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应用石墨炉原子吸收光谱法(GFAAS)测定煤、地球化学样品、土壤、空气等不同基质中的铍,关键是基体改进剂的选择问题。本文采用一体化平台石墨管,通过缓慢升温燃烧灰化煤炭样品,在硝酸介质中,比较了7种基体改进剂(硝酸镧、硝酸镁、硝酸铝、磷酸氢二铵、氯化钯、碳酸钙、酒石酸)对煤样中铍的增敏效果,同时探讨了基体干扰及消除的问题。实验结果表明,在2%的硝酸介质中,以硝酸镧为基体改进剂,石墨炉灰化温度提高到1100℃,原子化温度仅为2300℃时,即可消除基体中铝、铁、钙、镁、磷等共存元素的干扰。铍的浓度在0~8μg/L范围内线性关系良好,方法检出限为0.008μg/g,定量限为0.025μg/g,精密度(RSD,n=11)为1.8%~2.8%,标准样品的测定值在给定值的误差范围内。其作用机理是镧与干扰元素结合生成了热稳定的难熔、难蒸发、难解离的化合物,将铍释放出来,镧起到既提高灰化温度,又相对降低原子化温度的双重作用,消除了基体干扰的同时,又延长了石墨管使用寿命。本方法操作简单,无需对石墨管预处理,降低了检测成本,具有很强的稳定性和适应性,适用于煤中铍的测定。 相似文献
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银是高纯铟的常检痕量元素,由于银含量低,一般的分析方法难以达到期望的检出限。本研究样品用硝酸溶解,强酸性阳离子交换树脂分离,试液蒸发浓缩后用石墨炉原子吸收光谱法测定高纯铟中痕量银。通过溶样方法、离子交换分离条件和仪器测定条件实验,结果表明,以0.7 mol/L硝酸作为淋洗液进行分离,样品中痕量砷、铝、铁、锡及大量的铟可被分离除去;铜、镉、镁、镍、锌、铅、硅和铊不能与银分离,但对测定无影响。方法线性范围为0~50 pg,相对标准偏差(RSD,n=8)小于10%,银的检出限为0.3 pg,测定下限为0.8ng/g,比文献方法的0.02~1μg/g中最低者低2个数量级,加标回收率为93.3%~110.0%。本方法由于分离了基体铟,避免了铟对银测定的影响,兼之将试液浓缩,有效地降低了检出限,且测定时无需使用基体改进剂,成本低,灵敏度较高,适合于高纯铟中痕量银的分析。 相似文献
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基体改进剂的应用——塞曼石墨炉原子吸收法直接测定化探样品中痕量银 总被引:1,自引:0,他引:1
基体改进剂用于石墨炉原子吸收技术,近年来日渐受到重视。应用基体改进剂塞曼石墨炉原子吸收法直接测定痕量银的报导不多,林绍军等用铱作基体改进剂,提高了银的灰化温度,消除了基体干扰,并应用于化探样品分析。用NH_4H_2FO_4作基体改进剂,也可提高银的灰化温度,N.Bloom用NH_4H-2PO_4作基体改进剂,测定了海洋沉积物中痕量银。作者用硫脲和(NH_4)_2HPO_4作混合基体改进剂,免除了大量基体对银的干扰,简化了操作手续。硫脲的引入,提高了银的原子吸收灵敏度。用本法测定地球化学标准参考样品中痕量银,结果与推荐值相符。本法的绝对灵敏度为4.1×10~(-12)g/1%,对银含量为0.067ppm的样品进行12次分析,分析结果的变动系数为9.2%。 相似文献
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应用石墨炉原子吸收光谱法测定地球化学样品中的痕量银,一般采用盐酸-硝酸-氢氟酸-高氯酸电加热溶样,铱、铂为基体改进剂,以硫脲作为介质可能会导致大量铜与硫脲发生沉淀,干扰测量结果,分析流程繁琐、成本高。本文采用50%的王水水浴溶样,以湿加方式加入50 g/L硫脲基体改进剂,避免了铜在溶液中与硫脲络合,消除了干扰。方法检出限为0.01 μg/g,准确度和精密度好,内外检合格率符合地质矿产行业标准。该方法简化了样品处理步骤,提高了工作效率,分析成本降低,适合批量样品的分析,且溶解样品的溶液还可继续用于氢化物发生法测定砷、汞、铋、锑等元素。 相似文献
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传统的应用石墨炉原子吸收光谱法测定化探样品中的痕量银,一般采用盐酸-硝酸-氢氟酸-高氯酸电热板加热溶样,使用铱、铂为基体改进剂,但存在分析流程繁琐、成本高等缺点。相比于电热板消解法,微波消解技术的高压密闭消解和微波快速加热等特点,具有酸用量少、消解完全、消解过程损失少等优点。本文对传统的微波消解和仪器工作参数进行了改良,确定了最佳测定条件。建立了HNO_3-H_2O_2高压密闭消解样品,石墨炉原子吸收法测定水系沉积物、土壤、岩石中痕量银的方法。采用65%的HNO_3和H_2O_2微波消解溶样,加入12 g/L硫脲为介质,消除了基体干扰。方法检出限为0.018μg/g,将所建立的分析方法用于沉积物标准物质(GBW07309、GBW07311)、土壤标准物质(GBW07402、GBW07404)和岩石标准物质(GBW07103、GBW07104)验证,结果显示测定值与推荐值吻合,准确度△lg C(GBW)≤±0.024、RE(GBW)≤±5.71%,精密度RSD(GBW)≤5.97%。该分析方法适用于大批化探样品中痕量银的测定。 相似文献
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Gilles Serge Odin 《Comptes Rendus Geoscience》2002,334(6):409-414
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414. 相似文献
