首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >delta C-13 and delta O-18 isotopic composition of CaCO3 measured by continuous flow isotope ratio mass spectrometry: statistical evaluation and verification by application to Devils Hole core DH-11 calcite
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delta C-13 and delta O-18 isotopic composition of CaCO3 measured by continuous flow isotope ratio mass spectrometry: statistical evaluation and verification by application to Devils Hole core DH-11 calcite

机译:连续流动同位素比质谱法测定CaCO3的C-13和O-18同位素组成:统计评估和应用于恶魔洞核DH-11方解石的验证

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A new method was developed to analyze the stable carbon and oxygen isotope ratios of small samples (400 +/- 20 mug) of calcium carbonate. This new method streamlines the classical phosphoric acid/calcium carbonate (H3PO4/CaCO3) reaction method by making use of a recently available Thermoquest-Finnigan GasBench II preparation device and a Delta Plus XL continuous flow isotope ratio mass spectrometer. Conditions for which the H3PO4/CaCO3 reaction produced reproducible and accurate results with minimal error had to be determined. When the acid/carbonate reaction temperature was kept at 26degreesC and the reaction time was between 24 and 54 h, the precision of the carbon and oxygen isotope ratios for pooled samples from three reference standard materials was <0.1 and <0.2 per mill or parts per thousand, respectively, although later analysis showed that materials from one specific standard required reaction time between 34 and 54 h for a 180 to achieve this level of precision. Aliquot screening methods were shown to further minimize the total error. The accuracy and precision of the new method were analyzed and confirmed by statistical analysis. The utility of the method was verified by analyzing calcite from Devils Hole, Nevada, for which isotope-ratio values had previously been obtained by the classical method. Devils Hole core DH-11 recently had been re-cut and re-sampled, and isotope-ratio values were obtained using the new method. The results were comparable with those obtained by the classical method with correlation = +0.96 for both isotope ratios. The consistency of the isotopic results is such that an alignment offset could be identified in the re-sampled core material, and two cutting errors that occurred during re-sampling then were confirmed independently. This result indicates that the new method is a viable alternative to the classical reaction method. In particular, the new method requires less sample material permitting finer resolution and allows automation of some processes resulting in considerable time savings. Published in 2002 by John Wiley Sons, Ltd. [References: 10]
机译:开发了一种新方法来分析小样本(400 +/- 20马克杯)碳酸钙的稳定碳和氧同位素比。通过使用最近可用的Thermoquest-Finnigan GasBench II制备设备和Delta Plus XL连续流同位素比质谱仪,该新方法简化了经典的磷酸/碳酸钙(H3PO4 / CaCO3)反应方法。必须确定H3PO4 / CaCO3反应产生可再现且准确的结果且误差最小的条件。当酸/碳酸盐反应温度保持在26摄氏度且反应时间在24至54小时之间时,来自三种参考标准物质的合并样品的碳和氧同位素比的精度分别为每研磨机每百万分之一<0.1和<0.2尽管后来的分析表明,一种特定标准的材料需要180到34至54小时的反应时间才能达到这一精度水平,但分别达到了数千。已显示出等分试样筛选方法可进一步降低总误差。通过统计分析,对新方法的准确性和精密度进行了分析和确认。通过分析内华达州魔鬼洞的方解石验证了该方法的实用性,该方解石的同位素比值先前已通过经典方法获得。最近重新切割并重新采样了Devils Hole核心DH-11,并使用新方法获得了同位素比值。结果与两种同位素比率的相关性均等于+0.96的经典方法相当。同位素结果的一致性使得可以在重新采样的芯材中识别出对准偏移,然后独立地确认在重新采样期间发生的两个切削误差。该结果表明,该新方法是经典反应方法的可行替代方案。尤其是,新方法需要较少的样品材料,从而可以实现更高的分辨率,并允许某些过程实现自动化,从而节省大量时间。由John Wiley Sons,Ltd.在2002年出版。[参考:10]

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