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Novel Functionalized Cellulose Microspheres for Efficient Separation of Lithium Ion and Its Isotopes: Synthesis and Adsorption Performance

机译:高效分离锂离子及其同位素的新型功能化纤维素微球:合成与吸附性能

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摘要

The adsorption of lithium ions(Li+) and the separation of lithium isotopes have attracted interests due to their important role in energy storage and nuclear energy, respectively. However, it is still challenging to separate the Li+ and its isotopes with high efficiency and selectivity. A novel cellulose-based microsphere containing crown ethers groups (named as MCM-g-AB15C5) was successfully synthesized by pre-irradiation-induced emulsion grafting of glycidyl methacrylate (GMA) and followed by the chemical reaction between the epoxy group of grafted polymer and 4′-aminobenzo-15-crown-5 (AB15C5). By using MCM-g-AB15C5 as adsorbent, the effects of solvent, metal ions, and adsorption temperature on the adsorption uptake of Li+ and separation factor of 6Li/7Li were investigated in detail. Solvent with low polarity, high adsorption temperature in acetonitrile could improve the uptake of Li+ and separation factor of lithium isotopes. The MCM-g-AB15C5 exhibited the strongest adsorption affinity to Li+ with a separation factor of 1.022 ± 0.002 for 6Li/7Li in acetonitrile. The adsorption isotherms in acetonitrile is fitted well with the Langmuir model with an ultrahigh adsorption capacity up to 12.9 mg·g−1, indicating the unexpected complexation ratio of 1:2 between MCM-g-AB15C5 and Li+. The thermodynamics study confirmed the adsorption process is the endothermic, spontaneous, and chemisorption adsorption. As-prepared novel cellulose-based adsorbents are promising materials for the efficient and selective separation of Li+ and its isotopes.
机译:锂离子(Li + )的吸附和锂同位素的分离由于它们分别在储能和核能中的重要作用而引起人们的兴趣。然而,以高效率和高选择性分离Li + 及其同位素仍然具有挑战性。通过预辐照诱导的甲基丙烯酸缩水甘油酯(GMA)乳液接枝,然后接枝聚合物的环氧基与甲基丙烯酸之间的化学反应,成功地合成了一种新型的含冠醚基团的纤维素基微球(命名为MCM-g-AB15C5)。 4'-氨基苯并-15-冠-5(AB15C5)。以MCM-g-AB15C5为吸附剂,溶剂,金属离子和吸附温度对Li + 的吸附量和 6 Li / <对sup> 7 Li进行了详细调查。极性低,乙腈吸附温度高的溶剂可以提高Li + 的吸收和锂同位素的分离系数。 MCM-g-AB15C5对Li + 表现出最强的吸附亲和力,其中 6 Li / 7 Li的分离系数为1.022±0.002。乙腈。乙腈中的吸附等温线非常适合Langmuir模型,具有高达12.9 mg·g -1 的超高吸附容量,表明MCM-g-AB15C5与Li之间的意外配位比为1:2 + 。热力学研究证实,吸附过程是吸热,自发和化学吸附。制备的新型纤维素基吸附剂是有效和选择性分离Li + 及其同位素的有前途的材料。

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