Yanay Nitzan, Wang Zhennan, Dettman David L, Quade Jay, Huntington Katharine W, Schauer Andrew J, Nelson David D, McManus J Barry, Thirumalai Kaustubh, Sakai Saburo, Rebaza Morillo Anna, Mallik Ananya
Department of Geosciences, University of Arizona, Tucson, AZ 85721, USA.
Estuary Research Center, Shimane University, Shimane, Japan.
Sci Adv. 2022 Oct 28;8(43):eabq0611. doi: 10.1126/sciadv.abq0611. Epub 2022 Oct 26.
Carbonate clumped isotope abundance is an important paleothermometer, but measurement is difficult, slow, and subject to cardinal mass () interferences using isotope ratio mass spectrometry (IRMS). Here, we describe an optical spectroscopic measurement of carbonate clumped isotopes. We have adapted a tunable infrared laser differential absorption spectrometer (TILDAS) system to measure the abundances of four CO isotopologues used for clumped isotope thermometry. TILDAS achieves the same precision (0.01‰ SE) as IRMS measurements rapidly (∼50 min per carbonate analysis) and using small samples (<2 mg of calcite), without making assumptions about O abundance in the sample. A temperature calibration based on 406 analyses of CO produced by digestion of 51 synthetic carbonates equilibrated at 6° to 1100°C is consistent with results for natural carbonates and previous calibrations. Our system results were indistinguishable from IRMS systems after replicating the InterCarb interlaboratory calibration. Measurement by TILDAS could change the landscape for clumped isotope analysis.
碳酸盐团簇同位素丰度是一种重要的古温度计,但使用同位素比率质谱法(IRMS)进行测量时难度大、速度慢且容易受到主要质量()干扰。在此,我们描述了一种碳酸盐团簇同位素的光学光谱测量方法。我们对可调谐红外激光差分吸收光谱仪(TILDAS)系统进行了改进,以测量用于团簇同位素测温的四种CO同位素分子的丰度。TILDAS能够快速(每次碳酸盐分析约50分钟)且使用小样品(<2毫克方解石)实现与IRMS测量相同的精度(0.01‰标准误差),并且无需对样品中的O丰度进行假设。基于对51种在6°C至1100°C平衡的合成碳酸盐消化产生的CO进行的406次分析的温度校准,与天然碳酸盐的结果和先前的校准结果一致。在重复InterCarb实验室间校准后,我们的系统结果与IRMS系统无法区分。TILDAS测量可能会改变团簇同位素分析的局面。