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首页> 外文期刊>Analytical chemistry >Precise Measurement of the Hydrogen Isotope Composition of Phyllosilicates by Continuous Flow Off-Axis Integrated Cavity Output Spectroscopy
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Precise Measurement of the Hydrogen Isotope Composition of Phyllosilicates by Continuous Flow Off-Axis Integrated Cavity Output Spectroscopy

机译:通过连续流脱轴集成腔输出光谱法精确测量文化氢同位素组成

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摘要

New methodology is presented for analyzing hydrogen isotope ratios ( D / H ) in phyllosilicate minerals by laser absorption spectroscopy. D / H measurements were carried out using an off-axis integrated cavity output spectroscopy (OA-ICOS) instrument operated in a continuous flow configuration. Water was extracted from minerals in a high temperature quartz column and advanced to the analyzer in a dry air carrier gas stream. We report the first D / H measurements by a laser system for serpentine, muscovite, sericite, talc, and biotite. We also measure kaolinite, gypsum, and small volumes of water. Materials, excluding biotite, were calibrated to within 1.5‰ of IRMS-measured δ D _(VSMOW) values, with an average precision of 1.1‰. Biotite δ D measurements were up to 10‰ more positive than established IRMS values, due to partial reduction of evolved waters by Fe in the high temperature column. We provide recommendations for overcoming redox interference for measurements of biotite, and other ferrous materials, by OA-ICOS. Rapid, precise, and accurate analyses were carried out on water volumes as low as 0.25 μL extracted from minerals. With the exception of talc, the time required for thermal dewatering and measurement is 140 s, which translates into a throughput of up to 6 mineral samples per hour, including replicates. By demonstrating high precision, rapid throughput, low cost, and ease of operation, we provide a tool that should enable researchers at institutions with limited funding to routinely measure D / H in hydrous minerals. The protocols presented herein should also be useful to commercial users seeking to produce high density isotope data sets relevant to exploration of hydrothermal ore deposits and geothermal fields.
机译:通过激光吸收光谱介绍用于分析氢硅酸盐矿物质中的氢同位素比(D / H)的新方法。使用以连续流量配置操作的轴外集成腔输出光谱(OA-ICOS)仪器进行D / H测量。从高温石英柱中的矿物中提取水,并在干燥空气载气流中提前到分析仪。我们通过针对蛇纹石,Muscovite,Sericite,Talc和Biotite的激光系统报告第一个D / H测量。我们还测量高岭石,石膏和小体积水。不包括Biotite的材料被校准到1.5英镑的IRMS测量ΔD_(vsmow)值内,平均精度为1.1‰。由于在高温柱中通过Fe部分减少了,BiotiteΔd测量比建立的IRMS值更高,而不是建立的IRMS值更高。我们通过OA-ICO提供克服Biotite的氧化还原干扰和其他铁质材料的建议。在从矿物质中提取的低至0.25μL的水体积上进行快速,精确和精确的分析。除了滑石粉外,热脱水和测量所需的时间为140秒,其每小时转化为多达6个矿物样品的吞吐量,包括重复。通过展示高精度,快速吞吐量,低成本和易于操作,我们提供了一种工具,应该使研究人员能够在有限的资金中实现有限的资金来定期测量含水矿物质的D / H.本文提出的方案也应该对寻求产生与水热矿石沉积物和地热场相关的高密度同位素数据集的商业用户有用。

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