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Selective Divalent Cobalt Ions Detection Using Ag2O3-ZnO Nanocones by ICP-OES Method for Environmental Remediation

机译:ICP-OES法检测Ag2O3-ZnO纳米锥选择性二价钴离子用于环境修复

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摘要

Here, we have synthesized Ag2O3-ZnO nanocones (NCs) by a wet-chemical route using reducing agents at low temperature. The structural, optical and morphological properties of Ag2O3-ZnO NCs were investigated by several conventional techniques such as powder XRD, XPS, FESEM, XEDS, FTIR and UV/vis. spectroscopy. The analytical parameters of prepared NCs were also calculated for a selective detection of divalent cobalt [Co(II)] prior to its determination by inductively coupled plasma-optical emission spectrometry (ICP-OES). The selectivity of NCs toward various metal ions, including Cd(II), Co(II), Cr(III), Cu(II), Fe(III), Ni(II), and Zn(II) was studied. Results of the selectivity study demonstrated that Ag2O3-ZnO NC phase was the most selective towards Co(II) ion. The uptake capacity for Co(II) ion was experimentally calculated to be ∼76.69 mgg−1. Moreover, adsorption isotherm data provided that the adsorption process was mainly monolayer on homogeneous adsorbent surfaces of Ag2O3-ZnO NCs. Kinetic study revealed that the adsorption of Co(II) on Ag2O3-ZnO NCs phase followed the pseudo-second-order kinetic model. In addition, thermodynamic results provided that the adsorption mechanism of Co(II) ions on Ag2O3-ZnO NCs was a spontaneous process and thermodynamically favorable. Finally, the proposed method was validated by applying it to real environmental water samples with reasonable results.
机译:在这里,我们已经使用还原剂在低温下通过湿化学路线合成了Ag2O3-ZnO纳米锥(NCs)。通过几种常规技术,如粉末XRD,XPS,FESEM,XEDS,FTIR和UV / vis研究了Ag2O3-ZnO NCs的结构,光学和形态学性质。光谱学。在通过电感耦合等离子体发射光谱法(ICP-OES)测定二价钴[Co(II)]之前,还需要计算准备好的NC的分析参数,以选择性检测二价钴[Co(II)]。研究了NCs对各种金属离子的选择性,包​​括Cd(II),Co(II),Cr(III),Cu(II),Fe(III),Ni(II)和Zn(II)。选择性研究的结果表明,Ag2O3-ZnO NC相对Co(II)离子的选择性最高。实验计算得出Co(II)离子的吸收容量为〜76.69 mgg -1 。此外,吸附等温线数据表明,吸附过程主要是在Ag2O3-ZnO NCs均匀吸附表面上的单层吸附。动力学研究表明,Co(II)在Ag2O3-ZnO NCs相上的吸附遵循伪二级动力学模型。另外,热力学结果表明Co(II)离子在Ag2O3-ZnO NCs上的吸附机理是自发的,并且在热力学上是有利的。最后,将该方法应用于实际环境水样进行了验证,并取得了合理的结果。

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