首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >A chemometric approach exploring Derringer's desirability function for the simultaneous determination of Cd, Cr, Ni and Pb in micronutrient fertilizers by laser-induced breakdown spectroscopy
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A chemometric approach exploring Derringer's desirability function for the simultaneous determination of Cd, Cr, Ni and Pb in micronutrient fertilizers by laser-induced breakdown spectroscopy

机译:通过激光诱导的击穿光谱法同时测定微量营养剂中CD,Cr,Ni和Pb的CD,Cr,Ni和Pb,探索Derringer的可期望函数

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Given the large variety of raw materials used in manufacturing micronutrient fertilizers, the quantitative determination of Cd, Cr, Ni and Pb in such complex matrices is challenging and often impairs the routine analysis even in modern laboratories. In the present work, a LIBS method for the direct analysis of pelletized test samples was developed to find a solution where the optimization relied on both analytical sensitivity and limit of detection by combining Doehlert experimental design with Derringer's desirability function. The test samples were analyzed in the form of pressed pellets prepared from a large variety of laboratory samples previously comminuted in a planetary ball mill. LIBS experiments were carried out with a Q-switched Nd:YAG laser at 1064 nm, and a spectrometer with Echelle optics and an intensified charged-coupled device. The optimized operating conditions were thus found with laser pulses of 25 J cm(-2) (750 mu m laser spot size), 30 accumulated laser pulses per site, 2.5 mu s gate delay, and 10.0 mu s integration time gate. Cd, Cr, Ni and Pb mass fractions, obtained by a validated reference method based on microwave-assisted acid digestion and ICP OES measurements, were used to build the calibration models. Linear correlation coefficients between the analyte mass fractions and the corresponding emission intensities ranged from 0.9980 for Pb to 0.9999 for Cr, and the limits of detection were 5mg kg(-1) Cd, 7 mg kg(-1) Cr, 15 mg kg(-1) Ni and 50 mg kg(-1) Pb. The coefficients of variation of measurements (n = 10 sites per pellet, 30 laser pulses per site) varied from 0.5% (Ni, Pb) to 15% (Cd, Cr). The proposed method simplifies the analytical sequence and complies with the purpose of fast and accurate assessment of inorganic contamination profiles in micronutrient fertilizers.
机译:鉴于制造微量营养器中使用的各种原料,在这种复杂基质中的CD,Cr,Ni和Pb的定量测定是挑战性的,并且通常甚至在现代实验室中损害常规分析。在本作本作中,开发了一种用于直接分析造粒测试样品的LIBS方法,以找到通过将道爱尔实验设计与Derringer的期望功能相结合的分析灵敏度和检测极限的解决方案。以先前在行星球磨机中粉碎的大量实验室样品制备的压制颗粒的形式分析测试样品。 LIBS实验用Q开关的Nd:YAG激光器在1064nm处进行,以及具有梯度光学器件的光谱仪和强化的充电耦合器件。因此,使用25J厘米(-2)(激光光斑尺寸为750μm)(750μm)(750μm)的激光脉冲,每位站点,2.5亩的栅极延迟和10.0μs积分时间栅极的优化操作条件。通过基于微波辅助酸消解和ICP OES测量的验证参考方法获得的CD,Cr,Ni和Pb质量分数,用于构建校准模型。分析物质量分数和相应发射强度之间的线性相关系数为0.9980,对于Cr,对0.99990.999,检测限为5mg kg(-1)Cd,7mg kg(-1)Cr,15mg kg( -1)Ni和50mg kg(-1)pb。测量的变化系数(每个颗粒的N = 10位点,每位30个激光脉冲)从0.5%(Ni,Pb)变化至15%(CD,Cr)。该方法简化了分析序列并符合快速准确地评估微量营养剂肥料中的无机污染曲线。

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