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1.
高压密闭罐溶样-氢化物原子荧光法测定环境样品中的砷   总被引:1,自引:0,他引:1  
使用高压密闭罐溶样方式,比较了利用浓HNO3、王水和HNO3+HF消解土壤、沉积物和植物样品,还原后用氢化物发生-原子荧光光谱法(HG-AFS)测定样品中砷的情况。使用优选的浓HNO3溶样法对土壤标准参考物质GBW(E)070009、GBW07404(GSS-4)、GBW07405(GSS-5)、GBW07407(GSS-7)、GBW07408(GSS-8)、GS-BZ50011-88(ESS-1)和植物标准参考物质GBW07604(GSV-3)、GBW07602(GSV-1)进行了分析,砷的测定结果与推荐值基本一致。加标回收实验的回收率在99.9%~105.6%。利用该法对实际样品进行了测定,并与土壤总砷国标法(GB/T22105.2-2008)的分析结果进行了比较,平行样的重现性好,表明砷的分析结果准确可靠。  相似文献   

2.
探索了利用高温炉合成玄武岩玻璃制作原位微区主微量元素含量分析的标准物质的实验条件.选取玄武岩标准物质GBW07105(GSR-3)进行高温熔融、淬火实验研究,获得玄武岩玻璃,为合成其他地质样品微区分析标准参考物质的研制提供了参考方法.用激光剥蚀-四极杆等离子体质谱(LA-Q-ICPMS)对样品微区46个主元素和微量元素...  相似文献   

3.
采用HNO3-H2O2体系对植物样品进行风冷回流消解,电感耦合等离子体质谱法(ICP-MS)同时测定植物样品中46个元素的含量。将称有样品的磨口锥形瓶加装风冷管后直接放在普通平板铝块电热板上,一次可对45个锥形瓶回流装置同时进行加热,不需要严格地规定消解时间,保证回流加热微沸消解至消解完全即可。植物标准物质(GBW 10012、GBW 10014和GBW 10019)的分析结果与标准值相一致,方法精密度(RSD,n=6)为0.44%~5.59%。与干法灰化消解和微波消解等样品处理方法相比较,操作简单快捷,试剂用量少,空白值较低,溶液盐度较小,有利于植物样品中多元素ICP-MS同时测定。采用调试液调节ICP-MS仪器测定的最佳化,确定了ICP-MS测定的最佳条件,同时探讨了元素之间的干扰关系,采用数学校正法有效地消除了测定的干扰。  相似文献   

4.
利用电感耦合等离子体质谱法(ICP-MS)测定植物样品中微量元素的关键技术是消除植物样品的有机基体效应,本文通过预处理方法中的酸消解体系、称样量和消解方式消除其影响。以国家标准物质灌木枝叶组合样(GBW07603)为材料进行研究,对比分析了硝酸-过氧化氢、硝酸-氢氟酸、硝酸-氢氟酸-过氧化氢3种酸溶体系的消解效果,以确定最佳酸溶体系,进而定量研究2种称样量(50 mg和100 mg)和3种消解方式(密封高压二次消解、密封高压一次消解、微波消解)的消解效果,并以In作为内标采用ICP-MS测定微量元素含量。结果表明:硝酸-氢氟酸-过氧化氢酸溶体系的消解效果最好;50 mg的测定值更接近于参考值;微波消解法的测定值明显偏低,而密封高压二次消解法是灌木枝叶样品预处理的有效方法。  相似文献   

