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Improving tritium exposure reconstructions using accelerator mass spectrometry

机译:使用加速器质谱法改善tri的暴露重建

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摘要

Direct measurement of tritium atoms by accelerator mass spectrometry (AMS) enables rapid low-activity tritium measurements from milligram-sized samples and permits greater ease of sample collection, faster throughput, and increased spatial and/or temporal resolution. Because existing methodologies for quantifying tritium have some significant limitations, the development of tritium AMS has allowed improvements in reconstructing tritium exposure concentrations from environmental measurements and provides an important additional tool in assessing the temporal and spatial distribution of chronic exposure. Tritium exposure reconstructions using AMS were previously demonstrated for a tree growing on known levels of tritiated water and for trees exposed to atmospheric releases of tritiated water vapor. In these analyses, tritium levels were measured from milligram-sized samples with sample preparation times of a few days. Hundreds of samples were analyzed within a few months of sample collection and resulted in the reconstruction of spatial and temporal exposure from tritium releases. Although the current quantification limit of tritium AMS is not adequate to determine natural environmental variations in tritium concentrations, it is expected to be sufficient for studies assessing possible health effects from chronic environmental tritium exposure.
机译:通过加速器质谱(AMS)直接测量tri原子,可以从毫克大小的样品中进行低活性low的快速测量,并且可以更轻松地采集样品,提高通量,并提高空间和/或时间分辨率。由于现有的量化quant的方法存在一些重大局限性,因此A AMS的发展已使从环境测量中重建exposure暴露浓度的方法得以改进,并为评估慢性暴露的时空分布提供了重要的附加工具。先前已经证明了使用AMS进行的exposure暴露重建可用于生长在已知水平levels化水上的树木以及暴露于大气释放tri化水蒸气的树木。在这些分析中,from量是从毫克大小的样品中测定的,样品制备时间为几天。在收集样品的几个月内对数百个样品进行了分析,结果从from的释放中重建了时空暴露。尽管当前的A AMS定量极限不足以确定natural浓度的自然环境变化,但仍有望用于评估长期暴露于环境environmental对健康的影响的研究。

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