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机构地区:[1]国土资源部郑州矿产资源监督检测中心,河南郑州450012 [2]国家地质实验测试中心,北京100037
出 处:《岩矿测试》2006年第4期365-368,共4页Rock and Mineral Analysis
基 金:国家科技基础条件平台项目--全国分析测试体系的建立与完善[FC(03-04年度)-01]
摘 要:采用《测量不确定度评定与表示指南》,以等离子体发射光谱法测定土壤中的稀土元素铈为例,对测定结果进行不确定度评定。分析了不确定度的重要来源,包括溶液制备过程中引入的不确定度、样品称量引入的不确定度、标准物质外标法测量不确定度及仪器重复测定的不确定度。提供了引入不确定度各参数的采集和计算方法,对各不确定度分量进行分析计算,最后合成标准不确定度,通过乘以95%概率下的扩展因子2,获得测量结果的扩展不确定度。Based on 〈 The Guidebook of Uncertainty Evaluation and Denotation of the Measurement Results 〉, the measurement results of Ce in soil samples from agricultural geological survey by ICP-AES were collected and the measurement uncertainty was evaluated. The factor of instrumentation, standard reference materials used in the measurement, sample weighting, sample preparation and various chemical solution preparation etc. involved in the measurements were considered as the main sources contributing to the total uncertainty. The parameter collection and calculation of the fraction uncertainties were also discussed. Based on the evaluation of these fraction uncertainties the standard uncertainty of measurement results is obtained via synthesis of the fraction uncertainties. The extended uncertainty can be obtained via multiplying it by extended factor of 2 under the confidence pmbabihty of 95%.
关 键 词:不确定度评定 电感耦合等离子体光谱法 铈 土壤
分 类 号:O213.1[理学—概率论与数理统计] O657.31[理学—数学]
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