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Synthesis of Di-(2-ethylhexyl) Phosphoric Acid (D2EHPA)-Tributyl Phosphate (TBP) Impregnated Resin and Application in Adsorption of Vanadium(IV)

机译:二(2-乙基己基)磷酸(D2EHPA)-磷酸三丁酯(TBP)浸渍树脂的合成及其在钒(IV)吸附中的应用

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In order to improve the adsorption capability of solvent-impregnated resins (SIRs) for vanadium(IV) (V(IV)), the dual extractant (D2EHPA (Di-(2-ethylhexyl) phosphoric acid) and TBP (Tributyl phosphate)) impregnated resins (D-TIRs) were prepared by impregnating Amberlite TM XAD-16HP macroporous resins with the mixed extractant that is composed by different molar ratios of D2EHPA to TBP. The effects of the ratio of D2EHPA to TBP on the performance of D-TIRs were investigated. The results show that the impregnation ratio of the D-TIRs decreases gradually with the increasing proportion of TBP in the mixed extractant. The sole-TBP impregnated resins (TIRs) have no adsorption capability for V(IV), indicating that the adsorption of V(IV) is attributed to D2EHPA. The adsorption capacity of D-TIRs for V(IV) attained the maximum when the ratio of D2EHPA to TBP is 7:3 at pH 1.8, and it can be improved by increasing the extractants concentration during the impregnation process. Adsorption isotherm indicates that the addition of TBP can increase the adsorption capacity of D-TIRs for V(IV) from 24.65 to 29.75 mg/g after 16 h reaction. Adsorption kinetics verifies that the addition of TBP can largely accelerate the adsorption equilibrium of V(IV) onto the D-TIRs and V(IV). Electrospray ionization (ESI) mass spectra and Fourier transform infrared spectra (FT-IR) analysis indicates that the addition of TBP to D2EHPA can make some dimeric D2EHPA change to monomers by breaking the hydrogen bonds of D2EHPA-dimers, leading to the result that the pseudo-second order kinetic for the adsorption of V(IV) onto the D2EHPA impregnated resins (DIRs) converts to the pseudo-first order kinetic for that onto the D-TIRs. Also, D-TIRs have better separation capability of V(IV) from Fe(II) and Al(III) in the vanadium leaching solution than DIRs.
机译:为了提高溶剂浸渍树脂(SIR)对钒(IV)(V(IV))的吸附能力,请使用双萃取剂(D2EHPA(二(2-乙基己基)磷酸)和TBP(磷酸三丁酯))通过用混合萃取剂浸渍Amberlite TM XAD-16HP大孔树脂来制备浸渍树脂(D-TIR),混合萃取剂由D2EHPA与TBP的不同摩尔比组成。研究了D2EHPA与TBP的比例对D-TIR性能的影响。结果表明,随着混合萃取剂中TBP含量的增加,D-TIR的浸渍率逐渐降低。唯一的TBP浸渍树脂(TIR)对V(IV)没有吸附能力,表明V(IV)的吸附归因于D2EHPA。当pH值为1.8时D2EHPA与TBP的比例为7:3时,D-TIR对V(IV)的吸附容量达到最大值,可以通过增加浸渍过程中萃取剂的浓度来提高D-TIR对V(IV)的吸附能力。吸附等温线表明,在反应16小时后,TBP的添加可以使D-TIR对V(IV)的吸附能力从24.65 mg / g增加到29.75 mg / g。吸附动力学证明,TBP的添加可以大大加速V(IV)在D-TIR和V(IV)上的吸附平衡。电喷雾电离(ESI)质谱和傅立叶变换红外光谱(FT-IR)分析表明,将DBP添加到D2EHPA中可以通过破坏D2EHPA-二聚体的氢键使D2EHPA变成单体的一些二聚体。 V(IV)吸附到D2EHPA浸渍树脂(DIR)上的拟二级动力学转化为D-TIR上的拟一级动力学。而且,D-TIR与DIR相比,钒浸出溶液中的V(IV)与Fe(II)和Al(III)具有更好的分离能力。

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