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Radiolysis of solid-state nitrogen heterocycles provides clues to their abundance in the early solar system

机译:固态氮杂环的辐射分解为其早期太阳系中的丰度提供了线索

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We studied the radiolysis of a wide variety of N-heterocycles, including many of biological importance, and find that the majority are remarkably stable in the solid-state when subjected to large doses of ionizing gamma radiation from a Co-60 source. Degradation of N-heterocycles as a function of dose rate and total dose was measured using high-performance liquid chromatography with UV detection. Many N-heterocycles show little degradation when gamma-irradiated up to a total dose of 1 MGy, which approximates hundreds of millions of years' worth of radiation emitted in meteorite parent bodies due to slow radionuclide decay. Extrapolation of these results suggests that these N-heterocyclic compounds would be stable in dry parent bodies over solar system timescales. We suggest that the abundance of these N-heterocycles as measured presently in carbonaceous meteorites is largely reflective of their abundance at the time aqueous alteration stopped in their parent bodies and the absence of certain compounds in present-day samples is either due to the formation mechanisms or degradation which occurred during periods of aqueous alteration or thermal metamorphism.
机译:我们研究了各种N-杂环的辐射溶解,包括许多生物重要性,并发现当受到CO-60源的大剂量电离γ辐射时,大多数在固态中非常稳定。使用具有UV检测的高性能液相色谱法测量作为剂量率的函数和总剂量的N-杂环的降解。当γ-照射到总剂量为1麦氏后,许多N-杂环显示出很小的降解,这近似由于放射性核素衰减缓慢,陨石母体在陨石父母体中发出的数百百万年的辐射。这些结果的外推表明,这些N-杂环化合物在Solar System Timescalles上的干父母体中是稳定的。我们认为,目前碳质陨石中目前测量的这些n杂拷物的丰度主要反映其在其亲本体中停止的时间水溶液的丰度,并且在当前样品中没有某些化合物是由于地层机制在水性改变或热变质期间发生的降解或降解。

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