Borovička Jan, Ackerman Lukáš, Rejšek Jan
Institute of Geology of the Czech Academy of Sciences, Rozvojová 269, CZ-16500, Prague 6, Lysolaje, Czech Republic; Nuclear Physics Institute of the Czech Academy of Sciences, Hlavní 130, CZ-25068, Husinec-Řež, Czech Republic.
Institute of Geology of the Czech Academy of Sciences, Rozvojová 269, CZ-16500, Prague 6, Lysolaje, Czech Republic.
Talanta. 2021 Jan 1;221:121389. doi: 10.1016/j.talanta.2020.121389. Epub 2020 Jul 18.
ACd-Cd double-spike method in combination with thermal ionization mass spectrometry (TIMS) was applied to obtain cadmium (Cd) mass fractions and stable isotope compositions in seven biogenic certified reference materials (pine needles, tomato leaves, spinach leaves, lichen, mussel tissue, oyster tissue, and pig kidney). This sample set was supplemented by the analysis of two manganese nodules and one soil reference material for which the Cd isotopic data has already been reported. The intermediate measurement precision of the whole protocol as determined for the NIST SRM 3108 Cd standard solution yields an excellent value of δCd of -0.005 ± 0.029‰ (2SD, n = 47). The Cd isotopic compositions of the biogenic materials, reported as δCd relative to NIST SRM 3108, range from -0.52 to +0.50‰. Plants show δCd mean values ranging from -0.09 to +0.45‰ whereas the δCd value of -0.17‰ was detected in the lichen and the values of -0.51, -0.52, and +0.47‰ were gathered for the oyster, mussel, and pig kidney tissues, respectively. The observed large variation of the δCd values in the biogenic reference materials indicates a potential to use the natural mass-dependent Cd isotope fractionation in environmental, biogeochemical, and physiological studies.
采用酸镉-镉双稀释剂法结合热电离质谱(TIMS),测定了7种生物源标准参考物质(松针、番茄叶、菠菜叶、地衣、贻贝组织、牡蛎组织和猪肾)中的镉(Cd)质量分数和稳定同位素组成。该样品集还补充分析了两种锰结核和一种土壤参考物质,其镉同位素数据已有报道。对NIST SRM 3108镉标准溶液测定的整个分析流程的中间测量精度,给出了δCd的优异值为-0.005±0.029‰(2SD,n = 47)。相对于NIST SRM 3108报告的生物源物质的镉同位素组成,δCd范围为-0.52至+0.50‰。植物的δCd平均值范围为-0.09至+0.45‰,而在地衣中检测到的δCd值为-0.17‰,牡蛎、贻贝和猪肾组织的δCd值分别为-0.51‰、-0.52‰和+0.47‰。生物源参考物质中观察到的δCd值的较大变化表明,在环境、生物地球化学和生理学研究中利用天然质量依赖的镉同位素分馏具有潜力。