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正1 Introduction Geological studies established on several sections in Lanping-Simao basin have shown that the salt-bearing strata of Mengyejing formation(Yunlong Fm.in Lanping basin)are constituted by an alternation of salt layers and interbedded facies.The latter consists mainly of mudstones,and mudstone-rich conglomerate.The mineralogy and geochemistry of salt-bearing beds and 相似文献
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正On 22nd April 2014,with the approach of the 45th World Earth Day,China’s Ministry of Land and resources issued the status of China’s mineral resources in 2013.The first task of the prospecting breakthrough strategy action implemented in the last five years has been completed,and China’s security capacity for mineral resources has been significantly improved.In the 相似文献
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正There are more than 700 salt lakes with area of more than 1km2 on the Qinghai-Tibet Plateau of China.In recent years,an oilfield brine was also found in the Nanyishan Section of Qaidam Basin in the Qinghai-Tibet 相似文献
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正1 Introduction Physical and numerical models are constructed to investigate the evolution and mechanism of salt migration driven by tectonic processes.In recent years,we have designed and ran series of models to simulate salt 相似文献
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YUAN Qin LI Jianguo QIN Zhanjie WEI Haicheng SHENG Shurong SHAN Fashou 《《地质学报》英文版》2014,88(Z1):276-276
正The study of Cretaceous-Palaeogene salt-bearing strata of the Khorat Basin Laos and the Lanping-Simao Basin in Yunnan,China has an great significance not only in explaining the basin evolution and the genesis of potash 相似文献
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正Potash is one of the long-term scare deposits in China,and potash prospecting has long been listed as a key brainstorm project for our nation and geological prospecting units.There have been considerable studies in search for potash deposits in the Kuqa depression of the Tarim basin(Jackson et al.,1991;Gemmer et al.,2004;Vendeville,2005;Vendeville and Jackson,1992a,1992b), 相似文献
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正1 Introduction Qaidam Basin in Qinghai,including 43 salt lakes with multiple dominant mineral such as potassium,magnesium,lithium etc.,is the most intensive distribution of Saline 相似文献