首页> 外文期刊>Contributions to Mineralogy and Petrology >Determining the composition of C–H–O liquids following high-pressure and high-temperature diamond-trap experiments
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Determining the composition of C–H–O liquids following high-pressure and high-temperature diamond-trap experiments

机译:在高压和高温钻石阱实验之后确定C–H–O液体的成分

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摘要

Here, we present the first analytical technique (the quartz tube system technique—QTS) to directly analyze H2O and CO2 contents in liquids following high-pressure, high-temperature experiments in capsules containing mantle minerals and a diamond layer serving as a fluid/melt trap. In this technique, the capsule is frozen prior to opening; the diamond trap is cut out of the capsule and placed inside a N2-filled quartz tube. The diamond trap is heated up to 900 °C to release the gases to an Infrared Gas Analyzer, which determines the CO2 and H2O contents. Three sets of experiments containing SiO2 and CaCO3 powders were performed at 6 GPa and 1,000 °C in order to calibrate and validate the technique. These experiments demonstrated that when samples are prepared in a N2 environment, CO2 and H2O can be directly measured with an accuracy and precision of 2–3 and 3–4 %, respectively. The QTS technique (for H2O and CO2 determination) together with the cryogenic technique (total dissolved solids content) can be applied to diamond-trap capsules following HP–HT experiments in order to provide direct and complete liquid compositions coexisting with mantle material. The principal advantage of the QTS technique of direct analysis of volatile content in liquids over the indirect approach of mass balance calculations is the possibility of studying carbonated and hydrous liquid compositions in equilibrium with mantle material regardless of chemistry and pressure–temperature experimental conditions.
机译:在这里,我们介绍了第一种分析技术(石英管系统技术-QTS),该技术直接在包含地幔矿物和用作流体/熔体的金刚石层的胶囊中进行高压,高温实验后直接分析液体中的H2O和CO2含量陷阱。在这种技术中,胶囊在打开之前被冷冻。将钻石阱从胶囊中切出,并放入充满N2的石英管中。钻石捕集阱被加热到900°C,以将气体释放到红外气体分析仪中,该分析仪确定CO2和H2O的含量。为了校准和验证该技术,在6 GPa和1,000°C下进行了三组包含SiO2和CaCO3粉末的实验。这些实验表明,在N2环境中制备样品时,可以直接以2-3%和3-4%的精度和精度直接测量CO2和H2O。在提供HP-HT实验之后,可以将QTS技术(用于测定H2O和CO2)和低温技术(溶解的总固体含量)一起应用于捕集金刚石的胶囊,以提供直接和完整的与地幔物质共存的液体成分。与间接质量平衡计算方法相比,直接分析液体中挥发性成分的QTS技术的主要优势在于,无论化学性质和压力-温度实验条件如何,都可以研究与地幔物质平衡的碳酸和含水液体成分。

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