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Benchtop and Handheld Energy-Dispersive X-Ray Fluorescence (EDXRF) as Alternative for Selenium Concentration Measurement in Biofortified Broccoli Seedling

机译:BENCHTOP和手持能量分散X射线荧光(EDXRF)作为生物纺织西兰花幼苗中硒浓度测量的替代方案

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Biofortification of crops with selenium (Se) is an effective strategy to increase the consumption of this micronutrient. Inductively coupled plasma mass spectrometry (ICP-MS) is one of the most used techniques in quantifying Se. However, due to some disadvantages (high cost, long analysis time, and being destructive), there is a need for new alternatives to Se quantification. This study aimed at establishing instrumental parameters for Se quantification, using two energy-dispersive X-ray fluorescence spectrometry (EDXRF) techniques (benchtop and handheld) in Se-biofortified broccoli seedlings and comparing it with ICP-MS. The results showed that the selection of proper filters for both EDXRF systems was crucial for determining Se and, when compared with ICP-MS, presented similar results for selenium-biofortified broccoli seedling treatments (BS50Se). In addition, the EDXRF techniques presented a Se limit of detection (LOD) at 0.6-0.9mgkg(-1). This study demonstrates that EDXRF systems were successfully applied to concentration measurement of Se in biofortified samples and linked to low cost and shorter analysis time.
机译:用硒的作物生物侵蚀(SE)是增加这种微量营养素消耗的有效策略。电感耦合等离子体质谱(ICP-MS)是定量SE中最使用的技术之一。然而,由于某些缺点(高成本,长分析时间和破坏性),需要新的替代品来定量。该研究旨在建立SE - 生物杂化的西兰花幼苗中的两个能量分散X射线荧光光谱法(BEDCHTOP和手持式)的SE定量的仪器参数,并将其与ICP-MS进行比较。结果表明,针对EDXRF系统的适当滤波器的选择对于确定SE至关重要,并且与ICP-MS相比,展示了硒 - 生物化的西兰花幼苗处理(BS50SE)的类似结果。此外,EDXRF技术呈现了0.6-0.9mgkg(-1)的检测(LOD)的SE限制。该研究表明,EDXRF系统成功地应用于生物染色样品中SE的浓度测量,并与低成本和更短的分析时间连接。

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