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Feldspar in type 4-6 ordinary chondrites: Metamorphic processing on the H and LL chondrite parent bodies

机译:4-6型普通球粒长石:在H和LL球粒母体上的变质处理

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We have carried out a study of feldspar compositions in a suite of H and LL ordinary chondrites, of petrologic types 4, 5, and 6, in order to examine the process of recrystallization and equilibration of feldspar as the degree of metamorphism increases. In the H chondrites, there is little variation in feldspar compositions among the petrologic types, suggesting that homogenization of chondrule mesostasis, from which feldspar is presumed to have crystallized, occurred before feldspar crystallization began. The LL chondrites we studied are more complex. In Bjurb?le (L/LL4), plagioclase in individual relict chondrules has distinct compositions, with a range of An/Ab ratios and low Or contents. This heterogeneity is most likely attributable to original compositional heterogeneity among chondrule mesostases: localized recrystallization of mesostasis must have occurred before diffusional equilibration took place. In Tuxtuac (LL5), the An/Ab ratio of plagioclase is more homogeneous, and plagioclase includes a significant Or component. In addition, we observe what appears to be exsolution of K-feldspar from albitic host grains. In Saint Séverin (LL6), the An/Ab ratio of plagioclase is homogeneous, but plagioclase compositions show a range of Or contents, corresponding to a patchy distribution of K in individual feldspar grains. The observations in these LL chondrites are difficult to interpret with a simple model of progressive equilibration with increasing petrologic type. We suggest that the current criteria for assigning petrologic types are poorly defined: it is possible that the assigned petrologic types of these chondrites do not correlate with their peak temperatures. We propose that feldspar compositions might record conditions during the heating stage of metamorphism, and that the early stages of metamorphism may have occurred in the presence of fluids, rather than under the dry conditions that are commonly assumed.
机译:我们研究了岩石类型4、5和6的一组H和LL普通球粒长石中的长石成分,以研究随着变质程度的增加,长石的重结晶和平衡过程。在H球粒陨石中,岩石类型之间的长石成分几乎没有变化,这表明长石晶格介导的均质化(据推测长石是从中结晶的)发生在长石结晶开始之前。我们研究的LL球粒陨石更为复杂。在Bjurb?le(L / LL4)中,单个re骨软骨中的斜长石具有不同的组成,具有一系列的An / Ab比和低的Or含量。这种异质性最有可能归因于软骨标准代谢酶之间的原始成分异质性:必须在扩散扩散发生之前就已经发生了介稳态的局部重结晶。在Tuxtuac(LL5)中,斜长石的An / Ab比更为均质,并且斜长石包含显着的Or成分。此外,我们观察到钾长石似乎是从宿主基质中析出的。在SaintSéverin(LL6)中,斜长石的An / Ab比率是均匀的,但斜长石的组成显示出一定的Or含量范围,对应于各个长石晶粒中钾的斑片状分布。这些LL球粒陨石中的观测值很难用岩石学类型不断增加的渐进平衡简单模型来解释。我们建议当前分配岩石类型的标准定义不明确:这些球粒陨石的分配岩石类型可能与其峰值温度不相关。我们提出长石的组成可能记录变质加热阶段的条件,而变质的早期阶段可能是在流体存在下发生的,而不是通常认为的干燥条件下发生的。

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