首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Highly efficient removal of uranium from highly acidic media achieved using a phosphine oxide and amino functionalized superparamagnetic composite polymer adsorbent
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Highly efficient removal of uranium from highly acidic media achieved using a phosphine oxide and amino functionalized superparamagnetic composite polymer adsorbent

机译:使用磷酸氧化膦和氨基官能化超顺磁性复合聚合物吸附剂的高效除去铀的高效除去铀

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摘要

It is very important to develop magnetic adsorbents for the efficient extraction of uranium from highly acidic media. In this work, a novel magnetic adsorbent Fe3O4/P(DMAA-DMP) functionalized with phosphine oxide and amino groups has been synthesized by distillation-precipitation polymerization of diallylamine (DMAA) and di(methacryloxyethyl)phosphate (DMP). Surprisingly, Fe3O4/P(DMAA-DMP) not only showed an outstanding adsorption efficiency for uranium in highly acidic solution, but also had excellent acid resistance. The maximum adsorption capacity (q(max)) of the magnetic adsorbent based on the Langmuir model could reach 196.4 mg g(-1) even at a pH value of 0.5, which was much higher than that of all the magnetic adsorbents reported previously. And the structure and properties of the adsorbent did not change obviously after being immersed in HNO3 solution at a pH value of 0.5 for 24 h. Besides, the magnetic adsorbent also had a good selectivity for uranium and an excellent recyclability. XPS analysis confirmed that the outstanding adsorption capacity of the magnetic adsorbent for uranium was attributed to the strong complexation with phosphine oxide and amino groups. This work displays a simple route for developing a magnetic adsorbent for the highly efficient adsorption of uranium in highly acidic media, which is very significant for the recovery of uranium from highly acidic solution.
机译:开发磁性吸附剂以获得高度酸性介质的有效提取磁性吸附剂是非常重要的。在这项工作中,通过蒸馏沉淀聚合(DMAA)和DI(甲基丙烯酰氧基乙基)磷酸酯(DMP),合成了用氧化膦和氨基官能化的新型磁吸附剂Fe3O4 / P(DMAA-DMP)。令人惊讶的是,Fe3O4 / p(DMAA-DMP)不仅为高度酸性溶液呈铀的出色吸附效率,而且具有优异的耐酸性。基于Langmuir模型的磁性吸附剂的最大吸附容量(Q(最大))即使在0.5的pH值为0.5的pH值,达到196.4mg g(-1),其远高于先前所报道的所有磁性吸附剂的pH值。并且在浸入HNO 3溶液中的pH值为0.5℃时,吸附剂的结构和性质不会显而易见。此外,磁性吸附剂还具有良好的铀选择性和优异的再循环性。 XPS分析证实,铀磁性吸附剂的出色吸附能力归因于氧化膦和氨基的强络合。这项工作显示了一种简单的途径,用于开发磁性吸附剂,用于高效地对高度酸性培养基的铀的吸附,这对于从高度酸性溶液中铀的回收率非常显着。

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    East China Univ Technol State Key Lab Nucl Resources &

    Environm Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol State Key Lab Nucl Resources &

    Environm Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol State Key Lab Nucl Resources &

    Environm Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol State Key Lab Nucl Resources &

    Environm Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol State Key Lab Nucl Resources &

    Environm Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol State Key Lab Nucl Resources &

    Environm Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol Jiangxi Prov Key Lab Polymer Micro Nano Mfg &

    Dev Nanchang 330013 Jiangxi Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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