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Polyhedral Serpentine Grains in CM Chondrites

机译:多角形蛇纹石中的多面体蛇纹石纹

摘要

CM chondrites are primitive rocks that experienced aqueous alteration in the early solar system. Their matrices and fine-grained rims (FGRs) sustained the effects of alteration, and the minerals within them hold clues to the aqueous reactions. Sheet silicates are an important product of alteration, and those of the serpentine group are abundant in the CM2 chondrites. Here we expand on our previous efforts to characterize the structure and chemistry of serpentines in CM chondrites and report results on a polyhedral form that is structurally similar to polygonal serpentine. Polygonal serpentine consists of tetrahedral (T) sheets joined to M(2+)-centered octahedral (O) sheets (where (M2+) is primarily Mg(2+) and Fe(2+)), which give rise to a 1:1 (TO) layered structure with a 0.7-nm layer periodicity. The structure is similar to chrysotile in that it consists of concentric lizardite layers wrapped around the fiber axis. However, unlike the rolled-up chrysotile, the tetrahedral sheets of the lizardite layers are periodically inverted and kinked, producing sectors. The relative angles between sectors result in 15- and 30-sided polygons in terrestrial samples.
机译:CM球粒陨石是在早期太阳系中经历过水蚀变化的原始岩石。它们的基质和细颗粒的边缘(FGR)承受了变化的影响,并且其中的矿物质为水性反应提供了线索。片状硅酸盐是蚀变的重要产物,蛇纹石族的那些在CM2球粒陨石中含量丰富。在这里,我们扩展了我们先前的工作,以表征CM球状晶体中的蛇纹石的结构和化学性质,并报告了结构类似于多边形蛇纹石的多面体形式的结果。多边形蛇形结构由四面体(T)片材与以M(2+)为中心的八面体(O)片材(其中(M2 +)主要为Mg(2+)和Fe(2+))组成,从而产生1: 1(TO)层结构的层周期为0.7 nm。该结构与温石棉相似,因为它由围绕纤维轴包裹的同心蜥蜴石层组成。但是,与卷起的温石棉不同,蜥蜴石层的四面体薄片会周期性地翻转和扭结,从而产生扇形。扇区之间的相对角度会在地面样本中产生15边和30边的多边形。

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