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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Aminotriazole isomers modified cellulose microspheres for selective adsorption of U(VI): Performance and mechanism investigation
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Aminotriazole isomers modified cellulose microspheres for selective adsorption of U(VI): Performance and mechanism investigation

机译:氨基三唑异构体改性纤维素微球,用于选择性吸附U(VI):性能和机制调查

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摘要

Aminotriazole isomers with high nitrogen content show potential affinity for U(VI). Combining the advantages of both aminotriazole and cellulose, two n-aminotriazole isomers modified cellulose microspheres (n-ATARs, n = 3, 4) were newly prepared as adsorbents via radiation technology. Batch adsorption experiments showed that n-ATARs possessed good adsorption capacity of U(VI) in the order of 3-ATAR > 4-ATAR, and the adsorption process followed the Langmuir-Freundlich isotherm model and the pseudo-second-order kinetic model. Both n-ATARs exhibited good selectivity and reusability. Besides, 3-ATAR and 4-ATAR were more suitable for the extraction of trace amount of U(VI) from the contaminated groundwater and the simulated seawater, respectively. The effect of amino position on triazole ring on adsorption behavior of n-ATAR was studied and explained by DFT calculation. Finally, the adsorption mechanism of U(VI) onto n-ATARs was revealed to be inner-sphere complexation via different 1:1 or 1:2 coordination models by FTIR, MS, XPS analysis and DFT calculation.
机译:高氮含量的氨基三唑异构体对U(VI)有潜在的亲和力。结合氨基三唑和纤维素的优点,通过辐射技术制备了两种n-氨基三唑异构体改性纤维素微球(n-ATAR,n=3,4),作为吸附剂。间歇吸附实验表明,n-ATAR对U(VI)的吸附能力为3-ATAR>4-ATAR,吸附过程遵循Langmuir-Freundlich等温线模型和拟二级动力学模型。两种n-ATAR均表现出良好的选择性和可重用性。此外,3-ATAR和4-ATAR分别更适合于从污染地下水和模拟海水中提取微量铀(VI)。研究了三唑环上的氨基位置对n-ATAR吸附行为的影响,并用DFT计算进行了解释。最后,通过FTIR、MS、XPS分析和DFT计算,通过不同的1:1或1:2配位模型揭示了U(VI)在n-ATAR上的吸附机理为内球络合。

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