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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >A novel rapid detection approach for the analysis of radionuclides in environmental samples using graphite MALDI mass spectrometry
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A novel rapid detection approach for the analysis of radionuclides in environmental samples using graphite MALDI mass spectrometry

机译:石墨MALDI质谱分析环境样品中放射性核素的新型快速检测方法

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摘要

Initial studies into the analysis of Uranium and Lanthanide salts by graphite matrix assisted laser desorption ionisation-time of flight-mass spectrometry (GALDI-ToF-MS) are presented. It is shown that GALDI-ToF-MS represents a more effective method for ion generation compared to that observed by direct laser irradiation, providing more sensitive analysis and enhanced mass spectral quality. Assessment of sensitivity, detection limits and isotope signature determination is given with absolute detection limits having been found to be in the low ng to pg range and abundance measurements being consistent with expected values to within 2-10 % depending on the relative isotope ion intensities. Using imaging software, GALDI-ToF-MS can be used to identify the presence of low micron-sized uranium oxide particles and establish their distribution across a substrate surface to enable particle location and in so doing identify particles of interest which are of non-natural, enriched content. In this context, GALDI-ToF-MS is proposed as a novel screening method for uranium containing micro-particles which has potential as a rapid and low cost means for particle location to enable effective sampling using micro-manipulation and optical microscopy, for onward isotope ratio mass spectrometry.
机译:提出了通过石墨基质辅助激光解吸电离飞行时间质谱(GALDI-ToF-MS)分析铀盐和镧系元素盐的初步研究。结果表明,与直接激光照射相比,GALDI-ToF-MS代表了一种更有效的离子产生方法,可提供更灵敏的分析和更高的质谱质量。给出了灵敏度,检测限和同位素特征确定的评估,已发现绝对检测限在ng至pg的低范围内,并且丰度测量值与预期值一致,取决于相对同位素离子强度在2-10%之内。使用成像软件,GALDI-ToF-MS可用于识别低微米尺寸的氧化铀颗粒的存在,并确定其在整个基材表面上的分布,以实现颗粒定位,从而识别出非天然的目标颗粒,内容丰富。在此背景下,提出了GALDI-ToF-MS作为一种新型的含铀微粒筛选方法,该方法有可能成为一种快速,低成本的微粒定位方法,从而能够使用显微操作和光学显微镜对正向同位素进行有效采样比质谱法。

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