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Insights into the origin of carbonaceous chondrite organics from their triple oxygen isotope composition

机译:从三重氧同位素组成了解碳质球粒陨石有机物的来源

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摘要

Dust grains of organic matter were the main reservoir of C and N in the forming Solar System and are thus considered to be an essential ingredient for the emergence of life. However, the physical environment and the chemical mechanisms at the origin of these organic grains are still highly debated. In this study, we report high-precision triple oxygen isotope composition for insoluble organic matter isolated from three emblematic carbonaceous chondrites, Orgueil, Murchison, and Cold Bokkeveld. These results suggest that the O isotope composition of carbonaceous chondrite insoluble organic matter falls on a slope 1 correlation line in the triple oxygen isotope diagram. The lack of detectable mass-dependent O isotopic fractionation, indicated by the slope 1 line, suggests that the bulk of carbonaceous chondrite organics did not form on asteroidal parent bodies during low-temperature hydrothermal events. On the other hand, these O isotope data, together with the H and N isotope characteristics of insoluble organic matter, may indicate that parent bodies of different carbonaceous chondrite types largely accreted organics formed locally in the protosolar nebula, possibly by photochemical dissociation of C-rich precursors.
机译:有机质粉尘颗粒是形成太阳系中碳和氮的主要储层,因此被认为是生命出现的必要成分。然而,这些有机谷物起源的物理环境和化学机理仍受到高度争议。在这项研究中,我们报告了从三种标志性碳质球粒陨石Orgueil,Murchison和Cold Bokkeveld中分离出的不溶有机物的高精度三重氧同位素组成。这些结果表明,碳质球粒陨石不溶性有机物的O同位素组成落在三重氧同位素图中的斜率1相​​关线上。斜率1线表明缺乏可检测的质量相关的O同位素分馏,这表明在低温热液事件中,小行星母体上未形成大部分碳质球粒陨石有机物。另一方面,这些O同位素数据以及不溶有机物的H和N同位素特征可能表明,不同碳质球粒陨石类型的母体可能大量吸收了原生质星云中局部形成的有机物,这可能是由于C-的光化学分解引起的。丰富的前体。

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