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滤片对能量色散X射线荧光光谱方法测定轻基体中痕量重金属Cd元素的作用
引用本文:张丽娇,赖万昌,谢波,黄进初,李丹,杨强,陈小丽.滤片对能量色散X射线荧光光谱方法测定轻基体中痕量重金属Cd元素的作用[J].光谱学与光谱分析,2018,38(6):1917-1921.
作者姓名:张丽娇  赖万昌  谢波  黄进初  李丹  杨强  陈小丽
作者单位:1. 成都理工大学核技术与自动化工程学院,四川 成都 610059
2. 华东理工大学江西省核资源与环境重点实验室,江西 南昌 330013
3. 中南大学地球科学与信息物理学院,湖南 长沙 410083
基金项目:国家重点研发计划重点专项课题(2017YFC0602105),国家自然科学基金项目(41574128,41504139),四川省科技计划项目(2016JY0208),四川省教育厅自然科学重点项目(15ZA0070,15ZB0075)资助
摘    要:用能量色散X射线荧光光谱方法检测轻基体中重金属元素时,提高峰背比是一大难题,而设置滤片是解决这个难题的一种办法。该研究先对初级滤片(分为一类初级滤片和二类初级滤片)和次级滤片(平衡滤片)的选择(材料元素及厚度)作了理论分析,然后通过MC软件进行蒙特卡罗进行分别模拟,比较设置前后的峰背比,验证理论分析的准确性。一类初级滤片模拟设置了Fe和Cu两种材料,结果表明设置后的峰背比较设置前的1.36均提高了两倍左右;二类初级滤片模拟设置了Te和Ba两种材料,设置后的最大峰背比分别为14.88和13.58,均比比设置前提高了10倍左右;平衡滤片则是先后设置Rh和Ru两个滤片,两者计数相减即得到平衡通带,结果可见通带内特征峰透过率为83.1%,而通带外的背景值降低到几乎为0,使得峰背比大大增加了。经过比较,三种滤片的设置都有效地提高了峰背比,其中平衡滤片提高的倍数最大,二类初级滤片次之,最小为一类初级滤片。理论上三种滤片是可以同时设置以更大地提高峰背比的,但由于轻基体中Cd元素含量很小,而低计数的结果会大大增加放射性统计涨落误差,因此,在实际应用中,还应考虑到这一点,以决定是否进行两两同时设置或者三者同时设置。研究创新之处在于除了传统的两种滤片外,还提出了二类初级滤片的运用。

关 键 词:重金属元素  能量色散X射线荧光光谱法  初级滤片  次级滤片  
收稿时间:2017-03-01

The Effect of Filterson on the Determination of Trace Heavy Metal Cd in Light Matrix by Energy Dispersive X-Ray Fluorescence Spectrometry
ZHANG Li-jiao,LAI Wan-chang,XIE Bo,HUANG Jin-chu,LI Dan,WANG Guang-xi,YANG Qiang,CHEN Xiao-li.The Effect of Filterson on the Determination of Trace Heavy Metal Cd in Light Matrix by Energy Dispersive X-Ray Fluorescence Spectrometry[J].Spectroscopy and Spectral Analysis,2018,38(6):1917-1921.
Authors:ZHANG Li-jiao  LAI Wan-chang  XIE Bo  HUANG Jin-chu  LI Dan  WANG Guang-xi  YANG Qiang  CHEN Xiao-li
Institution:1. College of Nuclear Technology and Automation Engineering, Chengdu University of Technology, Chengdu 610059, China 2. Jiangxi Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, China 3. School of Geosciences and Info-Physics, Central South University, Changsha 410083, China
Abstract:Increasing the ratio of peak to back (P/B)value is of great importance when using energy dispersive X-ray fluorescence spectrometry to detect heavy metal elements in the light-matrix. Setting up the filters is one way to solve this problem. In the paper the choices (material elements and thickness) for primary filter(it can be divided into One primary filter and Two primary filter) and secondary filter(balance filter) were analyzed, then the Monte Carlo simulation was carried out by MC software, and the accuracy of theoretical analysis was verified by comparing the P/B value before and after setting up. The One primary filter simulation sets up Fe and Cu two kinds of materials. The results show that the biggest P/B values all increases two times after setting up primary filters while the value is 1.36 before setting up; The Two primary filter simulation sets up Te and Ba two kinds of materials. The biggest P/B values are 14.88 and 13.58, which all significantly increase almost 10 times than the previous setting up; The balance filter sets up Rh and Ru two filters, the balancepassband is obtained through two count subtraction. The results show that in the passband the transmission rate of the characteristic peaks is 83.1%, while outside the band the background value is reduced to almost 0, and the P/B values increase greatly. It is found that setting up the three kinds of filters effectively increases the P/B values, in which the balance filter is the most powerful, the Two primary filter is the second, and the One primary filter is the least. The three kinds of filters can be set up at the same time in order to further increase the P/B value in theory, but the Cd amounts in light matrix are trace, so that the low count result will greatly increase the radioactive statistical fluctuation error, therefore, in the practical application, this point should also be considered to decide whether two filters are set up at the same time, or three are set up at the same time. The innovation of this paper lies in the application of the Two primary filter in addition to the traditional two filters.
Keywords:Heavy metal elements  Energy dispersive X ray fluorescence spectrometry  Primary filter  Secondary filter  
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