首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Prevalence and nature of heating processes in CM and C2-ungrouped chondrites as revealed by insoluble organic matter
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Prevalence and nature of heating processes in CM and C2-ungrouped chondrites as revealed by insoluble organic matter

机译:厘米和C2-未组合的白细胞加热过程的患病率和性质如不溶性有机物透露的

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Chondrites are exhumed from their parent bodies by impacts, which at the same time can result in heating and mechanical modification (compaction, deformation, fracturing, etc.). However, whether impacts are responsible for the occurrence of heated C2s remains controversial since radiogenic and solar heating have also been invoked to explain them. Here we report a Raman and infrared study of the composition and structure of Insoluble Organic Matter (IOM) in a series of 39 CM and C2-ungrouped chondrites. These parameters are tracers of the extent and nature of thermal metamorphism a meteorite has experienced and reflect the degree to which the thermally driven and irreversible carbonization of IOM has proceeded. We propose a carbon-based classification of heated C2 chondrites that reveals a high occurrence frequency of thermally processed C2 chondrites (36%). This classification is in agreement with the mineralogical classification scheme of Nakamura (2005). Strongly heated C2 chondrites (PCA 02012, PCA 91008, Y 96720) display an IOM structural evolution that is dissimilar to that of type 3 chondrites that experienced long duration radiogenic thermal metamorphism. These differences almost certainly reflect kinetic constraints on IOM modification during short duration heating events. QUE 93005 is a weakly heated chondrite that experienced a retrograde aqueous alteration. Its very aliphatic-rich IOM points to a parent body hydrogenation through interactions with water. The closed-system conditions required by this mechanism could be satisfied by a kinetic confinement during a very short duration impact. MET 01072, a heavily compacted and uni-axially deformed chondrite, did not experience post-accretional heating. In this case, the deformation features probably reflect a low-velocity impact. In contrast, the weakly metamorphosed chondrite EET 96029 experienced one or several low pressure impacts that triggered mild heating and partial dehydration without deformation features. The study of a series of lithologies from the Tagish Lake C2-ungrouped chondrite confirms the coexistence of various degrees of post-accretional alteration, the most altered lithologies having experienced a moderate degree of heating. Overall, the high prevalence of heating in C2 chondrites, the evidence of short-duration heating in the most heated C2s and the ability of low velocity collisions to trigger heating favor impacts (against solar heating), as the dominant heating mechanism. Finally, our set of data does not support the action of a low temperature oxidation process that would control the aliphatic abundance in unheated primitive C2s. (C) 2018 Elsevier Ltd. All rights reserved.
机译:Chondrites因父母身体挖掘出来的影响,同时可能导致加热和机械改性(压实,变形,压裂等)。然而,由于辐射和太阳能加热也被调用以解释它们,因此是否对加热C2s的发生仍然存在争议仍存在争议。在这里,我们在39cm和C2-未组合的软骨中举报不溶性有机物质(IOM)的组合物和结构的拉曼和红外研究。这些参数是热变质的范围和性质的示踪剂,陨石经历了陨石,并反映了IOM的热驱动和不可逆碳化的程度。我们提出了一种基于碳的加热C2细胞分类,其揭示了热处理的C2软链条(&gt.36%)的高出现频率。该分类与Nakamura(2005)的矿物学分类方案一致。强烈加热的C2 Chondrites(PCA 02012,PCA 91008,Y 96720)显示IOM结构演变,其与经历长期辐射热变形的3型软骨质的结构演变。这些差异几乎肯定反映了在短时间内加热事件期间IOM修改的动力学约束。 que 93005是一种弱加热的乳房,经历了逆行水性改变。它非常富有的脂肪族的IOM通过与水的相互作用指向母体氢化。这种机制所需的闭合系统条件可以通过在非常短的持续时间内的动力学限制来满足。满足01072,一种严重压实的和无轴向变形的嗜吻合,没有经历过累积的加热。在这种情况下,变形特征可能反映了低速撞击。相反,弱变质的白细胞EET 96029经历了一种或几个低压撞击,其触发轻度加热和部分脱水而不会变形特征。来自Tagish Lake C2-Ungrouped Chondrite的一系列岩性的研究证实了各种程度的含蓄后变化的共存,最易于加热的岩性。总体而言,C2 Chondrites中加热的普及率高,在最漂亮的C2S中的短期加热证据以及低速冲突的能力,以引发加热益处的影响(针对太阳能加热),作为主要的加热机制。最后,我们的数据并不支持低温氧化过程的作用,该方法将控制未加热的原始C2s中的脂族丰度。 (c)2018年elestvier有限公司保留所有权利。

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