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Laser ablation inductively coupled plasma optical emission spectrometry for analysis of pellets of plant materials

机译:激光烧蚀电感耦合等离子体发射光谱法分析植物颗粒

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An evaluation of laser ablation inductively coupled plasma optical emission spectroscopy (LAICP OES) for the direct analysis of pelleted plant material is reported. Ground leaves of orange citrus, soy and sugarcane were comminuted using a high-speed ball mill, pressed into pellets and sampled directly with laser ablation and analyzed by ICP OES. The limits of detection (LODs) for the method ranged from as low as 0.1 mg kg~(-1) for Zn to as high as 94 mg kg~(-1) for K but were generally below 6 mg kg~(-1) for most of the elements of interest. A certified reference material consisting of a similar matrix (NIST SRM 1547 peach leaves) was used to check the accuracy of the calibration and the reported method resulted in an average bias of ~5% for all the elements of interest. The precision for the reported method ranged from as low as 4% relative standard deviation (RSD) for Mn to as high as 11% RSD for Zn but averaged ~6.5% RSD for all the elements (n = 10). The proposed method was tested for the determination of Ca, Mg, P, K, Fe, Mn, Zn and B, and the results were in good agreement with those obtained for the corresponding acid digests by ICP-OES, no differences being observed by applying a paired t-test at the 95% confidence level. The reported direct solid sampling method provides a fast alternative to acid digestion that results in similar and appropriate analytical figures of merit with regard to sensitivity, accuracy and precision for plant material analysis.
机译:据报道,对直接用于丸状植物材料分析的激光烧蚀-电感耦合等离子体发射光谱法(LAICP OES)进行了评估。使用高速球磨机粉碎橙柑桔,大豆和甘蔗的磨碎的叶子,压成颗粒,直接用激光烧蚀取样,并用ICP OES分析。该方法的检出限(LOD)从锌的低至0.1 mg kg〜(-1)到钾的高至94 mg kg〜(-1),但通常低于6 mg kg〜(-1 )以获取大多数感兴趣的元素。使用由相似基质(NIST SRM 1547桃叶)组成的经过认证的参考材料检查校准的准确性,所报告的方法对所有感兴趣元素的平均偏差约为5%。该方法的精密度范围从锰的低至4%的相对标准偏差(RSD)到锌的高达11%的RSD到所有元素的平均〜6.5%的RSD(n = 10)。测试了该方法对钙,镁,磷,钾,铁,锰,锌和硼的测定,结果与通过ICP-OES对相应的酸消解液所获得的结果吻合良好,在95%置信水平下应用配对t检验。报道的直接固体采样方法提供了一种快速的酸消化方法,可在植物材料分析的灵敏度,准确性和精密度方面获得相似且适当的分析品质因数。

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