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Laser-induced breakdown spectroscopy analysis of sodium in pelletised pasture samples

机译:颗粒状牧场样品中钠的激光诱导击穿光谱分析

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Sodium concentration in plants inhibit shoot and root growth. Traditional wet-chemical methods of determining elemental concentrations require pre-treatment and leave unwanted by-products. Laser-induced breakdown spectroscopy is a technique that needs very little pre-treatment and produces no secondary waste. Laser-induced breakdown spectroscopy is used in this work to determine sodium concentrations in dried pasture samples. Temperature correction on the gathered spectra was attempted using Boltzmann and Saha-Boltzmann plots. These methods failed to deliver satisfactory results. Different combinations of internal reference standards were used on the Na I 818.326 nm line which resulted in an improved correlation with sodium concentration. Partial least squares regression was used on the gathered spectra to find emission lines that vary with the sodium concentration. Calcium, sodium, potassium and an argon line demonstrated high predictor weights. The Na I 818.326 nm, Na I 819.482 nm, K I 693.876 nm and K I 691.108 nm lines exhibited large dependence on sodium concentration. Building a calibration curve of sodium to potassium emission line intensity versus sodium to potassium concentration in the samples produced a correlation of R = 0.918 and an error in prediction of 0.0254.
机译:植物中的钠浓度会抑制芽和根的生长。确定元素浓度的传统湿化学方法需要进行预处理,并留下不需要的副产物。激光诱导击穿光谱法是一种需要非常少的预处理且不会产生二次废物的技术。在这项工作中,使用激光诱导击穿光谱法确定干燥牧场样品中的钠浓度。尝试使用Boltzmann和Saha-Boltzmann图对收集的光谱进行温度校正。这些方法未能提供令人满意的结果。 Na I 818.326 nm谱线上使用了内部参照标准品的不同组合,从而导致与钠浓度的相关性提高。在收集的光谱上使用偏最小二乘回归来查找随钠浓度变化的发射线。钙,钠,钾和氩气管线显示出高的预测重量。 Na I 818.326 nm,Na I 819.482 nm,K I 693.876 nm和K I 691.108 nm线表现出对钠浓度的较大依赖性。建立样品中钠到钾发射线强度与钠到钾浓度的校准曲线可得出R = 0.918的相关性,以及0.0254的预测误差。

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