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Adsorption of uranium(VI) and thorium(IV) by insolubilized humic acid from Ajloun soil - Jordan

机译:Ajloun土壤中的不溶性腐殖酸吸附铀(VI)和th(IV)-约旦

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Humic acid from Ajloun soil has been extracted and insolubilized. The insolubilized humic acid (NaIHA) was characterized by Fourier transform infrared spectroscopy, elemental analysis, thermal gravimetric analysis, X-ray diffraction and differential scanning calorimetry. Adsorption of U(VI) and Th(IV) by NaIHA was studied using batch technique at different temperatures (25.0, 35.0 and 45.0 degrees C) and at different pH values (1.00, 2.00 and 3.00). It was found that NaIHA has higher uptake for Th(IV) than U(VI), and that the metal ion uptake by NaIHA increased with pH and reached a maximum at pH = 3. The kinetic studies were done, and showed that the equilibrium time for each metal ion occurs at 6 h to achieve maximum uptake level. Adsorption data were evaluated according to the Pseudo second-order reaction kinetic. The metal ions uptake properties by the NaIHA fit Langmuir, Freundlich and Dubinin-Radushkevich adsorption isotherms. Thermodynamic functions, Delta G degrees, Delta H degrees and Delta S degrees were determined for each metal ion. The positive values of Delta G degrees indicate that adsorption process is not highly favorable, while Delta H degrees values indicated that this process is endothermic. On the other hand, the process has positive entropy which means that the adsorption process increases the disorder of the system and it is entropy driven. Column experiments were used for the determination of metal ion loading capacity and desorption studies. The uptake capacities in column technique of U(VI) and Th(IV) ions are 2.63 and 4.85 mg metal ion/g NaIHA respectively. Recovery of U(VI) and Th(IV) ions was carried out by treatment of loaded insolubilized humic acid with 0.1 M and 1.0 M HNO3, the best recovery for U(VI) and Th(IV) ions were obtained when 1.0 M HNO3 was used. (C) 2015 Elsevier Ltd. All rights reserved.
机译:来自阿j隆土壤的腐殖酸已被提取并溶解。通过傅立叶变换红外光谱,元素分析,热重分析,X射线衍射和差示扫描量热法对不溶性腐殖酸(NaIHA)进行了表征。使用批处理技术研究了NaIHA在不同温度(25.0、35.0和45.0摄氏度)和不同pH值(1.00、2.00和3.00)下对U(VI)和Th(IV)的吸附。发现NaIHA对Th(IV)的吸收高于U(VI),并且NaIHA对金属离子的吸收随pH的增加而增加,并在pH = 3时达到最大值。每个金属离子的时间为6小时,以达到最大吸收水平。根据伪二级反应动力学评估吸附数据。 NaIHA的金属离子吸收特性符合Langmuir,Freundlich和Dubinin-Radushkevich吸附等温线。测定每种金属离子的热力学函数,ΔG度,ΔH度和ΔS度。 ΔG度的正值表示吸附过程不是非常有利,而ΔH度值则表示该过程是吸热的。另一方面,该过程具有正熵,这意味着吸附过程会增​​加系统的无序性,并且受熵驱动。柱实验用于确定金属离子的负载量和解吸研究。 U(VI)和Th(IV)离子在柱技术中的吸收容量分别为2.63和4.85 mg金属离子/ g NaIHA。通过用0.1 M和1.0 M HNO3处理负载的不溶性腐殖酸来回收U(VI)和Th(IV)离子,当1.0 M HNO3时,U(VI)和Th(IV)离子的回收率最佳。被使用了。 (C)2015 Elsevier Ltd.保留所有权利。

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