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首页> 外文期刊>Frontiers in Chemistry >Preparation of Carboxymethyl Cellulose-g- Poly(acrylamide)/Attapulgite Porous Monolith With an Eco-Friendly Pickering-MIPE Template for Ce(III) and Gd(III) Adsorption
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Preparation of Carboxymethyl Cellulose-g- Poly(acrylamide)/Attapulgite Porous Monolith With an Eco-Friendly Pickering-MIPE Template for Ce(III) and Gd(III) Adsorption

机译:用Eco友好型皮克林模板制备羧甲基纤维素-G-聚(丙烯酰胺)/亚吡啶硫酸吡啶矿石料,用于CE(III)和GD(III)吸附

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摘要

Due to the high specific surface and metal-binding functional groups in the crosslinked polymeric networks, the monolith materials incorporation with porous structure have been considered as one kind of the most efficient adsorbents for rare earth elements recovery. Herein, a facile and novel monolithic multi-porous carboxymethyl cellulose-g-poly(acrylamide)/attapulgite was synthesized by the free radical polymerization via green vegetable oil-in-water Pickering medium internal phase emulsion (O/W Pickering-MIPEs), which was synergically stabilized by attapulgite and tween-20. The homogenizer rotating speed and time were performed to form stable Pickering-MIPEs. The effect of types of oil phase on the formation of Pickering-MIPEs were investigated with stability test and rheological characterization. The structure and composition of the prepared porous material with eight kind of vegetable oil were characterized by FTIR and SEM. The results indicate that the obtained materials with abundant interconnected porous are comparable to that fabrication with Pickering-HIPEs templates. The adsorption experiment demonstrate that, the prepared material have a fast capture rate and high adsorption capacities for Ce(III) and Gd(III), respectively. The saturation adsorption capacities for Ce(III) and Gd(III) are 205.48 and 216.73 mg/g respectively, which can be reached within 30min. Moreover, the monolith materials exhibit excellent regeneration ability and reusability. This work provides a feasible and eco-friendly pathway for the construction of the multi-porous adsorbent for adsorption and separation application.
机译:由于在交联的聚合物网络中的高比表面和金属结合官能团,掺入多孔结构的整体材料被认为是稀土元素回收的一种最有效的吸附剂。在此,通过绿色植物油 - 水洗介质内相乳液(O / W皮层),通过自由基聚合合成了一种容易和新型单片多孔羧甲基纤维素-G-聚(丙烯酰胺)/乙烯酸酯。由甲孢菌槽和吐温和吐温协同稳定。进行均化器旋转速度和时间以形成稳定的拾起摩托波。采用稳定性试验和流变表征研究了油相对油相对地形成皮克林的影响。用八种植物油的制备多孔材料的结构和组成是通过FTIR和SEM的特征。结果表明,具有丰富互连多孔的所得材料与具有拾起臀部模板的制造相当。吸附实验表明,制备的材料分别具有快速捕获率和高吸附能力,分别用于CE(III)和GD(III)。 Ce(III)和GD(III)的饱和吸附容量分别为205.48和216.73mg / g,可以在30min内达到。此外,整料材料表现出优异的再生能力和可重用性。这项工作提供了一种可行和环保的途径,用于构建多孔吸附剂,用于吸附和分离施用。

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