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首页> 外文期刊>Journal of Polymer Research >Synthesis and characterization of gum ghatti grafted chelating copolymer for an effective removal of uranyl ions
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Synthesis and characterization of gum ghatti grafted chelating copolymer for an effective removal of uranyl ions

机译:Gum Ghatti接枝螯合共聚物的合成与表征,用于有效除去铀酰离子

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摘要

In this report, we intended to synthesize chelating grafted copolymer of gum ghatti with acrylonitrile (Gg-g-An) by gamma irradiation as proficient and influential adsorbent for removal of uranyl ions. These grafted and modified copolymers were characterized using different techniques viz. FTIR, Elemental analysis, TGA and FESEM. Maximum grafting was accomplished with 5% gum ghatti solution and 1:3 ratio of acrylonitrile to backbone at 25kGy total radiation dose. Surface area of grafted copolymer was calculated by BET analysis. Adsorption experiments reveal the adsorption capacity was effectively influenced at pH6 with maximum adsorption 94% which substantiated Gg-g-AO surface engross excellent potential as chelating agent for adsorption of uranyl ions. Uptake of uranyl ions by Gg-g-AO was confirmed using spectroscopic and EDX analysis. The result showed that the pseudo second order reaction and Langmuir adsorption isotherms had remarkable conformity through linear fit statistics with r(2) 0.998 and 0.978 respectively. Furthermore, the thermodynamic parameters illustrated that the uranyl ions adsorption process by Gg-g-AO was endothermic and spontaneous. Desorption studies of Gg-g-AO confirmed the reusability up to three cycles in 0.1M HCl. This study substantiated that the synthesized Gg-g-AO has impending use in environmental remediation.
机译:在本报告中,我们旨在通过γ射线照射用丙烯腈(GG-G-AN)作为纯度和影响铀酰离子的吸附剂来合成丙烯腈(GG-G-AN)的螯合嫁接共聚物。这些接枝和改性共聚物的特征在于使用不同的技术viz。 FTIR,元素分析,TGA和FESEM。以5%口香糖溶液和1:3的丙烯腈与25克总辐射剂量的丙烯腈的比例完成最大接枝。通过BET分析计算接枝共聚物的表面积。吸附实验显示吸附能力有效地影响了PH6,最大吸附94%,其实质性地,其基于螯合剂的螯合剂的GG-G-AO表面引人入胜的潜力,用于吸附铀酰离子。使用光谱和EDX分析确认通过GG-G-AO吸收铀酰离子。结果表明,伪二阶反应和Langmuir吸附等温线通过分别具有R(2)0.998和0.978的线性拟合统计值显着综合。此外,热力学参数说明通过GG-G-AO的铀酰离子吸附过程吸热和自发。 GG-G-AO的解吸研究证实了在0.1M HCl中的可重用性高达三个循环。本研究证实了合成的GG-G-AO在环境修复中迫使使用。

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