固定化萃取剂与离子交换材料选择性分离金属离子的研究

S. Nishihama
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摘要

研究了对金属离子具有高选择性的环境友好型离子交换材料,如:(1)制备包膜溶剂浸渍树脂,防止萃取剂泄漏,并将其应用于金属离子的选择性分离;(2)基于光摆吸附的新型离子交换材料及其在稀土金属吸附分离中的应用。在操作过程中,用交联水溶性聚合物包覆溶剂浸渍树脂,可有效抑制萃取剂的泄漏,但吸附能力略有下降。采用包覆溶剂浸渍树脂,采用柱式操作可实现稀土金属的选择性分离。为了减少洗脱液的用量,还开发了新型光摆离子交换材料。将萃取剂和碳纳米管作为分子加热器固定在热敏聚合物上。由于热敏性聚合物的相变是在光照射下发生的,因此可以通过光照射来控制吸附量。虽然碳纳米管的固定化变得困难,但在有光照射和没有光照射的情况下,碳纳米管的吸附量的差异可以通过减少交联来增加。在离子交换材料上引入芘基团可以提高碳纳米管的固定化性能。光照射提高了几种稀土金属组合的分离能力。
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Studies on Selective Separation of Metal Ions with Ion Exchange Materials by Immobilizing Extractant
Ion exchange materials of environmentally friendly having high selectivity for metal ions have been investigated, as such (1) preparation of coated solvent impregnated resin, to prevent from leakage of extractant, and its application to selective separation of metal ions and (2) novel ion exchange material based on photo-swing adsorption and its application to adsorptive separation of rare earth metals. The leakage of the extractant from the solvent impregnated resin, during operation, can be successfully suppressed by coating the solvent impregnated resin by cross-linked water-soluble polymer, although adsorption capacity is slightly decreased. Selective separation of rare earth metals can be achieved with column mode operation using the coated solvent impregnated resin. Novel photo-swing ion exchange material is also developed to decrease in the amount of eluent solution. Extractant and carbon nanotube, as molecular heater, are immobilized on thermosensitive polymer. The adsorption amount can be controlled by photo-irradiation, since phase transition of the thermosensitive polymer is occurred by the photo-irradiation. The difference in the adsorption amount, with and without photo-irradiation, can be increased by decrease in the cross-linking, although the immobilization of the carbon nanotube becomes difficult. The immobilization of the carbon nanotube can be improved by introducing pyrene group on the ion exchange material. Separation ability of several combinations of rare earth metals is increased by photo-irradiation.
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