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1.
高分辨电感耦合等离子体质谱法测定地质样品中的微量锗   总被引:1,自引:0,他引:1  
应用高分辨电感耦合等离子体质谱法测定地质样品中的微量锗。研究了地质样品中不同酸消解方法、提取方法对测定锗的影响,以及在高分辨电感耦合等离子体质谱仪高、中、低分辨率模式下测定地质样品中锗的质谱行为。用氢氟酸-硝酸体系分解样品,硝酸提取,在中分辨率模式下进行测定。方法的检出限(3s)为10ng·g-1。方法用于10个国家标准物质中锗含量的测定,测定值与认定值相符,测定值的相对标准偏差(n=10)小于4.5%。  相似文献   

2.
为了寻求一种更加适合废水中低含量银的测定方法,本文采用石墨电热板消解-电感耦合等离子体质谱法测定废水中的低含量银离子。通过仪器工作条件最优化、测定线性回归方程、检出限、准确度、精密度、实际样品加标回收率,并与电感耦合等离子体发射光谱法(ICP-AES)的实际样品测定结果进行比对来评价该方法的实用性。石墨电热板消解-电感耦合等离子体质谱法前处理方法简便,分析速度快且该方法检出限较低,为0.03ug/L,标准样品测定的相对误差为-0.7%~1.7%,相对标准偏差为1.1%~2.5%,实际样品加标回收率在97.0%~103%之间,回收率高,能够满足废水中低含量银的测定。  相似文献   

3.
电感耦合等离子体质谱法测定土壤中痕量铀   总被引:1,自引:0,他引:1  
建立电感耦合等离子体质谱法测定土壤样品中痕量铀含量的方法。采用硝酸、氢氟酸、高氯酸混合酸消解样品后,以铼为内标溶液校正基体干扰,用电感耦合等离子体质谱仪测定土壤中的痕量铀含量。实验结果表明,铀的质量浓度在0~20 ng/m L范围内与信号强度呈线性关系,相关系数r=0.999 9,方法检出限为0.006μg/g,测定结果的相对标准偏差小于5%(n=6),加标回收率在96%~103%之间。用该方法与标准方法对同一样品进行测定,两种方法测定结果一致。该方法准确可靠,满足土壤样品中痕量铀含量的测定要求。  相似文献   

4.
高纯铌样品0.050 0g中加入适量的水,缓慢加入1mL氢氟酸和2mL硝酸,低温加热使其溶解,冷却至室温,用水定容至100mL。采用电感耦合等离子体质谱法测定所得溶液中20种痕量杂质元素,以内标法定量。结果表明:20种元素的检出限(3s)为0.005~0.20μg·g-1,回收率为95.0%~110%。按所提出方法分析铌锭样品,所得结果与辉光放电质谱法所得结果相符。  相似文献   

5.
微波消解-ICP-MS法测定利奈唑胺中残留钯   总被引:1,自引:0,他引:1  
本文测定了抗生素原料药利奈唑胺中的残留钯(Pd)的含量。采用微波消解对样品进行了前处理,用铑(Rh)作为内标,对仪器漂移和基体效应进行校正,使用电感耦合等离子体质谱法(ICP-MS)进行测定。平均回收率为98.6%,方法检出限为0.02μg.L-1。该法简便、快速、灵敏、准确,可用于利奈唑胺中残留痕量钯的测定。  相似文献   

6.
建立电感耦合等离子体质谱法测定三七粉中15种痕量稀土元素的方法。样品以硝酸–过氧化氢–氢氟酸混酸体系进行微波消解,以铑、铼为内标物,在优化后的仪器条件下进行测定。镧、铈、镨、钕、钐、铕、钆、铽、镝、钬、铒、铥、镱、镥、钇的质量浓度在0.5~50μg/L范围内线性良好,相关系数r^2>0.999 9,检出限分别为3.11,2.32,1.70,2.51,1.84,1.22,1.99,1.46,2.62,2.56,1.27,2.18,1.16,1.66,1.28μg/kg。测定结果的相对标准偏差为1.88%~18.7%(n=6),回收率为86.0%~104.0%。该方法样品处理简单快速,检出限低,准确度和精密度高,适合于三七粉中15种痕量稀土元素的测定。  相似文献   

