首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Application of multiwall carbon nanotubes impregnated with 5-dodecylsalicylaldoxime for on-line copper preconcentration and determination in water samples by flame atomic absorption spectrometry
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Application of multiwall carbon nanotubes impregnated with 5-dodecylsalicylaldoxime for on-line copper preconcentration and determination in water samples by flame atomic absorption spectrometry

机译:浸渍有5-十二烷基水杨醛肟的多壁碳纳米管在在线铜富集和火焰原子吸收光谱法测定水中的应用

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The paper presents application of multiwall carbon nanotubes (MWCNTs) modified with 5-dodecylsalicylaldoxime to copper(II) flow-injection on-line preconcentration and flame atomic absorption spectrometric (FAAS) determination. Two new sorbents were obtained by impregnation of MWCNTs with Cu(II)-LIX 622 ? complex, however in the first case modification was preceded by carbon wall activation via oxidization (Cu-LIX-CNT-A sorbent), and in the second one no surface activation was performed (Cu-LIX-CNT sorbent). It was found that effective leaching of initially introduced copper and Cu(II) retained in preconcentration process could be realized with the use 7% and 5% (v/v) nitric acid, for particular sorbents. Testing the influence of loading solution pH and rate of loading on sorption it was found out that optimal range of loading solution pH was about 4.5-6.3 for activated and 6.15-6.25 for non-activated CNT. Investigation of sorption kinetics showed that the process can be described by pseudo-second order reaction model. Sorption equilibrium conditions (90% sorption) for LIX-CNT-A and LIX-CNT were obtained after 8-15 min, respectively and maximum sorption capacity for the new sorbents amounted to 18.1 mg g ~(-1) and 31.6 mg g ~(-1), respectively. For the examined sorbents enrichment factors increased with extension of loading time up to 180 s: linearly for activated and non-linearly for non-activated MWCNTs. Influence of potential interferents such as Cd(II), Zn(II), Fe(III), Mg(II) and Ca(II) ions on copper(II) sorption on the new CNT materials was examined individually and with the use of 2 ~(5-2) factorial design. The study revealed significant interference from iron, magnesium and calcium ions at relatively high concentrations. Applicability of the proposed sorbents was tested for Cu(II) determination in various kinds of water samples and the results were compared with those obtained with the use of ICP MS as a reference technique. Copper(II) determination in two certified reference materials: waste water (EU-H-3) and ground (ES-H-2) water was performed in order to assess trueness of the evaluated preconcentration procedures. Satisfactory values of relative errors were obtained for both procedures.
机译:本文介绍了用5-十二烷基水杨醛肟改性的多壁碳纳米管(MWCNT)在铜(II)流动注射在线预富集和火焰原子吸收光谱法(FAAS)测定中的应用。用Cu(II)-LIX 622?浸渍MWCNTs得到了两种新的吸附剂。但是,在第一种情况下,修饰是通过氧化作用使碳壁活化(Cu-LIX-CNT-A吸附剂),而在第二种情况下,则没有进行表面活化(Cu-LIX-CNT吸附剂)。已经发现,通过使用7%和5%(v / v)的硝酸(特别是吸附剂),可以实现对在预浓缩过程中保留的初始引入的铜和Cu(II)的有效浸出。测试加载溶液pH和加载速率对吸附的影响,发现加载溶液pH的最佳范围对于活化的CNT为约4.5-6.3,对于未活化的CNT为6.15-6.25。吸附动力学研究表明,该过程可以用伪二级反应模型来描述。在8-15分钟后分别获得LIX-CNT-A和LIX-CNT的吸附平衡条件(90%吸附),新吸附剂的最大吸附容量分别为18.1 mg g〜(-1)和31.6 mg g〜 (-1)。对于所研究的吸附剂,富集因子随着上样时间的延长而增加,直至180 s:活化的MWCNTs呈线性,非活化的CNTs呈非线性。单独研究了使用Cd(II),Zn(II),Fe(III),Mg(II)和Ca(II)离子等潜在干扰物对新型CNT材料吸附铜(II)的影响。 2〜(5-2)析因设计。研究表明,铁,镁和钙离子在较高浓度下会产生明显干扰。测试了所建议的吸附剂在各种水样中测定Cu(II)的适用性,并将结果与​​使用ICP MS作为参考技术获得的结果进行了比较。为了评估所评估的预浓缩程序的真实性,在两种认证的参考材料中进行了铜(II)的测定:废水(EU-H-3)和地下水(ES-H-2)。两种方法均获得了令人满意的相对误差值。

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