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首页> 外文期刊>Separation and Purification Technology >Selective lithium and magnesium adsorption by phosphonate metal-organic framework-incorporated alginate hydrogel inspired from lithium adsorption characteristics of brown algae
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Selective lithium and magnesium adsorption by phosphonate metal-organic framework-incorporated alginate hydrogel inspired from lithium adsorption characteristics of brown algae

机译:通过膦酸盐金属 - 有机骨架的选择性锂和镁吸附,藻酸盐水凝胶引发了棕榈藻的锂吸附特性

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摘要

With increasing global demands for lithium resources, the separation of lithium from seawater-based resources has been widely explored. Herein, we propose phosphonate metal organic framework (MOF)-incorporated alginate hydrogels inspired by brown algae. The analysis of Li+ adsorption characteristics of brown algae revealed that carboxylic acid and phosphonate groups were the dominant functional groups for Li+ adsorption. Biomimetic phosphonate MOF-incorporated alginate hydrogels (pMOF@Alg) were fabricated on the basis of the Li+ adsorption characteristics of brown algae. Their adsorption behaviors indirectly evaluated by conductivities showed that the growth of phosphonate MOF in Cu2+-based alginate hydrogel enhances Li+ adsorption but inhibits Mg2+ adsorption with a small difference, which might be attributed to size confinement effect by heterogeneously distributed phosphonate MOF. By contrast, the growth of phosphonate MOF homogeneously distributed in Al3+-based alginate hydrogel greatly enhances Mg2+ adsorption while rejecting Li+ adsorption. This reverse adsorption behavior of pMOF@Alg(Al) seems to be attributed to partial dehydration, depending on the dehydration energy of hydrated metal ions. The adsorbed ions are easily removable by using ethanol/DI water because of the weak electrostatic interaction with negatively charged groups. This study would provide novel selective adsorption methodology for the separation of Li+ and Mg2+ and an effective lithium recovery technology.
机译:随着对锂资源的全球需求增加,锂从基于海水资源的分离得到了广泛探索。在此,我们提出了由棕海藻启发的膦酸盐金属有机骨架(MOF) - 丙烯酸盐水凝胶。棕藻的Li +吸附特性分析显示,羧酸和膦酸盐基团是Li +吸附的主要官能团。基于棕藻的Li +吸附特性,制造仿生膦酸酯加入的藻酸盐水凝胶(PMOF @ alg)。其吸附行为通过电导率间接评估,表明Cu2 +基于藻酸盐水凝胶中的膦酸酯MOF的生长增强了Li +吸附,但抑制了少差异的Mg2 +吸附,这可能归因于异质分布的膦酸盐MOF的尺寸限制效果。相比之下,在Al3 +基于藻酸盐水凝胶中均匀分布的膦酸酯MOF的生长极大地增强了Mg2 +吸附,同时排斥Li +吸附。根据水合金属离子的脱水能量,PMOF @ ALG(AL)的这种反向吸附行为似乎归因于部分脱水。由于与带负电的基团的静电相互作用弱,吸附离子通过乙醇/二水容易去除。该研究将为分离Li +和Mg2 +和有效锂回收技术提供新的选择性吸附方法。

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