Department for the Monitoring and Protection of the Environment and for Biodiversity Conservation, Italian National Institute for Environmental Protection and Research (ISPRA), Chioggia (VE), Italy.
Thermo Fisher Scientific, Bremen, Germany.
Isotopes Environ Health Stud. 2022 May;58(2):141-158. doi: 10.1080/10256016.2022.2047040. Epub 2022 Mar 21.
This study reports the development of an all-in-one elemental analyser isotope ratio mass spectrometry (EA-IRMS) system modified for simultaneous analysis of dissolved organic carbon (DOC) concentration and its stable carbon isotope footprint (C) in aqueous samples. The method involves a quantitative oxidation of DOC in a 200 µL liquid sample to CO, after sample acidification and stripping by nitrogen. The detection limit of the method for DOC quantification was 0.2 mg C/L with an analytical precision of 12 %. Uncertainty of stable isotope determinations was 2 % at 0.2 mg DOC/L, while decreasing to 0.3 % at 20 mg DOC/L. Quantitative oxidation of DOC in aqueous samples was validated by using ring test water samples and Deep Sea reference seawater. The method performances of isotope analysis were evaluated by analysing different isotopic standard solutions. The applicability of the method was tested through the analysis of different environmental types of water, showing that C ranged from - 23.30 to -31.85 ‰, allowing to characterize samples of different environmental origin. The developed method offers several advantages including rapidity, use of small sample volumes and minimal sample pre-treatment, making it a valuable tool for routine DOC concentration measurements paired with isotopic characterization.
本研究报告了一种一体式元素分析同位素比质谱 (EA-IRMS) 系统的开发,该系统经过改良,可同时分析水溶液中溶解有机碳 (DOC) 浓度及其稳定碳同位素特征 (C)。该方法涉及将 200 µL 液体样品中的 DOC 定量氧化为 CO,在酸化和氮气吹扫后进行。该方法对 DOC 定量检测的检出限为 0.2 mg C/L,分析精密度为 12%。在 0.2 mg DOC/L 时,稳定同位素测定的不确定度为 2%,而在 20 mg DOC/L 时降低至 0.3%。通过使用环测试水样和深海参考海水验证了水样中 DOC 的定量氧化。通过分析不同的同位素标准溶液评估了同位素分析的方法性能。通过分析不同类型的环境水样,测试了该方法的适用性,结果表明 C 值范围为 -23.30 至 -31.85‰,可用于表征不同来源的环境样品。所开发的方法具有快速、使用小体积样品和最小样品预处理等优点,是一种用于常规 DOC 浓度测量和同位素特征分析的有价值的工具。