7.
电感耦合等离子体质谱法测定海洋沉积物中34种痕量元素   总被引:2,自引:0,他引:2  
用电感耦合等离子体质谱法测定海洋沉积物中34种痕量元素,样品于聚四氟乙烯封闭坩埚中用氢氟酸和硝酸溶解,运用干扰方程校正光谱干扰,用内标校正消除基体影响。方法检出限(3s/k)在0.046~160 ng.g-1之间。通过分析4个海洋沉积物标准物质对所提出方法的准确度和精密度做了考核,所得测定结果与标准物质的认定值相吻合,各元素测定结果的相对标准偏差均小于10%。  相似文献   

8.
应用电感耦合等离子体质谱法测定了中、低合金钢中痕量铝,并对质谱仪的工作条件作了优化.用微波加热消解技术对样品进行前处理,用混合比例为3比1比1的浓硝酸、浓盐酸及浓氢氟酸的混合酸作为溶解酸.对微波炉的操作程序及参数作出详细叙述.此方法的检出限为ω(Al)1.9×10-6%,对浓度水平为ω(Al)1.4×10-4%的试样进行精密度试验,其结果的标准偏差值均小于6.0%.  相似文献   

9.
建立电感耦合等离子体串联质谱法测定实验室纯水中痕量硅的方法。优化电感耦合等离子体串联质谱仪工作条件,两个四极杆质量过滤器Q1,Q2质量数均为28,碰撞/反应模式为H_2原位质量模式,采用标准加入法进行定量分析。硅的质量浓度在0~100μg/L范围内与响应信号呈良好的线性关系,线性相关系数大于0.999 9,检出限为0.109μg/L。测定结果的相对标准偏差为1.6%~4.5%(n=7),样品加标回收率为96.2%~103.7%。该方法灵敏度高,测定结果准确、可靠,可用于实验室纯水中痕量硅分析。  相似文献   

10.
电感耦合等离子体质谱法测定高纯金属铋中痕量杂质元素   总被引:8,自引:0,他引:8  
采用电感耦合等离子体质谱法测定了高纯金属铋中14种痕量杂质元素。考察了基体效应对测定元素的干扰影响,通过铋基体元素的分离和以Sc、In、Eu作为内标,有效克服了干扰现象。方法的检出限在0.1~4.7ng/mL;精密度在1.4%~5.0%;加标回收率在89%~114%范围。本法可满足99.999%以上金属铋中痕量杂质测定的要求。  相似文献   

11.
A simple separation method was applied to determine rhenium in river water using Q-ICP-MS and HR-ICP-MS. Re was concentrated from 420-925 ml river water using a TEVA resin minicolumn. Such extraction using a resin could separate Re from most sample matrices and trace elements. Almost 100% recovery was found throughout the method as determined with radioactive multitracers. The HR-ICP-MS was also used for the direct determination because of its low detection limit for Re (0.007 pg/ml). The Re concentration in the river water samples ranged from 0.9 to 6.5 pg/ml and the three analysis results showed good agreement with each other.  相似文献   

12.
A time-saving and accurate technique for determining226Ra in groundwater and soil was examined, using high-resolution inductively coupled plasma-mass spectrometry (HR-ICP-MS). The technique was applied to the determination of226Ra in groundwater and soil samples and compared with the conventional liquid scintillation counting method. This technique was capable of completing226Ra counting within 3 minutes, without the in-growth period to allow radon and its progeny to achieve secular equilibrium with the parent226Ra. The detection limits of HR-ICP-MS for226Ra in groundwater and soil were 0.19 mBq·1−1 and 0.75 Bq·kg−1, respectively, which were about 10 times lower than that of the liquid scintillation counter. The results obtained from HR-ICP-MS in groundwater and soil were in accordance with those of LSC within a relative error of about 13%.  相似文献   

13.
An analytical method using high-resolution inductively coupled plasma mass spectrometry (HR-ICP-MS) for rapid simultaneous determination of 20 elements, including Na, Mg, Al, Ca, Ti, V, Mn, Fe, Co, Ni, Cu, Zn, Ga, As, Mo, Cd, Sn, Sb, Ba, and Pb elements, in residual oil was described. The sample was dissolved in HNO3 by microwave digestion, and then the above 20 elements in the solution were analyzed directly by HR-ICP-MS. Most of the spectral interferences could be avoided by measuring in the high-resolution mode. The matrix effect caused by the sample-digesting solution and corrected by Sc, Rh, and Bi as the internal standard elements was studied in detail. The optimum condition of the determination was also tested and discussed. The result showed that the detection limits of the method were in the range of 0.014 to 11.6 μg L−1; the relative standard deviation was less than 3.8% and recoveries in the samples were in the range of 88.4% to 108.0%. This method can be used to determine the trace elements in residual oil with the features of accurate, rapid, and convenient determination.  相似文献   

