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Some Rare Earth Elements Analysis by Microwave Plasma Torch Coupled with the Linear Ion Trap Mass Spectrometry

机译:微波等离子体炬与线性离子阱质谱联用分析稀土元素

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摘要

A sensitive mass spectrometric analysis method based on the microwave plasma technique is developed for the fast detection of trace rare earth elements (REEs) in aqueous solution. The plasma was produced from a microwave plasma torch (MPT) under atmospheric pressure and was used as ambient ion source of a linear ion trap mass spectrometer (LTQ). Water samples were directly pneumatically nebulized to flow into the plasma through the central tube of MPT. For some REEs, the generated composite ions were detected in both positive and negative ion modes and further characterized in tandem mass spectrometry. Under the optimized conditions, the limit of detection (LOD) was at the level 0.1 ng/mL using MS2 procedure in negative mode. A single REE analysis can be completed within 2~3 minutes with the relative standard deviation ranging between 2.4% and 21.2% (six repeated measurements) for the 5 experimental runs. Moreover, the recovery rates of these REEs are between the range of 97.6%–122.1%. Two real samples have also been analyzed, including well and orange juice. These experimental data demonstrated that this method is a useful tool for the field analysis of REEs in water and can be used as an alternative supplement of ICP-MS.
机译:为了快速检测水溶液中的痕量稀土元素,开发了一种基于微波等离子体技术的灵敏质谱分析方法。等离子体是在大气压力下由微波等离子体炬(MPT)产生的,并用作线性离子阱质谱仪(LTQ)的环境离子源。将水样品直接气动雾化,以通过MPT的中心管流入血浆。对于某些稀土元素,可在正离子和负离子模式下检测生成的复合离子,并在串联质谱法中对其进行进一步表征。在最佳条件下,采用负离子模式的MS 2 程序,检测限(LOD)为0.1 ng / mL。 5个实验运行可以在2〜3分钟内完成一次REE分析,相对标准偏差在2.4%和21.2%之间(重复六次测量)。此外,这些稀土元素的回收率介于97.6%–122.1%之间。还分析了两个真实样品,包括井汁和橙汁。这些实验数据表明,该方法是对水中REE进行现场分析的有用工具,可以用作ICP-MS的替代补充。

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