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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Speciation modeling and sorption mechanism for decontamination of naturally occurring radionuclide from sulfuric acid liquor by anion exchange process
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Speciation modeling and sorption mechanism for decontamination of naturally occurring radionuclide from sulfuric acid liquor by anion exchange process

机译:阴离子交换过程对硫酸液天然放射性核素的净化碳化的规模建模及吸附机制

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摘要

Various uranyl sulfate complexes are formed during the digestion of monazite mineral by sulfuric acid. Uranyl sulfate sorption by AMBERJET 4200 Cl has been studied to find out the proper mechanism, equilibrium and kinetics basis. At pH of 3.0 and 0.5 M SO4 (-) the dominant solution species of U(VI) is [UO2(SO4)(3)](-4) anionic complex. High sorbent affinity and monolayer sorption mechanism are approved by different isotherms. The rate is found to be controlled by surface adsorption and intra-particle diffusion. The equilibrium equation and kinetic parameters are estimated. The thermodynamic studies reveal that the reaction is endothermic and spontaneous.
机译:通过硫酸消化单氮化物矿物质的消化期间形成各种硫酸铀酸酯络合物。 已经研究了Amberjet 4200 Cl的铀酰硫酸盐吸附,以找出适当的机制,平衡和动力学。 在3.0和0.5 m so4( - )pH的pH下,U(VI)的主要溶液物种是[UO 2(SO 4)(3)]( - 4)阴离子复合物。 高吸附剂亲和力和单层吸附机制由不同等温线批准。 发现速率通过表面吸附和颗粒颗粒扩散来控制。 估计平衡方程和动力学参数。 热力学研究表明,反应是吸热和自发的。

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