14.
High resolution inductively coupled plasma mass spectrometry (HR-ICP-MS) was applied for multielement-determination in high-purity copper (approx. 99.99%). The samples were introduced into the instrument by three different introduction systems, which were studied with respect to high accuracy, low detection limits and fast analysis: continuous nebulization (CN), flow injection analysis (FIA) and laser ablation (LA). The trueness of the applied method was checked by the analysis of high-purity copper reference material (BCR Cu074). All values obtained for this CRM using CN were in the range of the stated uncertainty for the 9 elements determined: Ag, As, Bi, Cr, Fe, Ni, Pb, Sb, and Sn with contents in the range of 0.5–13 μg/g. Another approach for checking the trueness of the method was to compare the results obtained by this method characterizing the purity of a 4N (99.99% copper content) copper material with those obtained by application of electrothermal atomic absorption spectrometry (ET-AAS) and inductively coupled plasma optical emission spectrometry (ICP-OES). For further characterizing, the concentrations of 49 elements were found in this material below detection limits of HR-ICP-MS in the range of low μg/kg and sub μg/kg. The combination of HR-ICP-MS and a flow injection analysis system (FIAS) improved the robustness of the system in regard to high matrix concentrations. Therefore, matrix concentrations up to 4 g/L could be used for liquid analysis and detection limits were lowered by a factor of 2–5. A calibration method for bulk analysis with laser ablation was developed with doped copper powder as pressed pellets for calibration standards. This method proved to be an excellent fast semi-quantitative method, which was less time consuming in comparison with the analysis of liquids. After application of correction factors the deviation between the results obtained by laser ablation and by analysis of liquids was ≈ 15% for most elements. The method offered the possibility to check for potential losses of analytes occurring during the wet chemical operations. Received: 23 November 1998 / Revised: 25 February 1999 / Accepted: 2 March 1999  相似文献   

15.
High resolution inductively coupled plasma mass spectrometry (HR-ICP-MS) was applied for multielement-determination in high-purity copper (approx. 99.99%). The samples were introduced into the instrument by three different introduction systems, which were studied with respect to high accuracy, low detection limits and fast analysis: continuous nebulization (CN), flow injection analysis (FIA) and laser ablation (LA). The trueness of the applied method was checked by the analysis of high-purity copper reference material (BCR Cu074). All values obtained for this CRM using CN were in the range of the stated uncertainty for the 9 elements determined: Ag, As, Bi, Cr, Fe, Ni, Pb, Sb, and Sn with contents in the range of 0.5–13 μg/g. Another approach for checking the trueness of the method was to compare the results obtained by this method characterizing the purity of a 4N (99.99% copper content) copper material with those obtained by application of electrothermal atomic absorption spectrometry (ET-AAS) and inductively coupled plasma optical emission spectrometry (ICP-OES). For further characterizing, the concentrations of 49 elements were found in this material below detection limits of HR-ICP-MS in the range of low μg/kg and sub μg/kg. The combination of HR-ICP-MS and a flow injection analysis system (FIAS) improved the robustness of the system in regard to high matrix concentrations. Therefore, matrix concentrations up to 4 g/L could be used for liquid analysis and detection limits were lowered by a factor of 2–5. A calibration method for bulk analysis with laser ablation was developed with doped copper powder as pressed pellets for calibration standards. This method proved to be an excellent fast semi-quantitative method, which was less time consuming in comparison with the analysis of liquids. After application of correction factors the deviation between the results obtained by laser ablation and by analysis of liquids was ≈ 15% for most elements. The method offered the possibility to check for potential losses of analytes occurring during the wet chemical operations. Received: 23 November 1998 / Revised: 25 February 1999 / Accepted: 2 March 1999  相似文献   

16.
元素活动态分析作为深穿透地球化学的新方法,得到了广泛的应用。将ELEMENT XR型高分辨率等离子体质谱(HR-ICP-MS)法引入元素活动态的分析中,具有动态线性范围宽(10-12~1012)和灵敏度高的特点,使可同时测定的元素拓展至57种,大大提高了工作效率。根据实验结果结合响应面分析法,对HR-ICP-MS的主要仪器条件辅助气流量、雾化气流量和采样深度等进行了优化,确定了仪器的最佳测定条件;对铁锰氧化态的提取条件进行了系统研究:分别考察了提取时间、液固比、离心转速、提取液放置时间对提取效果的影响,确定了最佳提取条件,提取时间为24 h,液固比为15∶1,离心转速4000 r/min;在最优的测定条件和提取条件下,建立了HR-ICP-MS对铁锰氧化物结合相中57种元素的分析方法,得到了各元素的方法检出限和方法精密度,微量和痕量元素的方法检出限达到了10-9(ng/g),主量元素的检出限为10-6(mg/kg)水平,精密度为2.3%~32.5%,完全满足当前元素活动态的分析测试需要。  相似文献   

