Department of Earth Science, Tohoku University, Sendai, Japan.
Laboratory of Biomedical and Analytical Sciences, Faculty of Pharma-Science, Teikyo University, Tokyo, Japan.
Sci Rep. 2023 Apr 24;13(1):6683. doi: 10.1038/s41598-023-33595-0.
Carbonaceous meteorites contain diverse soluble organic compounds. These compounds formed in the early solar system from volatiles accreted on tiny dust particles. However, the difference in the organic synthesis on respective dust particles in the early solar system remains unclear. We found micrometer-scale heterogeneous distributions of diverse CHN and CHNO compounds in two primitive meteorites: the Murchison and NWA 801, using a surface-assisted laser desorption/ionization system connected to a high mass resolution mass spectrometer. These compounds contained mutual relationships of ± H, ± CH, ± HO, and ± CHO and showed highly similar distributions, indicating that they are the products of series reactions. The heterogeneity was caused by the micro-scale difference in the abundance of these compounds and the extent of the series reactions, indicating that these compounds formed on respective dust particles before asteroid accretion. The results of the present study provide evidence of heterogeneous volatile compositions and the extent of organic reactions among the dust particles that formed carbonaceous asteroids. The compositions of diverse small organic compounds associated with respective dust particles in meteorites are useful to understand different histories of volatile evolution in the early solar system.
碳质陨石中含有多种可溶性有机化合物。这些化合物是在早期太阳系中从小行星尘埃颗粒上吸积的挥发物中形成的。然而,早期太阳系中不同尘埃颗粒上的有机合成差异仍不清楚。我们使用表面辅助激光解吸/电离系统与高分辨率质谱仪相连,在两颗原始陨石(默奇森陨石和 NWA801)中发现了不同 CHN 和 CHNO 化合物的微米级不均匀分布。这些化合物包含了相互关系的 ± H、± CH、± HO 和 ± CHO,且分布高度相似,表明它们是一系列反应的产物。不均匀性是由这些化合物的丰度和系列反应的程度的微尺度差异引起的,表明这些化合物是在小行星吸积之前在各自的尘埃颗粒上形成的。本研究的结果提供了证据,证明了形成碳质小行星的尘埃颗粒之间存在不均匀的挥发物组成和有机反应程度。陨石中与各自尘埃颗粒相关的各种小分子有机化合物的组成有助于了解早期太阳系中挥发性演化的不同历史。