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A cloud point extraction procedure for gallium, indium and thallium determination in liquid crystal display and sediment samples

机译:浊点萃取法测定液晶显示器和沉积物样品中的镓,铟和th

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A simple, sensitive and rapid cloud point extraction (CPE) methodology has been developed for the selective separation and preconcentration of gallium, indium and thallium, after complexation with gallic acid in the presence of Triton X-114 as a non-ionic surfactant. The quantitative extraction of gallium, indium and thallium was performed at pH 2.5, with 0.04 mmol La?’1 gallic acid, and 0.05% (w/v) Triton X-114 at 40 ?°C. The dilution of the surfactant-rich phase with acidified methanol was performed after phase separation, and the metal ions were determined using flame atomic absorption spectrometry. Under the optimized experimental conditions, the calibration curve is linear over the concentration range of 6a€“150 ng mLa?’1 for gallium, 2a€“150 ng mLa?’1 for indium, and 2a€“100 ng mLa?’1 for thallium. The limits of detection, based on three times the standard deviation of a blank signal by seven replicate measurements were 3.50, 1.25 and 0.92 ng mLa?’1. The relative standard deviations of this method were 1.55, 1.40 and 1.82% for gallium, indium and thallium, respectively (C = 50 ng mLa?’1, n = 7). The results showed that the developed method was not susceptible to interference effects, providing good recoveries. The developed method was successfully applied to gallium, indium and thallium determination in sediments and mobile phone liquid crystal display samples with satisfactory results.
机译:在Triton X-114作为非离子表面活性剂存在下,与没食子酸络合后,已开发出一种简单,灵敏且快速的浊点萃取(CPE)方法,用于选择性分离和预浓缩镓,铟和th。镓,铟和al的定量萃取是在pH值为2.5的条件下,在40°C下使用0.04 mmol La?’1没食子酸和0.05%(w / v)Triton X-114进行的。在相分离后,用酸化的甲醇稀释富含表面活性剂的相,并使用火焰原子吸收光谱法测定金属离子。在优化的实验条件下,校准曲线在镓的浓度范围为6a€150 ng mLa?1的铟,铟的浓度为2a€150 ng mLa?1'和2a€100 ng mLa?1的范围内是线性的。用于th。根据七次重复测量得出的空白信号的标准偏差的三倍,检测极限为3.50、1.25和0.92 ng mLa?-1。镓,铟和al的这种方法的相对标准偏差分别为1.55%,1.40和1.82%(C = 50 ng mLa?1,n = 7)。结果表明,所开发的方法不易受到干扰的影响,具有良好的回收率。该方法成功用于沉积物和手机液晶显示样品中镓,铟和th的测定,结果令人满意。

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