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Hydrothermal Synthesis of Cellulose Nanocrystal-Grafted-Acrylic Acid Aerogels with Superabsorbent Properties

机译:水热法合成具有超强吸收性能的纤维素纳米晶接枝丙烯酸气凝胶

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摘要

In this work, we applied a fast and simple method to synthesize cellulose nanocrystal (CNC) aerogels, via a hydrothermal strategy followed by freeze drying. The characteristics and morphology of the obtained CNC-g-AA aerogels were affected by the hydrothermal treatment time, volume of added AA (acrylic acid), and the mass fraction of the CNCs. The formation mechanism of the aerogels involved free radical graft copolymerization of AA and CNCs with the cross-linker N,N′-methylene bis(acrylamide) (MBA) during the hydrothermal process. The swelling ratio of the CNC-g-AA aerogels was as high as 495:1, which is considerably greater than that of other polysaccharide-g-AA aerogels systems. Moreover, the CNC-g-AA aerogels exhibited an excellent methyl blue (MB) adsorption capacity and the ability to undergo rapid desorption/regeneration. The maximum adsorption capacity of the CNC-g-AA aerogels for MB was greater than 400 mg/g. Excellent regeneration performance further indicates the promise of our CNC-g-AA aerogels as an adsorbent for applications in environmental remediation.
机译:在这项工作中,我们应用了一种快速简单的方法通过水热策略,然后进行冷冻干燥,来合成纤维素纳米晶体(CNC)气凝胶。所得CNC-g-AA气凝胶的特性和形貌受水热处理时间,添加的AA(丙烯酸)的量以及CNC的质量分数的影响。气凝胶的形成机理涉及在水热过程中AA和CNC与交联剂N,N'-亚甲基双(丙烯酰胺)(MBA)的自由基接枝共聚。 CNC-g-AA气凝胶的溶胀率高达495:1,大大高于其他多糖-g-AA气凝胶系统的溶胀率。此外,CNC-g-AA气凝胶具有出色的甲基蓝(MB)吸附能力和快速脱附/再生的能力。 CNC-g-AA气凝胶对MB的最大吸附容量大于400 mg / g。出色的再生性能进一步表明,我们的CNC-g-AA气凝胶有望作为环境修复应用中的吸附剂。

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