首页> 外文期刊>Journal of quaternary science: JQS >Online oxygen isotope analysis of sub-milligram quantities of biogenic opal using the inductive hightemperature carbon reduction method coupled with continuous-flow isotope ratio mass spectrometry
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Online oxygen isotope analysis of sub-milligram quantities of biogenic opal using the inductive hightemperature carbon reduction method coupled with continuous-flow isotope ratio mass spectrometry

机译:电感高温碳还原法-连续流同位素比质谱法在线分析亚蛋白量的亚毫克量在线氧同位素

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摘要

We present a method for determining sub-milligram quantities of biogenic opal. The method employs the inductive high-temperature carbon reduction method for dehydration of opal and reduction of silica, and a continuous-flow isotope ratio mass spectrometry system for direct analysis of the oxygen isotope ratio in the evolved carbon monoxide. The accuracy and precision of the online analytical system were evaluated by isotopic analysis of various quantities of standard SiO_2 in the range 40-538 mg. The time required to analyse a single sample was relatively short (50 min); hence, our method is suitable for routine analysis for paleoenvironmental studies that require large amounts of time-series data. The method was validated for samples in the sub-milligram range and can be applied to oxygen isotope analysis of various types of biogenic opal that have not been analysed because of their small amounts in natural samples. We successfully applied our method to (i) the first oxygen isotope analysis of monospecific radiolarian skeletons and (ii) high-resolution oxygen isotope analysis of Holocene diatom frustules from the Southern Ocean.
机译:我们提出一种确定亚毫克量的生物蛋白石的方法。该方法采用感应高温碳还原法进行蛋白石的脱水和二氧化硅的还原,并采用连续流同位素比质谱系统直接分析所释放出的一氧化碳中的氧同位素比。通过对40-538 mg范围内的各种标准SiO_2进行同位素分析,评估了在线分析系统的准确性和精密度。分析单个样品所需的时间相对较短(50分钟)。因此,我们的方法适用于需要大量时间序列数据的古环境研究的常规分析。该方法已针对亚毫克级范围内的样品进行了验证,可用于由于天然样品中的少量而未被分析的各种类型的生物蛋白石的氧同位素分析。我们成功地将我们的方法应用于(i)单特异性放射虫骨架的首次氧同位素分析和(ii)来自南大洋的全新世硅藻壳的高分辨率氧同位素分析。

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