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Hambergite-rich melt inclusions in morganite crystals from the Muiane pegmatite, Mozambique and some remarks on the paragenesis of hambergite

机译:莫桑比克Muiane伟晶岩的摩根石晶体中富含重晶石的熔体包裹体以及有关该半晶石共生的一些评论

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摘要

Raman spectroscopic studies of daughter crystals of hambergite [Be2BO3(OH, F)] in primary melt and secondary fluid inclusions in morganite crystals from the Muiane pegmatite, Mozambique, show that the inclusions have extremely high beryllium concentrations, corresponding to as much as 10.6% (g/g) in melt inclusions and 1.25% (g/g) BeO in fluid inclusions. These melt and fluid inclusions were trapped at about 610°C and 277°C, respectively. We propose two possible mechanisms for the formation of the hambergite crystals: (i) direct crystallization from a boron- and beryllium-rich pegmatite-forming melt or (ii) these are daughter crystals produced by the retrograde reaction of the boron-rich inclusion fluid with the beryl host, after release of boric acid from the primary trapped metastable volatile-rich silicate melt during cooling and recrystallization. Although we favor the second option, either case demonstrate the extent to which Be maybe concentrated in a boron-rich fluid at relatively high temperatures, and in which species of Be maybe transported. One important constraint on the stability of the hambergite paragenesis is temperature; at temperatures of ≥650°C (at 2 kbar) hambergite is not stable and converts to bromellite [BeO].
机译:莫桑比克Muiane伟晶岩中蒙脱石晶体中初生熔体和次生流体包裹体中的菱铁矿[Be2 BO3 (OH,F)]的子晶体的拉曼光谱研究表明,这些包裹体具有极高的铍熔融夹杂物中的BeO浓度高达10.6%(g / g),而流体夹杂物中的BeO浓度高达1.25%(g / g)。这些熔体和流体夹杂物分别在约610℃和277℃下被捕集。我们提出了两种可能的方铁矿晶体形成机理:(i)从富含硼和铍的伟晶岩形成熔体中直接结晶,或(ii)这些是富含硼的夹杂物流体逆行反应产生的子晶体在冷却和重结晶过程中,从初级被捕集的亚稳的富含挥发物的硅酸盐中释放出硼酸之后,与绿柱状主体一起使用。尽管我们赞成第二种选择,但这两种情况都证明了Be在相对较高的温度下可能富集在富硼流体中的程度以及Be的种类。温度对菱镁矿共生的稳定性的一个重要限制是温度。温度≥650°C(2 kbar)时,钠锰矿不稳定,并转变为溴铁矿[BeO]。

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  • 来源
    《Mineralogy and Petrology》 |2010年第4期|p.227-239|共13页
  • 作者

    Rainer Thomas; Paul Davidson;

  • 作者单位

    Deutsches GeoForschungsZentrum Potsdam, Section 3.3 Chemistry and Physics of Earth Materials, Telegrafenberg, 14473, Potsdam, Germany;

    ARC Centre of Excellence in Ore Deposits, University of Tasmania, Hobart, Australia;

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  • 入库时间 2022-08-18 00:13:02

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