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EXPERIMENTAL STUDIES OF GROUP AL CHONDRULES

机译:团体训练的实验研究

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Dynamic crystallization and annealing experiments have been conducted using a group A1 chondrule bulk composition to examine the formation and alteration of mesostases that emit a bright yellow cathodoluminescence (CL). This type of mesostasis has only been observed in group A1 and A2 chondrules in the least altered chondritic meteorites. The dynamic crystallization experiments produce yellow luminescing mesostases only in experiments cooled to their final quench temperatures at the slowest cooling rates. The yellow CL is present only where low Ca pyroxene grows from the melt so the remaining liquid is enriched in normative anorthite and diopside. This composition is strongly associated with yellow luminescence in group A1 chondrule mesostases. Low temperature hydrothermal annealing experiments demonstrate that the yellow luminescence can only be destroyed and not enhanced or altered to blue luminescence by aqueous alteration, Annealing under dry conditions increased both the amount and intensity of the yellow luminescent material, Annealing experiments designed to further devitrify the mesostasis converted both yellow luminescing and nonluminescent mesostases to blue luminescing mesostases. These results confirm that yellow luminescing mesostases are the result of the thermal history group A1 chondrules experienced prior to accretion, and their alteration to blue luminescing mesostases is a direct result of their metamorphic history. [References: 31]
机译:动态结晶和退火实验已使用A1组软骨散装成分进行了研究,以研究发出亮黄色阴极发光(CL)的介酶的形成和变化。仅在变化最少的软骨陨石中的A1和A2软骨群中观察到了这种类型的介稳态。动态结晶实验仅在以最慢的冷却速度冷却至其最终淬灭温度的实验中产生发黄光的褪色酶。黄色CL仅存在于从熔体中生长出低Ca辉石的位置,因此剩余的液体富含规范性的钙长石和透辉石。该成分与A1软骨中突酶的黄色发光密切相关。低温水热退火实验表明,通过水相改变,黄色发光只能被破坏,而不能增强或改变为蓝色发光。在干燥条件下进行退火会增加黄色发光材料的数量和强度,退火实验旨在进一步使介导失透将黄色发光和不发光的褪色酶都转换为蓝色发光的褪色酶。这些结果证实了黄色发光的褪色酶是热史组A1​​软骨在吸积之前经历的结果,而它们变成蓝色发光的褪色酶是其变质历史的直接结果。 [参考:31]

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