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首页> 外文期刊>The American mineralogist >Validation of LA-ICP-MS fluid inclusion analysis with synthetic fluid inclusions
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Validation of LA-ICP-MS fluid inclusion analysis with synthetic fluid inclusions

机译:用合成流体包裹体验证LA-ICP-MS流体包裹体分析

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Laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) has become recognized as a sensitive, efficient, and cost-effective approach to measuring the major-, minor-, and trace-solute compositions of individual fluid inclusions in minerals. As a prerequisite for the routine analysis of natural inclusions in our laboratory, the precision and accuracy of the technique was assessed using sets of multi-element synthetic fluid inclusions. Five multi-element standard solutions were prepared, and incorporated as fluid inclusions in quartz crystals at 750 degrees C and 7 kbar. Fluid inclusions were ablated with a 193 nm ArF excimer laser and analyzed with a quadrupole ICP-MS, equipped with an octopole reaction cell for the removal of Ar-based interferences. The internal standard used in all cases was Na. Analytical precision for K, Rb, and Cs is typically better than 15% RSD, whereas Li, Mg, Ca, Sr, Ba, Mn, Fe, Cu, Zn, and Cl analyses are typically reproducible within 30% RSD. Measured concentrations approximate a Gaussian distribution, suggesting that analytical errors are random. Analyses for most elements are accurate within 15%. Limits of detection vary widely according to inclusion volume, but are 1 to 100 mu g/g for most elements. These figures of merit are in excellent agreement with previous studies. We also demonstrate that, over the range investigated, precision and accuracy are insensitive to inclusion size and depth. Finally, the combination of our LA-ICP-MS analyses with microthermometric data shows that charge-balancing to NaCl-H2O equivalent chloride molality is the most valid approach to LA-ICP-MS data reduction, where chloride-dominated fluid inclusions are concerned.
机译:激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)已被公认为测量矿物中单个流体包裹体的主要,次要和痕量溶质组成的灵敏,高效且经济高效的方法。作为对我们实验室中的自然包裹体进行常规分析的前提,我们使用多元素合成流体包裹体评估了该技术的精度和准确性。制备了五种多元素标准溶液,并将它们作为流体夹杂物掺入到750摄氏度和7 kbar的石英晶体中。用193 nm ArF准分子激光烧蚀液体夹杂物,并用配备有八极杆反应池的四极杆ICP-MS进行分析,以消除基于Ar的干扰。所有情况下使用的内标均为Na。 K,Rb和Cs的分析精度通常优于15%RSD,而Li,Mg,Ca,Sr,Ba,Mn,Fe,Cu,Zn和Cl分析的重现性通常在30%RSD之内。测得的浓度近似于高斯分布,表明分析误差是随机的。大多数元素的分析准确度在15%以内。检测限根据夹杂物的体积变化很大,但是对于大多数元素而言,检测限为1至100μg / g。这些品质因数与先前的研究非常吻合。我们还证明,在研究的范围内,精度和准确性对夹杂物的大小和深度不敏感。最后,将我们的LA-ICP-MS分析与微热数据结合起来,可以得出电荷平衡到NaCl-H2O等效氯摩尔浓度的方法,是最有效的减少LA-ICP-MS数据的方法,其中涉及氯化物为主的流体包裹体。

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