5.
利用电感耦合等离子体质谱法(ICP-MS)测定植物样品中微量元素的关键技术是消除植物样品的有机基体效应,本文通过预处理方法中的酸消解体系、称样量和消解方式消除其影响。以国家标准物质灌木枝叶组合样(GBW07603)为材料进行研究,对比分析了硝酸-过氧化氢、硝酸-氢氟酸、硝酸-氢氟酸-过氧化氢3种酸溶体系的消解效果,以确定最佳酸溶体系,进而定量研究2种称样量(50 mg和100 mg)和3种消解方式(密封高压二次消解、密封高压一次消解、微波消解)的消解效果,并以In作为内标采用ICP-MS测定微量元素含量。结果表明:硝酸-氢氟酸-过氧化氢酸溶体系的消解效果最好;50 mg的测定值更接近于参考值;微波消解法的测定值明显偏低,而密封高压二次消解法是灌木枝叶样品预处理的有效方法。  相似文献   

6.
本实验采用湿法消解碳酸盐岩矿石样品,利用电感耦合等离子体发射光谱仪(ICP-AES),采用内标法和基体匹配法相结合测定了碳酸盐岩标准物质(GBW10035a)中高达54%的氧化钙主量元素含量及其它常微量元素的含量;对实际样品中微量元素进行样品加标回收率实验,对主量和常量元素采用稀释法验证。实验结果表明,样品加标回收率在94%~108%之间,稀释比率在99.4%~100.2%,标准物质测定值与标准值吻合,6次平行样测定的稳定性4%;该方法一次溶样,径向测定主量和常量元素,轴向测定微量元素含量,操作简单,快速,该方法适用于盐湖碳酸盐样品,以及其他含有碳酸盐的各类样品的分析测试。  相似文献   

7.
在X射线荧光光谱(XRF)分析中,粉末压片制样是被广泛应用的一种制样方法,但由于存在样品粒度、矿物和基体效应对其测量条件进行优化。本文应用XRF法测量地球化学调查样品中24种主次量元素,综合优化了制样压力、仪器工作电压和工作电流、待测元素分析谱线、探测器的调节和探测效率等实验条件。在最优测量条件下,用土壤和水系沉积物国家标准物质GBW07402、GBW07404、GBW07424、GBW07426、GBW07429验证方法的准确度,结果表明个别元素如GBW07402中的Na2O、GBW07404中的Pb相对误差大于10%,其余元素的相对误差小于10%,但均达到了地球化学调查样品的质量监控要求。经优化的仪器测量条件为我国地球化学调查样品提供了可靠的基础数据。  相似文献   

8.
改进了三酸(HCl-HNO3-HF)或四酸(HCl-HNO3-HF-HClO4)溶矿对难溶元素分解不彻底及对易挥发元素测定结果不稳定的现象,建立了地质样品中15个稀土元素及其常规微量元素一次溶矿、一次测定的分析方法,提高了分析质量。采用HCl-HNO3-HF-HClO4-H2SO4混合酸一次分解样品,用50%的逆王水复溶提取后定容,以Rh为内标元素,三通在线进样方式,电感耦合等离子体质谱法同时测定地质样品中45个元素的含量。讨论了分解方法对易挥发元素、难溶元素的影响,对岩石标准物质(GBW07106)、水系沉积物标准物质(GBW07303)和土壤标准物质(GBW07429)的测定值与标准值相一致,方法精密度为0.03%~4.97%。方法准确度高,简单、快捷、实用。  相似文献   

9.
时晓露  马玲  刘瑱  朱炳文 《安徽地质》2016,26(2):158-160
测定岩石类样品中的Zr含量,酸溶经常结果偏低,碱溶通常较难获得较低的检出限。本文选取了不同岩性的岩石类国家标准物质GBW07104、GBW07106、GBW07107、GBW07114、GBW07835、GBW07836、GBW07837作为实验样品,分别采用酸溶后复溶、Na2O2碱熔、赶硅后Na2CO3和Na2B4O7三种前处理方法,对电感耦合等离子体质谱仪进行参数优化后上机测定,结果表明:对样品赶硅后加入少量Na2CO3和Na2B4O7混合试剂高温熔融处理岩石样品后,锆的测量值准确度高,而且获得了最低的检出限,同时缩短了方法流程,操作快捷。该方法更适用于各类岩石样品锆的测定。  相似文献   

