首页> 外文期刊>Journal of Applied Electrochemistry >Separation and direct detection of heavy lanthanides using new ion-exchange chromatography: Fast Fourier transform continuous cyclic voltammetry system
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Separation and direct detection of heavy lanthanides using new ion-exchange chromatography: Fast Fourier transform continuous cyclic voltammetry system

机译:使用新型离子交换色谱法分离和直接检测重镧系元素:快速傅里叶变换连续循环伏安系统

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In this study, possibilities of heavy lanthanides (Ho~(3+), Er ~(3+), Tm~(3+), Yb~(3+), and Lu~(3+)) separation on Nucleosil 100-5-SA, an ion-exchange column, was investigated. Separation of lanthanides was carried out using an isocratic program of α- hydroxyisobutyric acid (HIBA) eluent. Fast Fourier transform continuous cyclic voltammetry (FFT-CCV) at a gold microelectrode was used as the detection method. Simplicity, high precision and accuracy, time efficiency, and being economic are advantages of the developed technique in comparison with the previous reported ones. In addition, removal of oxygen from the test solution is not required, the detection limit is suitable and the technique is fast enough for determination of compounds in a wide variety of chromatographic methods. The waveform potential was continuously applied on an Au disk microelectrode (12.5 μm in radius). The influence of HIBA concentration as well as pH of eluent was optimized. The best performance of the method was obtained at pH of 4.0, scan rate of 30 V s~(-1), accumulation potential of -300 mV, and accumulation time of 0.3 s. The proposed method displays a linear dynamic range of 140 and 18,000 μg L~(-1) and a detection limit of 50 μg L ~(-1). Precision, inter-day precision, and accuracy of the assay were reported too. A comparative evaluation of heavy lanthanides distributed in a sophisticated monazite and xenotime minerals solutions was carried out using both FFT-CCV, and inductively coupled plasma-atomic emission spectrometry (ICP-AES).
机译:在这项研究中,在Nucleosil 100-上分离重镧系元素(Ho〜(3 +),Er〜(3 +),Tm〜(3 +),Yb〜(3+)和Lu〜(3+))的可能性。研究了5-SA,离子交换柱。镧系元素的分离使用α-羟基异丁酸(HIBA)洗脱液的等度程序进行。检测方法采用金微电极上的快速傅里叶变换连续循环伏安法(FFT-CCV)。与先前报道的技术相比,该技术的优点是简单,高精度和准确性,时间效率以及经济性。另外,不需要从测试溶液中除去氧气,检测极限是合适的,并且该技术足够快,可以用于多种色谱方法中的化合物测定。将波形电位连续施加在Au盘微电极(半径为12.5μm)上。优化了HIBA浓度和洗脱液pH的影响。该方法在pH为4.0,扫描速率为30 V s〜(-1),累积电势为-300 mV,累积时间为0.3 s时获得了最佳性能。所提出的方法显示线性动态范围为140和18,000μgL〜(-1),检测极限为50μgL〜(-1)。还报告了测定的精密度,日间精密度和准确性。使用FFT-CCV和电感耦合等离子体原子发射光谱法(ICP-AES),对分布在复杂的独居石和xenotime矿物溶液中的重镧系元素进行了比较评估。

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