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Effect of Temperature to Adsorption Capacity and Coefficient Distribution on Rare Earth Elements Adsorption (Y, Gd, Dy) Using SIR

机译:使用SIR对稀土元素吸附(Y,Gd,Dy)对吸附能力和系数分布的影响

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The use of REE like element of Yttrium (Y) as a superconducting material requires a purity of more than 90%, so it needs to increase the purity of Y from the settling process. The purpose of this research is to study the separation process of REE that is Y, Gd, Dy elements from REE hydroxide (REE(OH)3) using SIR method are consisting of Amberlite XAD-16 resin impregnated with Di-(2-ethylhexyl) phosphate ( D2EHPA) and Tributyl Phosphate (TBP) and determine the isotherm model on REE adsorption and determine the kinetic model of pseudo adsorption reaction. This research was started by activating XAD -16 resin and is mixed with TBP-D2EHPA solvents so it will form SIR, then it is conducted on variation of SIR composition, temperature variation of adsorption process, determination of equilibrium equation and kinetic sorption occurring in SIR adsorption based on experimental data of liquid concentration as function of time. Based on the calculation result, the most effective SIR composition for REE separation is 0.75 g, the equilibrium equation for Y, Gd and Dy follows the Henry equilibrium model and the pseudo kinetic model of the reaction order Y, Gd, and Dy is followed by the pseudo reaction of order 2 The result of separation of LTJ with SIR is said to be effective from another method because purity is obtained that is 96.73% and qualify as a super conductor material.
机译:使用YTTRIUM(Y)的REE作为超导材料的元素需要超过90%的纯度,因此需要增加y沉降过程的y的纯度。本研究的目的是研究REE的分离过程,即使用SIR法由REE氢氧化物(REE(OH)3)的Y,Gd,来自REE氢氧化物(OH)3)的分离过程由浸渍有二 - (2-乙基己基的琥珀酸盐XAD-16树脂组成)磷酸盐(D2ehPa)和磷酸三丁基(TBP)并确定REE吸附的等温模型,并确定伪吸附反应的动力学模型。该研究通过激活XAD -16树脂开始并与TBP-D2EHPA溶剂混合,因此它将形成SIR,然后在SIR组合物的变化,吸附过程的温度变化,先生发生测定的测定,在SIR中发生测定。基于液体浓度实验数据作为时间函数的吸附。基于计算结果,用于REE分离的最有效的SIR组合物是0.75g,Y,Gd和Dy的平衡方程遵循亨利平衡模型和反应顺序Y,Gd和Dy的伪动力学模型订单2的伪反应与SIR的LTJ分离的结果是有效的,因为获得了96.73%,并且有资格作为超级导体材料。

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