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碳酸盐岩样品中镍和钪的电感耦合等离子体质谱分析与干扰校正方法
引用本文:陈菲菲,冉敬,徐国栋,程江,陈瑜. 碳酸盐岩样品中镍和钪的电感耦合等离子体质谱分析与干扰校正方法[J]. 岩矿测试, 2021, 0(2): 187-195
作者姓名:陈菲菲  冉敬  徐国栋  程江  陈瑜
作者单位:中国地质调查局成都地质调查中心, 四川 成都 610081
基金项目:中国地质调查局地质调查项目“重要非金属矿物谱学特征与定量分析方法研究”(201111028-03)
摘    要:电感耦合等离子体质谱法(ICP-MS)已在碳酸盐岩微量元素测试中得到了广泛应用.然而,采用ICP-MS分析碳酸盐岩中含量较低的Ni(1.6~50.5μg/g)和Sc(0.3~6μg/g)时,信号值会受到高含量CaO(可高达56%)和MgO(可高达21%)的显著干扰,使测试值远高于真实值,从而无法获得准确的待测元素含量....

关 键 词:碳酸盐岩      电感耦合等离子体质谱法  干扰校正
收稿时间:2020-05-31
修稿时间:2020-09-09

Inductively Coupled Plasma-Mass Spectrometric Analysis of Nickel and Scandium in Carbonate Rock Samples and Interference Correction Methods
CHEN Fei-fei,RAN Jing,XU Guo-dong,CHENG Jiang,CHEN Yu. Inductively Coupled Plasma-Mass Spectrometric Analysis of Nickel and Scandium in Carbonate Rock Samples and Interference Correction Methods[J]. Rock and Mineral Analysis, 2021, 0(2): 187-195
Authors:CHEN Fei-fei  RAN Jing  XU Guo-dong  CHENG Jiang  CHEN Yu
Affiliation:Chengdu Center of Geological Survey, China Geological Survey, Chengdu 610081, China
Abstract:BACKGROUND:Inductively coupled plasma-mass spectrometry(ICP-MS)has been widely used in the determination of trace elements in carbonate rocks.Due to the low Ni(1.6-50.5μg/g)and Sc(0.3-6μg/g)in carbonate rocks,the signal values are obviously interfered by high CaO(up to 56%)and MgO(up to 21%)during ICP-MS determination,resulting in the test value much higher than the true value.OBJECTIVES:To solve the problem of non-mass spectrum interference and mass spectrum interference of Ni and Sc during ICP-MS analysis of carbonate rocks and use appropriate correction method.METHODS:The single standard series of Ca and Mg and national first-level reference materials of carbonate rocks were used to study the interference of high content of Ca and Mg on Ni and Sc in the carbonate during ICP-MS analysis.Testing of the single standard series was aim to explore ways of interference on Ni and Sc by high content of Ca and Mg in solution.The national first-level reference material of carbonate rock was further selected as the calibration carrier to eliminate the matrix effect of Mg.At the same time,according to the good linear relationship between the content of CaO in the sample solution and the interference degree of Ni and Sc,the interference equations of CaO and△Ni and△Sc were fitted respectively,and used for interference deduction of Ni and Sc in several national first-level reference materials and unknown samples of carbonate rocks.The accurate test values of Ni and Sc in carbonate rocks by ICP-MS were obtained.RESULTS:It was found that the high content of Mg had a non-mass spectrometric interference matrix effect on the analysis of Ni and Sc.High content of Ca forms oxides,hydroxides and polyatomic ions,resulting in mass spectrometric interference on Ni and Sc.The degree of interference had a good linear relationship with the Ca content in the solution.Compared with a single standard to perform interference correction on actual samples,this method used national first-level standard materials as the calibration carrier,which overcomed the interference of matrix effects.Verified by GBW07108 and other five national primary standard materials of carbonate rocks,test values agreed with the standard values,with a relative standard deviation(RSD,n=10)of less than 5.5%.Correction results of the unknown carbonate samples were compared with the results of the inductively coupled plasma-optical emission spectroscopy(ICP-OES)and the X-ray fluorescence spectrometer(XRF),respectively,the relative deviation was less than 15%.CONCLUSIONS:The correction method proposed in this paper has solved the mass spectral interference and non-mass spectral interference in ICP-MS analysis of Ni and Sc in carbonate rocks.The method is simple and feasible,and the results are accurate and reliable.
Keywords:carbonate rock|nickle|scandium|inductively coupled plasma-mass spectrometry|interference correction
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