Key Laboratory of Tibetan Plateau Environment Change and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing, People's Republic of China.
Sino-French Institute for Earth System Science, College of Urban and Environmental Sciences, Peking University, Beijing, People's Republic of China.
Isotopes Environ Health Stud. 2021 Jun;57(3):262-270. doi: 10.1080/10256016.2021.1883010. Epub 2021 Feb 17.
Water stable isotopes have been widely used as natural tracers to investigate soil-plant-atmosphere interactions. Recent developments in induction module cavity ring-down spectroscopy (IM-CRDS) have made it possible to rapidly complete isotope analyses, and to combust co-extracted organic compounds at the same time. However, the agreement between IM-CRDS and isotope ratio mass spectrometry (IRMS) analyses has generally been poor and was primarily attributable to spectral interference of IM-CRDS. Here we evaluated the impacts of organic contamination on the isotope ratios using IM-CRDS with two different methods. No spectral interference was observed for solid samples measured directly by IM-CRDS, whereas clear organic contamination occurred in isotope analyses for pre-extracted plant stem and leaf samples. Our results demonstrate that IM-CRDS can fully combust co-extracted organic compounds by in-line oxidation in the direct measurement of solid samples, although this may not guarantee that the IM-CRDS can obtain better isotopic data than IRMS. It may be risky to evaluate the performance of IM-CRDS by measuring pre-extracted water samples because cryogenic vacuum distillation is likely to introduce extra organic compounds, which may not be fully removed during subsequent IM-CRDS measurement. In addition, spectral variables are useful for post-processing corrections.
水稳定同位素已被广泛用作示踪剂,以研究土壤-植物-大气相互作用。感应模块腔衰荡光谱(IM-CRDS)的最新发展使得快速完成同位素分析成为可能,同时也可以燃烧共提取的有机化合物。然而,IM-CRDS 与同位素质谱(IRMS)分析的一致性通常较差,主要归因于 IM-CRDS 的光谱干扰。在这里,我们使用两种不同的方法评估了有机污染对同位素比值的影响。直接用 IM-CRDS 测量的固体样品未观察到光谱干扰,而预提取的植物茎和叶样品的同位素分析中则出现了明显的有机污染。我们的结果表明,IM-CRDS 可以通过在线氧化在直接测量固体样品时完全燃烧共提取的有机化合物,尽管这可能不能保证 IM-CRDS 比 IRMS 获得更好的同位素数据。通过测量预提取的水样来评估 IM-CRDS 的性能可能存在风险,因为低温真空蒸馏可能会引入额外的有机化合物,这些有机化合物在随后的 IM-CRDS 测量中可能无法完全去除。此外,光谱变量对于后处理校正很有用。