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High-precision optical measurements of 13C/12C isotope ratios in organic compounds at natural abundance

机译:天然丰度下有机化合物中13C / 12C同位素比的高精度光学测量

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摘要

A continuous-flow cavity ring-down spectroscopy (CRDS) system integrating a chromatographic separation technique, a catalytic combustor, and an isotopic 13C/12C optical analyzer is described for the isotopic analysis of a mixture of organic compounds. A demonstration of its potential is made for the geochemically important class of short-chain hydrocarbons. The system proved to be linear over a 3-fold injection volume dynamic range with an average precision of 0.95‰ and 0.67‰ for ethane and propane, respectively. The calibrated accuracy for methane, ethane, and propane is within 3‰ of the values determined using isotope ratio mass spectrometry (IRMS), which is the current method of choice for compound-specific isotope analysis. With anticipated improvements, the low-cost, portable, and easy-to-use CRDS-based instrumental setup is poised to evolve into a credible challenge to the high-cost and complex IRMS-based technique.
机译:描述了一种集成了色谱分离技术,催化燃烧器和同位素 13 C / 12 C光学分析仪的连续流腔衰荡光谱(CRDS)系统,用于有机化合物混合物的同位素分析。在地球化学上很重要的一类短链碳氢化合物已证明了其潜力。该系统在3倍进样量动态范围内证明是线性的,乙烷和丙烷的平均精度分别为0.95‰和0.67‰。甲烷,乙烷和丙烷的校准精度在使用同位素比质谱法(IRMS)确定的值的3‰以内,这是化合物特异性同位素分析的当前选择方法。通过预期的改进,基于CRDS的低成本,便携式且易于使用的仪器设置有望演变成对昂贵且基于IRMS的复杂技术的可靠挑战。

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