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Synthesis, characterization and evaluation of nano-zirconium vanadate ion exchanger by using three different preparation techniques

机译:三种不同制备技术对钒酸锆锆离子交换剂的合成,表征和评价

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摘要

Sol-gel, homogeneous precipitation and hydrothermal synthesis are three different preparation techniques have been used as an attempt to synthesize nano-zirconium vanadate with properties suitable to be used as ion exchangers. The impact of the synthetic preparation variables such as the reactant concentrations, reaction temperature and reaction time on the ion exchange capacity of the produced ion exchanger has been considered for each preparation technique. One sample from each preparation technique having the largest ion exchange capacity has been selected to be physically and chemically characterized using various analytical techniques such as XRD, TGA, DSC, pH titration, FT1R and SEM in order to determine the properties of the ion exchanger produced from each technique. For all the studied ZrV samples it can be presumed that they have the ion exchange affinity sequences for alkali metal ions K > Na > Li, the order for the alkaline earth metals is Ba > Ca > Mg and their affinity for radioactive metals follow Cs > Sr. Moreover, the prepared materials are of high thermal and radiation stabilities. Also they have high chemical stabilities toward wide concentration ranges of acid, basic as well as polar solvents. It has been deduced from the X-ray analysis that ZrV produced from the sol-gel technique has an amorphous structural. While those produced from the homogeneous precipitation and hydrothermal synthesis techniques, in the nano-scale have semi-crystalline structural. Furthermore, SEM confirms that particle size of the all studied prepared ZrV samples have nano-diameters of range 50-60 nm. Specific surface area of the three different prepared ion exchangers are found to be equal to 187, 192 and 320 m~2/g for sol-gel, homogeneous precipitation and hydrothermal, respectively. A tentative structural formula of Zr(OH)_2(HVO_4)_2·2H_2O has been proposed for all studied samples on the basis of on FTIR, DSC and TGA results.
机译:溶胶-凝胶法,均相沉淀法和水热合成法是三种不同的制备技术,已被用来合成具有适合用作离子交换剂的性能的纳米钒酸锆。对于每种制备技术,已经考虑了合成制备变量例如反应物浓度,反应温度和反应时间对所产生的离子交换剂的离子交换容量的影响。使用各种分析技术(例如XRD,TGA,DSC,pH滴定,FT1R和SEM)从每种制备技术中选择一种具有最大离子交换容量的样品进行物理和化学表征,以确定所产生的离子交换剂的性能。从每种技术。对于所有研究的ZrV样品,可以假定它们具有对碱金属离子的离子交换亲和力序列K> Na> Li,碱土金属的顺序为Ba> Ca> Mg,并且它们对放射性金属的亲和力遵循Cs>资深的,所制备的材料具有很高的热稳定性和辐射稳定性。它们还对宽范围的酸,碱以及极性溶剂具有很高的化学稳定性。从X射线分析可以推断出,溶胶-凝胶技术生产的ZrV具有无定形结构。而那些是由均相沉淀和水热合成技术生产的,在纳米级具有半晶体结构。此外,SEM证实所有研究制备的ZrV样品的粒径均具有50-60nm的纳米直径。对于溶胶-凝胶,均相沉淀和水热,三种不同制备的离子交换剂的比表面积分别等于187、192和320 m〜2 / g。根据FTIR,DSC和TGA结果,提出了针对所有研究样品的Zr(OH)_2(HVO_4)_2·2H_2O的初步结构式。

著录项

  • 来源
    《Materials Research Bulletin》 |2011年第1期|p.105-118|共14页
  • 作者

    M.M. Abd El-Latif; M.F. Elkady;

  • 作者单位

    Fabrication Technology Department, Advanced Technology and New Materials Research Institute (ATNMRI), Mubarak City for Scientific Research and Technology Applications (MuCSAT), Alexandria, Egypt,Advanced Technology and New Materials Research Institute, Mubarak City for Scientific Research and Technology Applications, New Borg El-Arab, P.O. Box: 21934 Alex, Alexandria, Egypt;

    Fabrication Technology Department, Advanced Technology and New Materials Research Institute (ATNMRI), Mubarak City for Scientific Research and Technology Applications (MuCSAT), Alexandria, Egypt;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Nanostructures; B. Chemical synthesis; B. Sol-gel chemistry; C. X-ray diffraction; C. Thermogravimetric analysis;

    机译:A.纳米结构;B.化学合成;B.溶胶-凝胶化学;C. X射线衍射;C.热重分析;

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