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Application of capillary ion chromatography and capillary ion chromatography coupled with mass spectrometry to determine methanesulfonate and inorganic anions in microliter sample volumes of Antarctic snow and ice

机译:毛细管离子色谱法和毛细管离子色谱法结合质谱法测定南极冰雪中微升样品量中的甲磺酸根和无机阴离子

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The high costs associated with logistics and the collection of Antarctic ice-cores demands scientists to extract the absolute maximum data from these precious resources. Typically, the chemical analyses of these valuable ice cores, and/or of ice cores from low snow accumulation sites, requires the ice samples to be as small as possible. Despite having a relatively long history within the research lab, recently, capillary ion chromatography (Cap-IC) has become a commercial reality allowing its use as a new analytical capability for the determination of inorganic and organic ions based upon reduced sample volumes. A quantitative study on the simultaneous determination of organic and inorganic anions, including fluoride, methanesulfonate, chloride, sulfate and nitrate anions in Antarctic ice and snow samples was carried out. The new Cap-IC method necessitated only 40 mu L of injection volume to attain the analytical performances required, compared to the usual 1-5 mL. In this work, the Cap-IC was also coupled with mass spectrometry, and optimised for the identification and quantification of methanesulfonate. The limit of detection for methanesulfonate was decreased to 0.07 mu g L-1 using a hyphenated technique, being the lowest detection limit reported until now in the literature for any ion chromatography based method. To validate the new analytical methods, a comparative study was performed with statistical evaluation of the anion concentrations obtained for snow pit samples from the Aurora Basin North, East Antarctica site, by three separate ion chromatography based methods, namely, standard ion chromatography, and Cap-IC coupled to either suppressed conductivity or mass spectrometry detection.
机译:与物流和南极冰芯收集相关的高成本要求科学家从这些宝贵的资源中提取绝对最大的数据。通常,对这些有价值的冰芯和/或来自积雪量少的冰芯的化学分析要求冰样尽可能小。尽管在研究实验室中拥有相对悠久的历史,但是最近,毛细管离子色谱(Cap-IC)已成为一种商业现实,允许其用作基于减少的样品量来测定无机和有机离子的新分析功能。进行了同时测定南极冰雪样品中有机和无机阴离子(包括氟离子,甲磺酸根离子,氯离子,硫酸根和硝酸根阴离子)的定量研究。与通常的1-5 mL相比,采用新的Cap-IC方法只需进样40 µL即可达到所需的分析性能。在这项工作中,Cap-IC还与质谱联用,并针对甲烷磺酸盐的鉴定和定量进行了优化。使用联用技术将甲磺酸盐的检出限降低至0.07μg L-1,这是迄今为止任何基于离子色谱法的文献中报道的最低检出限。为了验证新的分析方法,通过三种独立的基于离子色谱的方法,即标准离子色谱法和Cap法,对南极东部地区Aurora盆地北部雪坑样品中阴离子浓度的统计评估进行了比较研究。 -IC耦合到抑制电导率或质谱检测。

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