17.
荧光标记DNA高分辨电感耦合等离子质谱定量分析   总被引:2,自引:0,他引:2  
建立了基于磷元素测量的高分辨电感耦合等离子质谱定量荧光标记DNA的分析方法,该方法定量测量结果可以溯源到国际基本单位(SI)。采用柱层析、超速离心、透析的技术对样品进行纯化,用芯片电泳和电导率测试仪对其进行了纯度检验。然后利用优化后的微波消解方法对荧光标记DNA样品进行了消解处理。从射频功率、等离子气流速、辅助气流速、雾化气流速、采样深度、获取时间等方面对高分辨电感耦合等离子质谱测量条件进行了优化,从物理性干扰、内标、同位素、元素形态等方面对测量进行了校正。利用优化后的方法对荧光标记DNA样品进行了定量测量,从方法的精密度、标准物质、样品称量、标准和样品稀释等方面进行了定量测量结果不确定度的评估。测量结果的扩展不确定度为8.28%(k=2),远优于现在常规的紫外、荧光、色谱测量核酸含量的不确定度。该方法可用于核酸含量标准物质的定值分析。  相似文献   

18.
高分辨等离子体质谱法直接测定高纯镓中的痕量元素   总被引:9,自引:0,他引:9  
谢华林  聂西度  唐有根 《分析化学》2006,34(11):1570-1574
建立高分辨电感耦合等离子体质谱法(HR-ICP-MS)测定高纯镓样品中Be、Mg、A l、S i、Ti、V、Cr、Mn、Fe、Co、N i、Cu、Zn、Ge、As、Mo、Ag、Cd、In、Sb、Ba、Pb、B i等痕量元素的方法。样品用HNO3 HC l经微波消解后,试液直接进样用HR-ICP-MS法同时测定上述元素,在高分辨质谱测量模式下避免了大量的质谱干扰,详细地研究了HC l和高纯镓所产生的基体效应,以Sc、Rh、Tl作为内标元素校正了基体效应,讨论和确定了实验的最佳测定条件。结果表明,23种痕量元素的检出限在0.001~0.21μg/L之间;回收率在89.8%~111.6%之间,相对标准偏差(RSD)小于3.3%。  相似文献   

19.
A rapid analytical method of Pu in environmental samples by alpha-ray spectrometry and high-resolution inductively coupled plasma mass spectrometer (HR-ICP-MS) using a 3M Empore anion exchange resin disk for solid phase extraction has been developed. A trace amount of Pu was quantitatively adsorbed with an Empore anion exchange resin disk (47 mm diam.) at a flow rate of 150–200 ml/min from 8M HNO3 sample solution. The disk was washed with 10 ml of 8M HNO3 and 12 ml of 9M HCl and then the Pu was quantitatively eluted with 15 ml of 1M HNO3/0.03M ascorbic acid solution. The time needed to separate Pu from the sample solution with the present method was about 20 minutes. The separated Pu was determined with alpha-ray spectrometry and HR-ICP-MS. The present method was applied to the determination of Pu in the certified reference material (IAEA-135) and the environmental soil sample. The analytical results were almost in good agreement with the literature values.  相似文献   

20.
High resolution inductively coupled plasma mass spectrometry (HR-ICP-MS) in combination with a micro concentric nebulizer was studied in order to evaluate its suitability for the certification of the content of trace elements in high-purity metals. About 30 trace elements (analytes) were determined using solutions of high-purity Cd, Cu, Ga and Zn. The concentration levels of these matrices were varied as an experimental parameter. HR-ICP-MS was demonstrated to be very versatile and of high analytical performance. Effects of matrix concentrations on the analytical sensitivities and on the detection limits were investigated to find out optimal working conditions and to distiguish between different sources of matrix influences on sensitivities. As an example the gallium matrix was studied to obtain information about the matrix depositions on the cones of the mass spectrometer inlet system, using scanning electron microscopy and spectroscopical methods, including Raman spectroscopy.  相似文献   

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