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Characterization of a Modified, Low-Power Argon Microwave Plasma Torch (MPT) as an Atomization Cell for Atomic Fluorescence Spectrometry

机译:改性的低功率氩微波等离子体炬(MPT)的表征,作为原子荧光光谱的雾化室

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摘要

A microwave plasma torch (MPT) has been newly modified and used as an atomization cell for atomic fluorescence Spectrometry (AFS). The analytical performance of the MPT-AFS system has been characterized with hollow cathode lamps (HCLs) working in thepulsed mode as an excitation source and a pneumatic nebulizer for aqueous sample introduction. The method exhibits a relatively large dynamic range over at least three orders of magnitude in concentration and fairly good precision in a range from 0.42% (Zn) to 4.9% (Ag). It was found that observation height, microwave power, and plasma support-gas flow rate have an important influence on the performance of MPT-AFS. The detection limits obtained by the new MPT-AFS system are in a range from 0.25 (Cd) to121 (As) ng/mL for ten elements examined. A comparison of MPT-AFS with other plasma AFS approaches suggests several advantages of the MPT source as an atomizer for AFS.
机译:微波等离子体炬(MPT)已进行了新的修改,并用作原子荧光光谱(AFS)的雾化室。 MPT-AFS系统的分析性能已通过以脉冲模式工作的空心阴极灯(HCL)作为激发源和用于水溶液样品引入的气动雾化器进行了表征。该方法在浓度至少三个数量级上显示出较大的动态范围,并且在0.42%(Zn)至4.9%(Ag)的范围内具有相当好的精度。发现观察高度,微波功率和血浆支持气体流速对MPT-AFS的性能有重要影响。新的MPT-AFS系统获得的检出限为十种元素,范围为0.25(Cd)至121(As)ng / mL。 MPT-AFS与其他等离子体AFS方法的比较表明,MPT源作为AFS的雾化器有几个优点。

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