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Hydropyrolysis: A new technique for the analysis of macromolecular material in meteorites

机译:加氢热解:一种分析陨石中大分子物质的新技术

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摘要

The carbonaceous chondrite meteorites are fragments of asteroids that have remained relatively unprocessed since the formation of the Solar System 4.56 billion years ago. The major organic component in these meteorites is a macromolecular phase that is resistant to solvent extraction. The information contained within macromolecular material can be accessed by degradative techniques such as pyrolysis. Hydropyrolysis refers to pyrolysis assisted by high hydrogen gas pressures and a dispersed sulphided molybdenum catalyst. Hydropyrolysis of the Murchison macromolecular material successfully releases much greater quantities of hydrocarbons than traditional pyrolysis techniques (twofold greater than hydrous pyrolysis) including significant amounts of high molecular weight polyaromatic hydrocarbons (PAH) such as phenanthrene, carbazole, fluoranthene, pyrene, chrysene, perylene, benzoperylene and coronene units with varying degrees of alkylation. When hydropyrolysis products are collected using a silica trap immersed in liquid nitrogen, the technique enables the solubilisation and retention of compounds with a wide range of volatilities (i.e. benzene to coronene). This report describes the hydropyrolysis method and the information it can provide about meteorite macromolecular material constitution.
机译:碳质球粒陨石是小行星的碎片,自从45.6亿年前的太阳系形成以来,这些小行星一直没有经过加工。这些陨石中的主要有机成分是抗溶剂萃取的大分子相。大分子材料中包含的信息可以通过降解技术(例如热解)来访问。加氢热解是指在高氢气压力和分散的硫化钼催化剂的辅助下进行的热解。与传统的热解技术相比,Murchison大分子材料的热解成功释放出大量的烃(比含水的热解高两倍),其中包括大量的高分子量聚芳烃(PAH),例如菲,咔唑,荧蒽,pyr,pyr 、,、烷基化程度不同的苯并per烯和co烯单元。当使用浸入液氮中的二氧化硅捕集阱收集加氢热解产物时,该技术可以溶解和保留具有多种挥发性的化合物(即苯到二甲苯)。该报告介绍了加氢热解方法及其可提供的有关陨石大分子材料组成的信息。

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