首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Oxygen three-isotope fractionation lines in terrestrial silicate minerals: An inter-laboratory comparison of hydrothermal quartz and eclogitic garnet
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Oxygen three-isotope fractionation lines in terrestrial silicate minerals: An inter-laboratory comparison of hydrothermal quartz and eclogitic garnet

机译:陆生硅酸盐矿物中的氧三同位素分馏线:热液石英和鳞片石榴石的实验室间比较

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摘要

Geochemical—and perhaps biochemical—processes may yield tell-tale proxies in rocks and minerals on the Earth or other planetary bodies, in the form of distinctive slopes of linear fractionation arrays on the oxygen three-isotope plot. It is generally recognized that kinetic and equilibrium fractionation processes are described by different mass fractionation laws. We show that coupled laser fluorination, dual-inlet IRMS procedures for oxygen three-isotope analysis of silicates, at high precision, gave reproducible accuracy for the slope value as measured independently by two different laboratories, using replicates of the same silicate samples. As far as we are aware, this is the first such inter-laboratory comparison. Hydrothermal quartz (together with one chalk flint sample) with a range in δ18O of 31‰ gave respective slope λ values of 0.5240 ± 0.0010 and 0.5242 ± 0.0010, using Prism III and MAT 253 mass spectrometers, respectively, at the Open University (OU). Errors were computed from weighted linear regression and are reported at the 95% confidence level. The comparable result obtained at the Geophysical Laboratory (GL), Carnegie Institution of Washington, was 0.5240 ± 0.0015. A MAT 252 mass spectrometer was used for the latter measurements and the oxygen extraction and purification procedures differed in detail from those used at the OU. In contrast, slopes measured for replicates of seven garnet samples, metamorphosed under high-temperature, high-pressure conditions, and spanning 20‰ in δ18O, gave 0.5262 ± 0.0008 at OU (Prism III analyses) and 0.5266 ± 0.0012 at GL.
机译:地球化学过程(也许是生物化学过程)可能会在地球或其他行星体的岩石和矿物中产生具有说服力的代理,形式是氧气三同位素图谱上线性分馏阵列的独特斜率。通常认识到,动力学和平衡分级分离过程由不同的质量分级定律描述。我们显示了耦合激光氟化,双入口IRMS程序,用于硅酸盐的氧三同位素分析,具有很高的精度,使用两个相同的硅酸盐样品,通过两个不同的实验室分别测量得到的斜率值具有可重复的精度。据我们所知,这是第一个这样的实验室间比较。使用开放大学(OU)的Prism III和MAT 253质谱仪,δ18O范围为31‰的水热石英(连同一个白垩火石样品)的斜率λ值分别为0.5240±0.0010和0.5242±0.0010 。通过加权线性回归计算出误差,并以95%的置信度报告误差。在华盛顿卡内基研究所地球物理实验室(GL)获得的可比结果为0.5240±0.0015。后者使用MAT 252质谱仪进行测量,其氧气提取和纯化程序与OU所使用的程序有所不同。相比之下,在高温高压条件下变形并在δ18O中跨越20‰的七个石榴石样品的重复测量的斜率在OU(Prism III分析)处为0.5262±0.0008,在GL处为0.5266±0.0012。

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