Effect of Nitrogen on the Structure and Composition of Primordial Organic Matter Analogs

IF 2.9 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Earth and Space Chemistry Pub Date : 2024-06-28 DOI:10.1021/acsearthspacechem.3c00311
Pauline Lévêque*, Clémence Queffelec, Christophe Sotin*, Carlos Afonso, Olivier Bollengier, Adriana Clouet, Erwan Le Menn, Yves Marrocchi, Isabelle Schmitz and Bruno Bujoli, 
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Abstract

Organic molecules are ubiquitous in primitive solar system bodies such as comets and asteroids. These primordial organic compounds may have formed in the interstellar medium and in protoplanetary disks (PPDs) before being accreted and further transformed in the parent bodies of meteorites, icy moons, and dwarf planets. The present study describes the composition of primordial organics analogs produced in a laboratory simulator of the PPD (the Nebulotron experiment at the CRPG laboratory) with nitrogen contents varying from N/C < 0.01 to N/C = 0.63. We present the first Fourier transform ion cyclotron resonance mass spectrometry analysis of these analogs. Several thousands of molecules with masses between m/z 100 and 500 are characterized. The mass spectra show a Gaussian shape with maxima around m/z 250. Highly condensed polyaromatic hydrocarbons (PAH) are the most common compounds identified in the samples with lower nitrogen contents. As the amount of nitrogen increases, a dramatic increase of the chemical diversity is observed. Nitrogen-bearing compounds are also dominated by polyaromatic hydrocarbons (PANH) made of 5- and 6-membered rings containing up to four nitrogen atoms, including triazine and pyrazole rings. Such N-rich aromatic species are expected to decompose easily in the presence of water at higher temperatures. Pure carbon molecules are also observed for samples with relatively small fractions of nitrogen. MS peaks compatible with the presence of amino acids and nucleobases, or their isomers, are detected. When comparing these Nebulotron samples with the insoluble fraction of the Paris meteorite organic matter, we observe that the samples with intermediate N/C ratios bracketing that of the Paris insoluble organic matter (IOM) display relative proportions of the CH, CHO, CHN, and CHNO chemical families also bracketing those of the Paris IOM. Our results support that Nebulotron samples are relevant laboratory analogs of primitive chondritic organic matter.

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氮对原始有机物模拟物的结构和组成的影响
有机分子在彗星和小行星等太阳系原始天体中无处不在。这些原始有机化合物可能在星际介质和原行星盘(PPD)中形成,然后在陨石、冰卫星和矮行星的母体中吸积并进一步转化。本研究描述了在原行星盘实验室模拟器(CRPG 实验室的 Nebulotron 实验)中产生的原始有机物类似物的组成,氮含量从 N/C < 0.01 到 N/C = 0.63 不等。我们首次对这些类似物进行了傅立叶变换离子回旋共振质谱分析。对质量介于 m/z 100 和 500 之间的数千个分子进行了表征。质谱显示出高斯形状,最大值在 m/z 250 左右。在含氮量较低的样品中,最常见的化合物是高度缩合的多芳烃(PAH)。随着含氮量的增加,化学多样性也急剧增加。含氮化合物还主要是由含有多达四个氮原子的五元环和六元环组成的多芳烃(PANH),包括三嗪环和吡唑环。在较高温度下,这些富含氮的芳香族化合物在有水的情况下很容易分解。在含氮相对较少的样品中也能观察到纯碳分子。检测到的 MS 峰与氨基酸和核碱基或其异构体的存在相符。在将这些星云样品与巴黎陨石有机物的不溶部分进行比较时,我们观察到,具有与巴黎不溶性有机物(IOM)相当的中间氮/碳比的样品显示出 CH、CHO、CHN 和 CHNO 化学族的相对比例,也与巴黎 IOM 的比例相当。我们的研究结果表明,Nebulotron 样品是原始软玉有机物的相关实验室类似物。
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来源期刊
ACS Earth and Space Chemistry
ACS Earth and Space Chemistry Earth and Planetary Sciences-Geochemistry and Petrology
CiteScore
5.30
自引率
11.80%
发文量
249
期刊介绍: The scope of ACS Earth and Space Chemistry includes the application of analytical, experimental and theoretical chemistry to investigate research questions relevant to the Earth and Space. The journal encompasses the highly interdisciplinary nature of research in this area, while emphasizing chemistry and chemical research tools as the unifying theme. The journal publishes broadly in the domains of high- and low-temperature geochemistry, atmospheric chemistry, marine chemistry, planetary chemistry, astrochemistry, and analytical geochemistry. ACS Earth and Space Chemistry publishes Articles, Letters, Reviews, and Features to provide flexible formats to readily communicate all aspects of research in these fields.
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