首页> 外文期刊>Contributions to Mineralogy and Petrology >Growth of bultfonteinite and hydrogarnet in metasomatized basalt xenoliths in the B/K9 kimberlite, Damtshaa, Botswana: insights into hydrothermal metamorphism in kimberlite pipes
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Growth of bultfonteinite and hydrogarnet in metasomatized basalt xenoliths in the B/K9 kimberlite, Damtshaa, Botswana: insights into hydrothermal metamorphism in kimberlite pipes

机译:博茨瓦纳Damshaa的B / K9金伯利岩中交代玄武岩异岩中的bulfonteinite和水石榴石的生长:对金伯利岩管中热液变质作用的见解

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摘要

Metamorphic assemblages within Karoo basalt xenoliths, found within volcaniclastic kimberlite of the B/K9 pipe, Damtshaa, Botswana, constrain conditions of kimberlite alteration. Bultfonteinite and chlorite partially replace the original augite-plagioclase assemblage, driven by the serpentinisation of the kimberlite creating strong chemical potential gradients for Si and Mg. Hydrogarnet and serpentine replace these earlier metamorphic assemblages as the deposits cool. The bultfonteinite (ideally Ca_2SiO_2[OH,F]_4) and hydrogarnet assemblages require a water-rich fluid containing F-, and imply hydrothermal alteration dominated by external fluids rather than utometamorphism from deuteric fluids. Bultfonteinite and hydrogarnet are estimated to form at temperatures of ca. 350–250℃, which are similar to those for serpentinisation. Alteration within the B/K9 kimberlite predominantly occurs between 250 and 400℃. We attribute these conditions to increased efficiency of mass transfer and chemical reactions below the critical point of water and a consequence of volume-increasing serpentinisation and metasomatic reactions that take place over this temperature range. A comparison of the B/K9 kimberlite with kimberlites from Venetia, South Africa suggests that the composition and mineralogy of included xenoliths affects the alteration assemblages within kimberlite deposits.
机译:在博茨瓦纳丹特夏的B / K9管道的火山碎屑金伯利岩中发现了Karoo玄武岩异岩中的变质组合,限制了金伯利岩蚀变的条件。在金伯利岩的蛇纹石化作用下,Bultfonteinite和亚氯酸盐部分替代了原始的辉石斜长石组合,从而为Si和Mg产生了强大的化学势梯度。随着沉积物的冷却,氢石榴石和蛇纹石取代了这些早期的变质组合。铝矾土(理想情况下为Ca_2SiO_2 [OH,F] _4)和水石榴石组合物需要富含F-的富水流体,这意味着水热蚀变主要由外部流体主导,而不是氘代流体的变质。据估计,Bultfonteinite和水石榴石的形成温度约为。 350–250℃,类似于蛇纹石化。 B / K9金伯利岩内部的变化主要发生在250至400℃之间。我们将这些条件归因于在水的临界点以下传质和化学反应的效率提高,以及在此温度范围内发生的蛇纹石化和交代反应体积增加的结果。将B / K9金伯利岩与南非Venetia的金伯利岩进行比较表明,所含异岩的组成和矿物学影响金伯利岩矿床内的蚀变组合。

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