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Portable X-Ray Fluorescence Spectroscopy for Rapid and Cost-Effective Determination of Elemental Composition of Ground Forage

机译:便携式X射线荧光光谱法可快速经济高效地测定地面饲料的元素组成

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摘要

The recent development of portable X-ray fluorescence spectrometers (PXRF) has created new avenues for rapid plant elemental concentration determination at reduced cost while avoiding hazardous chemicals. A few studies have indicated the potential use of PXRF for homogenous plant tissue analysis. However, there is a lack of information for analysis of heterogeneous plant samples like livestock forage, which consists of a mixture of several species and plant parts, each varying in elemental concentration. Our objective was to evaluate PXRF for forage analysis, specifically the effect of forage particle size and scan time on important elements including P, K, Ca, and Fe determination. Hay samples (n = 42) were oven dried (60°C for 3 days) and ground into three particle sizes (≤0.5 mm, 0.25–0.5 mm and 1–2 mm). Prepared samples were scanned by PXRF using a vacuum (<10 torr) without a filter. Samples were placed in cups over thin prolene X-ray film and scanned for 180 s. A subset (n = 29) were also scanned for 60 and 120 s. PXRF counts for P, K, Ca, and Fe were compared with laboratory Inductively Coupled Plasma Optical Emission Spectroscopy (ICP) determinations, using regression models. Results indicated that these elements could potentially be determined with PXRF (r2 ≥ 0.70) in heterogeneous forage samples. Relationship strength increased with decreasing particle size, however, the relationship was still strong (r2 ≥ 0.57) at the largest particle size. Scanning time did not affect the relationship with ICP concentration for any of the particle sizes evaluated. This work demonstrated that with the right sample preparation PXRF can obtain results comparable to acid digestion and ICP regardless of sample composition, and suggests the potential for in situ determinations.
机译:便携式X射线荧光光谱仪(PXRF)的最新开发开辟了新的途径,可以以较低的成本快速确定植物元素的浓度,同时避免使用有害化学物质。一些研究表明PXRF在同质植物组织分析中的潜在用途。但是,缺乏分析异质植物样品(如牲畜饲料)的信息,该样品由几种物种和植物部分的混合物组成,每种元素的元素浓度各不相同。我们的目标是评估用于饲料分析的PXRF,特别是饲料粒度和扫描时间对重要元素(包括P,K,Ca和Fe的测定)的影响。将干草样品(n = 42)烘干(60°C 3天),然后研磨成三种粒径(≤0.5毫米,0.25-0.5毫米和1-2毫米)。使用不带过滤器的真空(<10托)通过PXRF扫描制备的样品。将样品放在薄的Prolene X射线胶片上的杯子中,并扫描180 s。还扫描了一个子集(n = 29)60和120 s。使用回归模型,将P,K,Ca和Fe的PXRF计数与实验室电感耦合等离子体发射光谱(ICP)测定进行比较。结果表明,这些元素可能通过异质饲料样品中的PXRF(r 2 ≥0.70)确定。关联强度随粒径的减小而增加,但是在最大粒径下,关联仍然很强(r 2 ≥0.57)。对于所评估的任何粒径,扫描时间均不影响与ICP浓度的关系。这项工作表明,使用正确的样品制备方法,无论样品组成如何,PXRF均可获得与酸消解和ICP相当的结果,并暗示了原位测定的潜力。

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