首页> 外文期刊>Desalination and water treatment >Removal of strontium ion from aqueous solution by PS-D2EHPA beads prepared by immobilizing di-2-ethylhexyl phosphoric acid (D2EHPA) with polysulfone (PS)
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Removal of strontium ion from aqueous solution by PS-D2EHPA beads prepared by immobilizing di-2-ethylhexyl phosphoric acid (D2EHPA) with polysulfone (PS)

机译:通过用聚砜(PS)固定二-2-乙基己基磷酸(D2EHPA)制备的PS-D2EHPA珠粒去除水溶液中的锶离子

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PS-D2EHPA beads were prepared by immobilizing di-2-ethylhexyl-phosphoric acid (D2EHPA) with polysulfone (PS). The prepared PS-D2EHPA beads were characterized by using a Fourier transform infrared spectrometer (FTIR) and scanning electron microscopy (SEM). The removal characteristics of Sr(II) from an aqueous solution by the prepared PS-D2EHPA beads was investigated in a batch system. The kinetic data followed the pseudo-second-order kinetic model. Equilibrium data fit the Langmuir isotherm model well and the removal capacity of Sr(II) by the PS-D2EHPA beads obtained from the Langmuir model was 1.71 mg/g at 298 K. The removal process of Sr(II) by the PS-D2EHPA beads is dependent on the initial pH of the solution. The optimum removal of Sr(II) by PS-D2EHPA beads was observed in the range of pH 6-10. The values of the thermodynamic parameters such as Gibbs free energy change (Delta G degrees), enthalpy change (Delta H degrees) and entropy change (Delta S degrees) showed that the adsorption of Sr(II) by the PS-D2EHPA beads was feasible, spontaneous and endothermic at 298-328 K. The results implied that the prepared PS-D2EHPA beads could be an interesting alternative material for the removal of Sr(II).
机译:通过用聚砜(PS)固定二-2-乙基己基磷酸(D2EHPA)制备PS-D2EHPA珠。通过使用傅立叶变换红外光谱仪(FTIR)和扫描电子显微镜(SEM)对制备的PS-D2EHPA珠进行表征。在间歇系统中研究了通过制备的PS-D2EHPA珠从水溶液中去除Sr(II)的特性。动力学数据遵循伪二级动力学模型。平衡数据很好地拟合了Langmuir等温模型,并且从Langmuir模型获得的PS-D2EHPA珠在298 K时对Sr(II)的去除能力为1.71 mg / g。PS-D2EHPA对Sr(II)的去除过程珠粒取决于溶液的初始pH。在pH 6-10范围内观察到PS-D2EHPA珠对Sr(II)的最佳去除。热力学参数的值,如吉布斯自由能变化(ΔG度),焓变(ΔH度)和熵变(ΔS度)表明,PS-D2EHPA珠粒吸附Sr(II)是可行的,在298-328 K时自发吸热。结果表明,制备的PS-D2EHPA磁珠可能是去除Sr(II)的有趣替代材料。

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