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Molybdenum isotope fractionation in plants measured by MC-ICPMS

机译:MC-ICPMS测定植物中的钼同位素分馏

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A new method was developed for precise and accurate Mo isotope ratio measurements in plant materials by multi-collector inductively coupled plasma mass spectrometry (MC-ICPMS). It is based on the use of anion-exchange chromatography to isolate Mo from concomitant matrix elements in sample digests, a desolvating Apex-Q sample inlet system as a means of Mo signal enhancement and on-line normalisation to an admixed internal standard (Pd) to correct for instrumental mass bias. Mo isotope ratios were determined in sample solutions with Mo concentrations as low as 10 ng g?1. The developed method was successfully applied to the determination of natural variations in the isotopic composition of Mo in different anatomical parts of plants. We show for the first time that Mo isotope fractionation can occur during long-distance transport of Mo in plants. Our data also show that the magnitude of Mo isotope fractionation during translocation of Mo is different for different plant species. Mo isotope ratio data obtained by MC-ICPMS can therefore be used as a sensitive probe of processes controlling transport and distribution of molybdenum in plants.
机译:通过多收集器电感耦合等离子体质谱法(MC-ICPMS),开发了一种用于精确,准确地测量植物材料中Mo同位素比的新方法。它基于阴离子交换色谱法从样品消化液中伴随的基质元素中分离出Mo的方法,使用去溶剂化的Apex-Q样品入口系统作为Mo信号增强和在线标准化至混合内标(Pd)的手段校正工具质量偏差。在Mo浓度低至10 ng g?1的样品溶液中测定Mo同位素比。所开发的方法已成功地用于测定植物不同解剖部位Mo的同位素组成的自然变化。我们首次证明了Mo同位素分馏可在植物体内Mo的长距离运输过程中发生。我们的数据还表明,对于不同的植物物种,在Mo迁移过程中Mo同位素分级的大小是不同的。因此,通过MC-ICPMS获得的钼同位素比数据可用作控制植物中钼的运输和分布的敏感探针。

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