10.
高岭土作为重要的铝硅酸盐,其微量元素的含量决定着高岭土产品的性能指标.高岭土的三种国家标准物质成分GBW03121、GBW03122、GBW03122a中均未含有As、Sb等10种微量元素的标准值,在高岭土的检测中只能采用近似的岩石标准物质作为监控物质,对高岭土组分的准确分析有一定影响.本文通过微波消解技术,对比了硝酸...  相似文献   

11.
提出掺氧空气-乙炔火焰原子吸收光谱法测定地质样品中微量钡的新方法。使用磺基水杨酸作保护剂消除铝对钡的挥发原子化干扰,KCl作消电离剂消除钡的电离干扰。方法的检出限(K=3)为0.04mg/L。方法已应用于测定地质标准样品中的微量钡,结果与标准值相符,对GBW07103试样测定6次,RSD为5.4%。  相似文献   

12.
发射光谱法简单、快速测定矿样中微量钽铌时,主要伴生元素锡对准确测定微量钽铌有辅助作用。改进在钨、铁等元素干扰存在时,钽铌分析线对选择。与化学分析测试结果比对验证后,发现光谱分析微量钽铌准确度得到很大提高,可满足地质找矿品位0.01%的需要。  相似文献   

13.
丁美婷 《吉林地质》2012,31(2):97-99
用原子荧光法测量地质样品中痕量汞,对两种不同的预处理方案进行了试验。通过国家一级地球化学标准物质中汞的测定,试验证实预处理时加入高锰酸钾的样品测量值更接近于标准值。  相似文献   

14.
A simple, rapid and precise method is described for determining trace elements by laser ablation (LA)-ICP-MS analysis in bulk geological materials that have been prepared as lithium borate glasses following standard procedures for XRF analysis. This approach reliably achieves complete sample digestion and provides for complementary XRF and LA-ICP-MS analysis of a full suite of major and trace elements from a single sample preparation. Highly precise analysis is enabled by rastering an ArF excimer laser (λ= 193nm) across fused samples to deliver a constant sample yield to the mass spectrometer without inter-element fractionation effects during each analysis. Capabilities of the method are demonstrated by determination of twenty five trace elements (Sc, Ti, V, Ga, Rb, Sr, Y, Zr, Nb, Cs, Ba, REE, Hf, Ta, Pb, Th and U) in a diverse range of geological reference materials that includes peridotites, basalts, granites, metamorphic rocks and sediments. More than 90% of determinations are indistinguishable from published reference values at the 95% confidence level. Systematic bias greater than 5% is observed for only a handful of elements (Zr, Nb and U) and may be attributed in part to inaccurate calibration values used for the NIST SRM 612 glass in the case of Zr and Nb. Detection limits for several elements, most notably La, are compromised at ultra-trace levels by impurities in the lithium borate flux but can be corrected for by subtracting appropriate procedural blanks. Reliable Pb analysis has proved problematic due to variable degrees of contamination introduced during sample polishing prior to analysis and from Pt-crucibles previously used to fuse Pb-rich samples. Scope exists for extending the method to include internal standard element/isotope spiking, particularly where integrated XRF analysis is not available to characterise major and trace elements in the fused lithium borate glasses prior to LA-ICP-MS analysis.  相似文献   

15.
A procedure for the digestion and analysis of quartz samples was developed to measure trace element concentrations in natural quartz. The certified glass sand reference material UNS-SpS was chosen to assess the precision, accuracy and detection limit of the analytical method. Quartz was digested with HF/HNO3 in a closed glassy carbon vessel and analysed by means of quadrupole ICP-MS with external calibration. Analyte concentrations of the sand UNS-SpS were compared with certified and other values from the literature. The abundances of a number of elements (Pr, Gd, Ho and Er) in the reference material are reported here for the first time. The procedure was then applied to three quartz samples from different geological settings to show that trace element data by ICP-MS can distinguish the origin of the sample.  相似文献   

