首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >A green strategy for lithium isotopes separation by using mesoporous silica materials doped with ionic liquids and benzo-15-crown-5
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A green strategy for lithium isotopes separation by using mesoporous silica materials doped with ionic liquids and benzo-15-crown-5

机译:使用掺杂离子液体和苯并15-冠-5的中孔二氧化硅材料分离锂同位素的绿色策略

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摘要

Three new mesoporous silica materials IL15SGs (HF15SG, TF15SG and DF15SG) doped with benzo-15-crown-5 and imidazolium based ionic liquids (C_8mim~+PF_6~-, C_8mim~+BF_4~- or C_8mim~+NTf_2~-) have been prepared by a simple approach to separating lithium isotopes. The formed mesoporous structures of silica gels have been confirmed by transmission electron microscopy image and N_2 gas adsorption-desorption isotherm. Imidazolium ionic liquids acted as templates to prepare mesoporous materials, additives to stabilize extractant within silica gel, and synergetic agents to separate the lithium isotopes. Factors such as lithium salt concentration, initial pH, counter anion of lithium salt, extraction time, and temperature on the lithium isotopes separation were examined. Under optimized conditions, the extraction efficiency of HF15SG, TF15SG and DF15SG were found to be 11.43, 10.59 and 13.07 %, respectively. The heavier isotope ~7Li was concentrated in the solution phase while the lighter isotope ~6Li was enriched in the gel phase. The solid-liquid extraction maximum single-stage isotopes separation factor of ~6Li-~7Li in the solid-liquid extraction was up to 1.046 ± 0.002. X-ray crystal structure analysis indicated that the lithium salt was extracted into the solid phase with crown ether forming [(Li_(0.5))_2(B15)_2(H_2O)]~+ complexes. IL15SGs were also easily regenerated by stripping with 20 mmol L-(-1) HC1 and reused in the consecutive removal of lithium ion in five cycles.
机译:三种新的介孔二氧化硅材料IL15SGs(HF15SG,TF15SG和DF15SG)掺有苯并15冠-5和咪唑基离子液体(C_8mim〜+ PF_6〜-,C_8mim〜+ BF_4〜-或C_8mim〜+ NTf_2〜-)通过一种简单的分离锂同位素的方法制备。硅胶的中孔结构已经通过透射电子显微镜图像和N_2气体吸附-吸附等温线证实。咪唑鎓离子液体充当模板以制备中孔材料,添加剂以稳定硅胶中的萃取剂以及协同剂以分离锂同位素。检查了锂盐浓度,初始pH,锂盐的抗衡阴离子,萃取时间和锂同位素分离温度等因素。在最佳条件下,HF15SG,TF15SG和DF15SG的提取效率分别为11.43%,10.59%和13.07%。较重的同位素〜7Li在溶液相中富集,而较轻的同位素〜6Li在凝胶相中富集。固液萃取中〜6Li ~~ 7Li的固液萃取最大单级同位素分离系数高达1.046±0.002。 X射线晶体结构分析表明,锂盐被萃取到固相中,形成冠醚,形成[(Li_(0.5))_ 2(B15)_2(H_2O)]〜+配合物。 IL15SGs也很容易通过用20 mmol L-(-1)HCl汽提来再生,并在五个周期的连续去除锂离子中重复使用。

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