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Magnetically retrievable Ce-doped Fe3O4 nanoparticles as scaffolds for the removal of azo dyes

机译:磁性可检索的CE掺杂Fe3O4纳米粒子作为支架,用于去除偶氮染料

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摘要

Considering the significant impact of magnetically retrievable nanostructures, herein, Fe3O4 and Ce-doped Fe3O4 nanoparticles were employed as scaffolds for the removal of the Reactive Black 5 (RB5) azo dye. We synthesized the Ce-doped Fe3O4 nanoparticles via hydrothermal treatment at 120 degrees C for 10 h with varying cerium concentrations (1.5-3.5%) and characterized them using basic techniques such as FTIR and UV-visible spectroscopy, and XRD analysis. The retention of their magnetic behaviors even after cerium amalgamation was demonstrated and confirmed by the VSM results. FESEM and EDX were used for the morphological and purity analysis of the synthesized nanoabsorbents. XPS was carried out to determine the electronic configuration of the synthesized samples. The porosity of the magnetic nanoparticles was investigated by BET analysis, and subsequently, the most porous sample was further used in the adsorption studies for the cleanup of RB5 from wastewater. The dye adsorption studies were probed via UV-visible spectroscopy, which indicated the removal efficiency of 87%. The prepared Ce-doped Fe3O4 nanoabsorbent showed the high adsorption capacity of 84.58 mg g(-1) towards RB5 in 40 min. This is attributed to the electrostatic interactions between the nanoabsorbent and the dye molecules and high porosity of the prepared sample. The adsorption mechanism was also analyzed. The kinetic data well-fitted the pseudo-first-order model, and the adsorption capability at different equilibrium concentrations of the dye solution indicated monolayer formation and chemisorption phenomena. Furthermore, the magnetic absorbent could be rapidly separated from the wastewater using an external magnetic field after adsorption.
机译:考虑到磁性可检索纳米结构的显着影响,本文中,Fe3O4和Ce掺杂的Fe3O4纳米颗粒用作支架,用于去除反应性黑5(RB5)偶氮染料。我们通过120℃的水热处理在120℃下合成Ce掺杂的Fe3O4纳米颗粒,其具有不同的铈浓度(1.5-3.5%),并使用诸如FTIR和UV可见光光谱等基本技术进行表征,以及XRD分析。通过VSM结果证明并确认它们甚至在羟胺胺后保持磁性行为的保留。 FESEM和EDX用于合成纳米吸收剂的形态学和纯度分析。进行XPS以确定合成样品的电子配置。通过BET分析研究磁性纳米粒子的孔隙率,随后,在废水中清除RB5的吸附研究中,进一步研究了最多孔的样品。通过UV可见光光谱探测染料吸附研究,表明去除效率为87%。制备的CE掺杂Fe3O4纳米吸收剂显示出40分钟内朝向RB5的高吸附容量为84.58mg(-1)。这归因于纳米吸收剂和染料分子之间的静电相互作用和制备样品的高孔隙率。还分析了吸附机制。在染料溶液的不同平衡浓度下,动力学数据很好地安装了伪第一阶模型,并表明了单层形成和化学吸附现象。此外,在吸附后,可以使用外部磁场从废水中从废水中迅速分离磁性吸收剂。

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  • 来源
    《RSC Advances 》 |2019年第40期| 共13页
  • 作者单位

    Panjab Univ Ctr Adv Studies Chem Dept Chem Chandigarh 160014 India;

    Panjab Univ Ctr Adv Studies Chem Dept Chem Chandigarh 160014 India;

    Panjab Univ Ctr Adv Studies Chem Dept Chem Chandigarh 160014 India;

    Panjab Univ Dr SS Bhatnagar Univ Inst Chem Engn &

    Technol SSB Chandigarh 160014 India;

    CSIR Cent Sci Instruments Org Sect 30 Chandigarh 160030 India;

    UGC DAE Consortium Sci Res Univ Campus Khandwa Rd Indore 452017 Madhya Pradesh India;

    Panjab Univ Ctr Adv Studies Chem Dept Chem Chandigarh 160014 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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