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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Chitin-based renewable materials from marine sponges for uranium adsorption
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Chitin-based renewable materials from marine sponges for uranium adsorption

机译:来自海洋海绵的几丁质基可再生材料,用于铀吸附

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Marine sponges of the order Verongida form three-dimensional networks of fibrous chitin, which can easily be extracted. In the hydrated state, these networks are flexible, mechanically stable and can be cut or pressed into any desired form. Here, we show for the first time that chitin-based networks of sponge origin are useful for effective uranium adsorption. They adsorb uranium from solution with a higher adsorption capacity than many other chitinous sorbents. Up to 288 mg/g could be achieved. Solid-state NMR, infrared, and Raman spectroscopy indicated that the uranyl is bound to the chitin by weak interactions. 90% of the uranyl could be desorbed using diluted hydrochloric acid. Uranium adsorption and desorption did not result in any destruction of the chitin-based material.
机译:Verongida等级的海用海绵形成了几丁质纤维的三维网络,可以轻松地将其提取。在水合状态下,这些网络是柔性的,机械稳定的,可以切割或压制成任何所需的形式。在这里,我们首次证明海绵来源的几丁质基网络可用于有效的铀吸附。它们从溶液中吸附铀的能力比许多其他几丁质吸附剂更高。最高可达288 mg / g。固态NMR,红外和拉曼光谱表明,铀酰通过弱相互作用与甲壳质结合。使用稀盐酸可解吸90%的铀酰。铀的吸附和解吸不会导致几丁质基材料的破坏。

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