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Synthesis and characterization of magnetic copper–iron-titanate and uptake studies of americium from nuclear waste solutions

机译:磁性铜 - 铁 - 钛酸盐与核废弃物溶液摄取研究的合成与表征

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摘要

Magnetic materials, which find enormous applications due to their benign nature, can have their efficiency and stability enhanced by incorporation of foreign materials and controlling the synthesis conditions. Herein carbon containing iron-titanate (TF) and copper–iron-titanate (CTF) magnetic materials were prepared by a solvo-thermal method in methanol at 200 °C/20 h. Physico-chemical analysis techniques, such as BET, PXRD, FE-SEM, HR-TEM, zeta potential, XPS and NH _(3) -TPD, were used to investigate the materials' structure and textural properties. Further, the prepared materials were used as a sorbent for the uptake of ~(241) Am radiotracer from low pH solutions. The adsorption studies showed excellent uptake efficiency for radioactive ~(241) Am by copper–iron-titanate (CTF), and it followed the Langmuir isotherm and pseudo-second order sorption kinetics. In addition, 1/ n calculated from the Freundlich isotherm (~0.33) indicated the favourable sorption of ~(152,154) Eu (surrogate of ~(241) Am) sorption by both CTF and TF. The NH _(3) -TPD studies revealed a change in the electronic properties of the metal centre and supports the chemisorption based sorption behaviour of the CTF magnetic material. Desorption of the loaded metal ion was facile with 0.1 M HNO _(3) and the CTF nanomaterial can be effectively reused.
机译:通过良性性质,磁性材料可以通过掺入异物并控制合成条件来增强它们的效率和稳定性。在此通过在200℃/ 20h的甲醇中的甲醇中的溶剂 - 热法制备含铁钛(TF)和铜 - 铁 - 钛酸盐(CTF)磁性材料。物理化学分析技术,如BET,PXRD,FE-SEM,HR-TEM,Zeta电位,XPS和NH _(3)-TPD,用于研究材料的结构和纹理性质。此外,将制备的材料用作吸附剂的吸附剂,用于来自低pH溶液的〜(241)氨基酰基的吸附剂。吸附研究表明,通过铜 - 铁钛(CTF),对放射性〜(241)的放射性〜(241)的优异摄取效率,并采用朗米尔等温线和伪二次阶吸附动力学。此外,来自Freundlich等温线(〜0.33)计算的1 / N表明CTF和TF的〜(241)欧盟的良好吸附(〜(241)的替代物)吸附。 NH _(3)-TPD研究显示了金属中心的电子性质的变化,并支持CTF磁性材料的化学吸附行为。载荷金属离子的解吸与0.1M HNO _(3)相容,可以有效地重复使用CTF纳米材料。

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