, 43600, Bangi, Selangor, Malaysia.
Department of Physics, Faculty of Applied Science, Umm Al-Qura University, Makkah, 21955, Saudi Arabia.
Sci Rep. 2023 Jun 8;13(1):9316. doi: 10.1038/s41598-023-36487-5.
This study investigated the efficacy of using phosphate-modified zeolite (PZ) as an adsorbent for removing thorium from aqueous solutions. The effects of various factors such as contact time, adsorbent mass, initial thorium concentration, and pH value of the solution on the removal efficiency were analyzed using the batch technique to obtain optimum adsorption condition. The results revealed that the optimal conditions for thorium adsorption were a contact time of 24 h, 0.03 g of PZ adsorbent, pH 3, and a temperature of 25 °C. Isotherm and kinetics parameters of the thorium adsorption on PZ were also determined, with equilibrium studies showing that the experimental data followed the Langmuir isotherm model. The maximum adsorption capacity (Q) for thorium was found to be 17.3 mg/g with the Langmuir isotherm coefficient of 0.09 L/mg. Using phosphate anions to modify natural zeolite increased its adsorption capacity. Furthermore, adsorption kinetics studies demonstrated that the adsorption of thorium onto PZ adsorbent fitted well with the pseudo-second-order model. The applicability of the PZ adsorbent in removing thorium from real radioactive waste was also investigated, and nearly complete thorium removal was achieved (> 99%) from the leached solution obtained from cracking and leaching processes of rare earth industrial residue under optimized conditions. This study elucidates the potential of PZ adsorbent for efficient removal of thorium from rare earth residue via adsorption, leading to a reduction in waste volume for ultimate disposition.
本研究探讨了用磷酸改性沸石(PZ)作为吸附剂从水溶液中去除钍的效果。采用间歇技术分析了接触时间、吸附剂质量、初始钍浓度和溶液 pH 值等各种因素对去除效率的影响,以获得最佳吸附条件。结果表明,钍吸附的最佳条件为接触时间 24 h、PZ 吸附剂 0.03 g、pH 值 3 和温度 25°C。还确定了 PZ 上钍吸附的等温线和动力学参数,平衡研究表明实验数据符合 Langmuir 等温线模型。发现 PZ 对钍的最大吸附容量(Q)为 17.3 mg/g,Langmuir 等温线系数为 0.09 L/mg。用磷酸根阴离子修饰天然沸石增加了其吸附容量。此外,吸附动力学研究表明,钍在 PZ 吸附剂上的吸附很好地符合拟二级模型。还研究了 PZ 吸附剂从实际放射性废物中去除钍的适用性,在优化条件下,从稀土工业残渣的裂解和浸出过程中获得的浸出液中,几乎完全去除了钍(>99%)。这项研究阐明了 PZ 吸附剂通过吸附有效去除稀土残渣中钍的潜力,从而减少最终处置的废物量。