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Chemistry of magmatic fluids in the Harney Peak granite-pegmatite system, Black Hills, South Dakota.

机译:南达科他州布莱克希尔斯的Harney Peak花岗岩-透辉岩系统中的岩浆流体化学。

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摘要

Magmatic fluid and crystallized melt inclusions trapped in minerals in the world famous Harney Peak Granite, Black Hills, SD and associated pegmatites shed a new light on the petrogenesis of the leucogranite-pegmatite complexes. Microthermometric and bulk-fluid chemical analyses on primary, CO2-H2O-dissolved salt fluid inclusions revealed that the fluid evolution was complex. It included gradual compositional changes and discrete unmixing episodes, and varied substantially amongst various intrusions in the granite-pegmatite system.; Based on microthermometric properties of fluid inclusions trapped under conditions of immiscibility, the zoned Tin Mountain pegmatite crystallized at 2.7 kbar and 400–350°C, some of the lowest known temperatures for a silicate melt in the crust. The magmatic character of the primary inclusions is established on the basis of their coexistence with crystallized melt inclusions in magmatic quartz samples. Chemistry of bulk-fluid leachates indicates that the magmatic inclusions contain significant amounts of dissolved Na, Li carbonates ± borates. The low temperatures of crystallization resulted from the combined fluxing effects of H2O, Li, B, P, alkalis and carbonate ions in the pegmatitic melt. This research reports the first occurrence of dawsonite—NaAl(CO3)(OH)2—as an inclusion mineral in a pegmatite. The presence of this rare carbonate is consistent with the high alkalinity of the pegmatite fluid and confirms the important role played by carbonate complexes in pegmatite petrogenesis.
机译:在世界著名的哈尼峰花岗岩,北卡罗来纳州黑山和相关伟晶岩中被矿物质困住的岩浆流体和结晶熔体包裹物为白云石-伟晶岩复合物的岩石成因提供了新的思路。对初级,CO 2 -H 2 O溶解的盐流体包裹体的微量热化学和体液化学分析表明,流体演化很复杂。它包括逐渐的成分变化和离散的不混合现象,并且在花岗岩-透钙铁矿系统的各种侵入岩之间变化很大。基于在不混溶条件下截留的流体包裹体的微热学性质,该带状锡山伟晶岩在2.7 kbar和400–350°C结晶,这是地壳中硅酸盐熔融的最低已知温度。基本夹杂物与岩浆石英样品中的结晶熔体夹杂物共存,可确定其岩浆特征。大块渗滤液的化学性质表明,岩浆包裹体含有大量溶解的Na,碳酸锂和硼酸盐。结晶温度低是由于在成象熔体中H 2 O,Li,B,P,碱和碳酸盐离子的通量作用共同作用的结果。这项研究报告了钠铝榴石首次出现,钠铝(CO 3 )(OH) 2 是伟晶岩中的夹杂矿物。这种稀有碳酸盐的存在与伟晶岩流体的高碱度相符,并证实了碳酸盐配合物在伟晶岩成岩作用中的重要作用。

著录项

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Geology.; Geochemistry.; Mineralogy.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地质学;矿物学;
  • 关键词

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