Department of Chemistry, University of Kerala, Kariavattom, Trivandrum 695 581, India.
J Environ Sci (China). 2013 Apr 1;25(4):717-25. doi: 10.1016/s1001-0742(12)60064-3.
This work was conducted to determine the practicability of using a new adsorbent 4-ethyl thiosemicarbazide intercalated, organophilic calcined hydrotalcite (ETSC-OHTC) for the removal of uranium (U(VI)), and thorium (Th(IV)) from water and wastewater. The FTIR analysis helped in realizing the involvement of nitrogen and sulphur atoms of ETSC in binding the metal ions through complex formation. Parameters like adsorbent dosage, solution pH, initial metal ions concentration, contact time and ionic strength, that influence adsorption phenomenon, were studied. The optimum pH for maximum adsorption of U(VI) and Th(IV) was found to be in the range 4.0-6.0. The contact time required for reaching equilibrium was 4 hr. The pseudo second-order kinetic model was the best fit to represent the kinetic data. Analysis of the equilibrium adsorption data using Langmuir, Freundlich and Sips models showed that the Freundlich model was well suited to describe the metal ions adsorption. The K(F) values were 25.43 and 29.11 mg/g for U(VI) and Th(IV), respectively, at 30 degrees C. The adsorbent can be regenerated effectively from U(VI) and Th(IV) loaded ones using 0.01 mol/L HCl. The new adsorbent was quite stable for many cycles, without much reduction in its adsorption capacity towards the metals.
这项工作旨在确定新型吸附剂 4-乙基硫代半卡巴腙插层有机改性水滑石(ETSC-OHTC)用于从水中和废水中去除铀(U(VI))和钍(Th(IV))的实用性。FTIR 分析有助于认识到 ETSC 的氮原子和硫原子通过络合作用参与金属离子的结合。研究了影响吸附现象的参数,如吸附剂用量、溶液 pH 值、初始金属离子浓度、接触时间和离子强度。发现最大吸附 U(VI)和 Th(IV)的最佳 pH 值范围为 4.0-6.0。达到平衡所需的接触时间为 4 小时。拟二级动力学模型最适合表示动力学数据。使用 Langmuir、Freundlich 和 Sips 模型对平衡吸附数据进行分析表明,Freundlich 模型非常适合描述金属离子的吸附。在 30°C 时,K(F) 值分别为 25.43 和 29.11 mg/g,用于 U(VI)和 Th(IV)。负载 U(VI)和 Th(IV)的吸附剂可以使用 0.01 mol/L HCl 有效地再生。新吸附剂在许多循环中非常稳定,对金属的吸附容量没有明显降低。