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Application of pixe, NAA and ICP techniques to the determination of trace elements in foot and diet samples

机译:PIXE,NAA和ICP技术在衡量和饮食样品中测定微量元素

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The particle induced X ray emission (PIXE) technique was applied to the measurement of trace elements in total diet samples collected in Japan for estimation of their daily dietary intake. The results of PIXE were compared with instrumental neutron activation analysis (INAA) results. Concentrations of Cl, Mn and Zn and PIXE analysis agreed well with the results from INAA, but Ca, Fe and Cu concentrations varied between these two techniques. PIXE data were preliminarily compared with INAA and inductively coupled plasma-atomic emission spectrometry (ICP-AES) results using a type of tea sample. A little higher concentration of Cu than that by PIXE and a much lower value than that by INAA were indicated. For Zn, concentraitons by PIXE and ICP-AES agreed well with each other, while INAA gave a much lower value. From those results, PIXE was demonstrated to be recommendable for the determination of Ca, Mn, Fe, Cu and Zn in the dried and homogenized diet sample, while INAA was found to be better for determining Na, Al, Cl and I, both being convenient non-destructive analytical methods. Furthermore, internal radiation doses by ~137Cs and ~90Sr in the average Japanese were estimated to be 2.30 umSv/a and 1.27 umSv/a, respectively, as the effective dose euqivalents, using the literature data and the daily intake for K and Ca currently obtained. Moreover, ICP-mass spectrometry (MS), known for high sensitivity and selectivity, was used to determine Th and U in diet samples.
机译:颗粒诱导的X射线发射(PIXE)技术应用于日本收集的总饮食样品中的微量元素的测量,以估计其日粮摄入量。将PIXE的结果与仪器中子激活分析(INAA)进行比较。 Cl,Mn和Zn的浓度和PIXE分析很好地同意了来自INAA的结果,但是在这两种技术之间变化了CA,Fe和Cu浓度。将PIXE数据预先与INAA和电感耦合的等离子体原子发射光谱法(ICP-AES)与使用一种茶样品进行比较。浓度较高的Cu浓度比Pixe更高,并且指示比InaA的值远得多。对于Zn,由Pixe和ICP-AES彼此同意的ICETATONS,而INAA的值较低。从这些结果,PIXE被证明是值得推荐的用于钙,锰,铁,铜和锌的干燥和均化饮食样品中的判定,而INAA被发现是更好用于确定钠,铝,Cl和I,两者都方便的无损分析方法。此外,估计平均日语的内部辐射剂量〜137℃和〜90sr,分别是2.30 UMSV / A和1.27 UMSV / A,作为有效剂量Euqialent,使用文献数据和K和CA的每日摄入量获得。此外,用于高灵敏度和选择性的ICP质谱(MS)用于确定饮食样品中的TH和U.

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