16.
黄碧燕 《福建地质》2013,(4):330-333
样品经盐酸-硝酸分解处理,以硫酸铵为基体改进剂,石墨炉原子吸收光谱法测定地质样品中微量的银.结果表明该方法简便、快速、准确,相对标准偏差(RSD,n=6)为1.89%~6.70%,加标回收率为94%~106%.  相似文献   

17.
Errors in atomic absorption spectrophotometric determinations of Pb, Zn, Ni and Co may occur due to the presence of Fe, Al, Ca, Mg, Na and K in the sample solution. At low concentrations of trace element in solution (i.e., up to about 1 p.p.m.) and low concentrations of major elements (up to about 4,000 p.p.m. total cations), the main source of interference is enhancement due to background absorption; this may be corrected by the hydrogen continuum or by use of a non-absorbing wavelength. At higher concentrations of trace element the enhancement due to molecular absorption is partly or completely nullified through suppression caused by major element interference. Similarly, at higher concentrations of major elements, suppression occurs which is probably a function of atomizer efficiency. In these situations, correction for total molecular absorption results in a residual negative error.The errors in determination of Pb, Zn, Ni and Co in geological materials are often ignored in exploration geochemistry work. This restriction on the accuracy of the analytical data is becoming more important with the increasing use of exploration methods based on rock analyses. The errors may be minimized by ensuring that the concentration of both trace element and major element in solution is too low to cause significant suppression effects. Under these circumstances, reasonable results should be obtained through correction for background absorption.  相似文献   

18.
由于矿化样品的某种元素的含量高,对其他元素的测量产生了干扰,在质量参数均不超差的情况下,漏报、误报的风险极大。本文针对内蒙古自治区呼伦贝尔市八间房1:5万区域地质勘查调查样品中的10件矿化样品的铅的测试进行了方法比对试验,由于样品中钙量高,对原子吸收光谱法测铅产生了干扰,测试结果远远高于真实值。因此建议实验室在进行地球化学样品分析时,内检分析和异常抽查分析应尽量采用与基本分析不同的分析方法,规避误报、漏报的风险。  相似文献   

19.
高能偏振能量色散X射线荧光光谱仪应用现状和进展   总被引:4,自引:2,他引:2  
吉昂  李国会  张华 《岩矿测试》2008,27(6):451-462
对高能偏振能量色散X射线荧光光谱仪基本特点及其用于环境、生物、地质样品中痕量元素的分析和RoSH检测等领域的应用现状予以介绍,并对二次靶与滤光片在痕量元素分析中的应用作了探讨。  相似文献   

20.
We present a multi-element technique for the simultaneous determination of twelve trace elements in geological materials by combined isotope dilution (ID) sector field inductively coupled plasma-mass spectrometry (SF-ICP-MS) following simple sample digestion. In addition, the concentrations of fourteen other trace elements have been obtained using the ID determined elements as internal standards. This method combines the advantages of ID (high precision and accuracy) with those of SF-ICP-MS (multi-element capability, fast sample processing without element separation) and overcomes the most prevailing drawbacks of ICP-MS (matrix effects and drift in sensitivity). Trace element concentration data for BHVO-1 (n = 5) reproduced to within 1–3% RSD with an accuracy of 1–2% relative to respective literature values for ID values and 2–3% for all other values. We have applied this technique to the analysis of seventeen geological reference materials from the USGS, GSJ and IAG. The sample set also included the new USGS reference glasses BCR-2G, BHVO-2G and BIR-1G, as well as the MPI-DING reference glasses KL2-G and ML3B-G, and NIST SRM 612. Most data agreed within 3–4% with respective literature data. The concentration data for the USGS reference glasses agreed in most cases with respective data of the original rock powder within the combined standard uncertainty of the method (2–3%), except the U concentration of BIR-1G, which showed a three times higher concentration compared to BIR-1.  相似文献   

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