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New on-line methods for determining the deuterium/hydrogen composition of water and hydrocarbon gases using O~ (2-) ion-conducting solid electrolyte reactor

机译:使用O〜(2-)离子导电固体电解质反应器确定水和烃类气体的氘/氢组成的新在线方法

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Rationale: The deuterium/hydrogen (D/H) composition of water and hydrocarbon gases is widely used in geological, environmental and petroleum studies. The aim of this work was to develop a simple reduction zirconium dioxide solid electrolyte reactor (SER) for water decomposition and new methods for measuring hydrogen isotope ratios in water and hydrocarbon gases. Methods: δ~ 2H VSMOW values were determined using two new different on-line methods: solid electrolyte reactor isotope ratio mass spectrometry (SER-IRMS) for water and gas chromatography combustion solid electrolyte reactor isotope ratio mass spectrometry (GC-C-SER-IRMS) for hydrocarbon gases. Results: We have designed a solid electrolyte reactor based on oxygen ion-conducting zirconium dioxide stabilized by yttria (Y_ 2O_ 3). The reactor was used for catalytic electrochemical decomposition of water in a helium carrier gas. The solid electrolyte reactor has a small internal volume of 0.1 cm~ 3. It was operated at a temperature of ~950 °C. The total time of analysis for determining the hydrogen isotope ratio in water was 150 s. A typical water sample volume was about 0.2 μL (split ratio 500:1). The precision of the δ~ 2H VSMOW measurements for water was better than or equal to 2.2‰ and that for hydrocarbon gases was within 0.5-3.0‰. CONCLUSIONS Fast, simple and accurate on-line methods (SER-IRMS and GC-C-SER-IRMS) were developed. The SER-IRMS method makes it possible to work with small water samples. Although the GC-C-SER-IRMS method was developed for hydrocarbons, it can also be used for other organic gases and their mixtures. The new solid electrolyte reactor for water decomposition is low cost and the ceramic tube is inexpensive.
机译:理由:水和烃类气体的氘/氢(D / H)成分广泛用于地质,环境和石油研究。这项工作的目的是开发一种用于水分解的简单还原二氧化锆固体电解质反应器(SER),以及用于测量水和烃类气体中氢同位素比的新方法。方法:使用两种新的在线方法确定δ〜2H VSMOW值:用于水和气相色谱法的固体电解质反应器同位素比率质谱法(SER-IRMS)和气相色谱法燃烧固体电解质反应器同位素比率质谱法(GC-C-SER- IRMS)。结果:我们设计了一种基于氧化钇(Y_2O_3)稳定的传导氧离子的二氧化锆的固体电解质反应器。该反应器用于氦载气中水的催化电化学分解。固体电解质反应器的内部容积很小,为0.1 cm〜3。它在约950°C的温度下运行。确定水中氢同位素比的总分析时间为150 s。典型的水样体积约为0.2μL(分流比500:1)。水的δ〜2H VSMOW测量精度优于或等于2.2‰,烃类气体的精度在0.5-3.0‰之内。结论开发了快速,简单和准确的在线方法(SER-IRMS和GC-C-SER-IRMS)。 SER-IRMS方法使处理少量水样成为可能。尽管GC-C-SER-IRMS方法是针对碳氢化合物开发的,但它也可以用于其他有机气体及其混合物。用于水分解的新型固体电解质反应器成本低廉,并且陶瓷管便宜。

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