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首页> 外文期刊>GSA Bulletin >Emplacement and reworking of Cretaceous, diamond-bearing, crater facies kimberlite of central Saskatchewan, Canada
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Emplacement and reworking of Cretaceous, diamond-bearing, crater facies kimberlite of central Saskatchewan, Canada

机译:加拿大萨斯喀彻温省中部白垩纪,含金刚石,火山口相金伯利岩的安放和改造

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摘要

In central Saskatchewan, Canada, kimberlites were emplaced into Cretaceous marine and nonmarine clastic sediments. Core recovered from one drill hole that intersects kimberlite (Smeaton FAC/UK core 169/8) was selected for an integrated study involving sedimentology, volcanology, mineralogy, geochemistry, palynology, micropaleontology, organic petrology, and radiometric age determination. Only crater facies kimberlite has been observed; there is no indication of the locations of feeder dikes. Four varieties of kimberlite occur, all originating from subaerial volcanism: (1) fluvial-reworked kimberlite; (2) diamondiferous kimberlite lapillistone air-fall deposits; (3) kimberlite olivine crystal-tuff air-fall deposits; and (4) diamondiferous marine wave-reworked kimberlite. Within the multiple primary eruptive phases of the kimberlite air-fall deposits, the volcanic style changed upward with time, from violent Strombolian to more explosive volcanism. The bulk of the volcanism formed conformable, air-fall deposits on terrestrial sediments of the Cantuar Formation, resulting in the development of positive-relief tephra cones. Subsequent marine transgression associated with the Westgate Formation partially beveled the top of the cone. The kimberlite air-fall deposits contain microdiamonds, 5 to 25 µm in diameter. The maximum temperature and vitrinite reflectance values of coaly matter in the kimberlites indicate that these deposits, although originally derived from magma at high temperatures, did not thermally affect entrained surficially derived clasts or the country rock during emplacement. The chemical content of intrakimberlite shale clasts is markedly different from the marine and nonmarine shales and indicates significant synemplacement and postemplacement fluid movement through the volcanic pile. At least two episodes of kimberlite volcanism occurred in the middle and late Albian (paleontologically assigned). A U-Pb perovskite radiometric age of 101.1 ± 2.2 Ma from a kimberlite lapillistone from the younger episode of volcanism is internally consistent with biostratigraphic studies that constrain the kimberlite volcanism as post–middle Albian and pre–late Albian to late Albian.
机译:在加拿大萨斯喀彻温省中部,金伯利岩被置于 白垩纪海洋和非海洋碎屑沉积物中。从与金伯利岩相交的一个钻孔中回收的岩心(smeaton FAC / UK 岩心169/8)被选为一项涉及沉积学, 火山学的综合研究,矿物学,地球化学,古生物学,微古生物学, 有机岩石学和辐射年龄确定。只观察到火山口 相金伯利岩;没有指示 支线堤的位置。发生了四种金伯利岩 ,它们都起源于航空火山作用: (2)钻石状金伯利岩lapillistone的空气沉积物 沉积物; (3)金伯利岩橄榄石凝灰岩空降沉积物; ;以及(4)含钻石的海浪重做金伯利岩。在 金伯利岩空降 沉积的多个主要喷发阶段内,火山样式随着时间的推移而向上变化,从 暴力的Strombolian到更具爆炸性的火山活动。大量的 火山活动在坎图亚组的陆地 沉积物上形成了适形的空降沉积物,导致正浮雕特发拉的发展 。视锥细胞。随后与Westgate组相关的海侵 部分使圆锥体的 斜切。金伯利岩的空降沉积物包含直径5至25 µm的微金刚石。金伯利岩中煤质的最高温度和镜质体反射率值指示 ,尽管这些沉积物最初源自高温的岩浆 在安置过程中对表面夹带的碎屑或乡村岩石产生热影响。金伯利岩页岩碎屑的化学成分 与海洋和非海洋页岩的 明显不同,并表明通过的显着的 同位和后置流体运动。 火山桩。至少在阿尔比亚中部和晚期发生了两次金伯利岩火山 (古生物学确定)。 U-Pb钙钛矿的辐射年龄为101.1±2.2 Ma,来自 < / sup>年轻的火山活动 中的金伯利岩拉皮石与生物地层学研究一致,该研究将 限制了金伯利岩火山作用为中上古时代的Albian ,并且将Albian提前到晚期Albian。

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  • 来源
    《GSA Bulletin》 |1997年第8期|1000-1020|共21页
  • 作者单位

    Geological Survey of Canada, Calgary, 3303-33 Street NW, Calgary, Alberta T2L 2A7, Canada;

    Geological Survey of Canada, Ottawa, 601 Booth Street, Ottawa, Ontario K1A 0E8, Canada;

    Scealu Modus, 2617 Cutler Avenue NE, Albuquerque, New Mexico 87106;

    Geological Survey of Canada, Calgary, 3303-33 Street NW, Calgary, Alberta T2L 2A7, Canada;

    Geological Survey of Canada, Calgary, 3303-33 Street NW, Calgary, Alberta T2L 2A7, Canada;

    Geological Survey of Canada, Calgary, 3303-33 Street NW, Calgary, Alberta T2L 2A7, Canada;

    Department of Earth and Atmospheric Sciences, University of Alberta, Edmonton, Alberta T6G 2E3, Canada;

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