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首页> 外文期刊>RSC Advances >Simultaneous extraction and preconcentration of some metal ions using eucalyptus-wood based activated carbon modified with silver hydroxide nanoparticles and a chelating agent: optimization by an experimental design
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Simultaneous extraction and preconcentration of some metal ions using eucalyptus-wood based activated carbon modified with silver hydroxide nanoparticles and a chelating agent: optimization by an experimental design

机译:使用以氢氧化银纳米粒子和螯合剂改性的桉木基活性炭同时萃取和预富集一些金属离子:通过实验设计进行优化

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In the present work, the solid phase extraction (SPE) of Cr(III), Cu(II), Pb(II), Ni(II), Cd(II), and Co(II) metal ions was carried out using a new adsorbent, activated carbon modified with silver hydroxide nanoparticles and a chelating agent. The activated carbon was produced by the acid treatment of the carbon obtained from eucalyptus wood. The effects of different parameters on the metal ion preconcentrations were studied and optimized by a central composite experimental design, which is one of the most applicable response surface methodologies used in the design of experiments. The four major variables affecting the adsorption process, consisting of the pH value, amount of adsorbent, amount of ligand, and flow rate of the sample solution, were optimized. In the desorption process, the volume, concentration, and flow rate of the eluting solvent were considered as the variables affecting the amount of metal ion preconcentration. At the end of each step, the metal ions were quantified by flame atomic absorption spectrometry (FAAS). Under the optimal conditions, the recovery percentage and enrichment factor for all the metal ions under study were higher than 98% and 100, respectively (except for the Ni(II) ion, with an enrichment factor of 83.6), which indicate the high performance of the presented preconcentration method. Also, the detection limits for the Cr(III), Cu(II), Pb(II), Ni(II), Cd(II), and Co(II) ions were found to be 4.7, 3, 4, 1.7, 1.6, and 2.3 mu g L-1, respectively. The relative standard deviation values for six replicate measurements of 0.2 mg L-1 of each metal ion were lower than 2.62%. Thus this preconcentration method can have a high accuracy and precision in the determination of trace amounts of potentially toxic metal ions.
机译:在目前的工作中,使用A2进行了Cr(III),Cu(II),Pb(II),Ni(II),Cd(II)和Co(II)金属离子的固相萃取(SPE)。新的吸附剂,用氢氧化银纳米颗粒和螯合剂改性的活性炭。通过对从桉木获得的碳进行酸处理来生产活性炭。通过中央复合实验设计研究和优化了不同参数对金属离子预浓缩的影响,该设计是实验设计中最适用的响应面方法之一。优化了影响吸附过程的四个主要变量,包括pH值,吸附剂的量,配体的量和样品溶液的流速。在解吸过程中,洗脱溶剂的体积,浓度和流速被视为影响金属离子预浓缩量的变量。在每个步骤结束时,通过火焰原子吸收光谱法(FAAS)对金属离子进行定量。在最佳条件下,所研究的所有金属离子的回收率和富集系数分别高于98%和100(Ni(II)离子除外,富集系数为83.6),表明其高性能提出的预浓缩方法。此外,发现Cr(III),Cu(II),Pb(II),Ni(II),Cd(II)和Co(II)离子的检出限为4.7、3、4、1.7, L-1分别为1.6和2.3μg。每种金属离子0.2 mg L-1的六次重复测量的相对标准偏差值低于2.62%。因此,该预浓缩方法在测定痕量潜在有毒金属离子时可以具有很高的准确性和精确度。

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