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Mineral Parageneses in Franciscan Metamorphic Rocks, Panoche Pass, California

机译:加利福尼亚州帕诺奇山口的方济会变质岩中的矿物共生

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摘要

Approximately 33 square miles of Franciscan terrane near Panoche Pass in the Diablo Range of the central California Coast Ranges were mapped at an initial scale of 1:12,000. Serpentinite intrusions present in the area are not mantled by metasomatic glaucophane schist aureoles, but do appear to contain tectonic inclusions of chloritized eclogite, "glaucophane eclogite," amphibolite, glaucophane schist, and greenstone. Petrographic and X-ray investigations of country rocks reveal systematic mineral parageneses in metabasalts, metacherts, and metagraywackes. Conversion of greenstones to blueschists involved reaction of albite + actinolite + chlorite to form crossite + lawsonite; greenstones contain calcite, mafic glaucophane schists calcite or aragonite. Least metamorphosed metacherts contain very minor albite + calcite; with progressive recrystallization these phases are replaced by acgirme, riebeckite, and aragonite. Metagraywacke paragenesis is from albite metagraywackes containing accessory lawsonite + calcite or aragonite, to jadeitic pyroxene + law-sonite metagraywackes carrying accessory glaucophane + aragonite. The "jadeitic pyroxene + lawsonite isograd" is recognized on the basis of metagraywacke assemblages. The aragonite isograd cannot be located precisely because of rapid postmetamorphic inversion to calcite. More extreme conditions of recrystallization appear to have been required to produce aragonite and the jadeitic pyroxene + lawsonite (+ quartz) compatibility than to convert greenstones to blueschists. Mineral parageneses and inferred phase relationships in the system CaCO3 and in the pseudoternary system Ab-An-H2O suggest that metamorphism at Panoche Pass involved temperatures of about 200–300°C, lithostatic pressures approaching 7–8 kb, and high chemical potential of H2O. Presence of a separate aqueous phase during the metamorphism is indicated. Based on observed mineral assemblages, experimental phase equilibrium data, tectonic and spatial occurrences of blueschists, available geophysical evidence, fossil occurrences, and radiometric dates, the following tentative geologic model is proposed. Franciscan rocks principally of the Diablo Range are hypothesized to have been deposited in an oceanic trench bordering the continental margin in later Jurassic and possibly earliest Cretaceous time. Rapid deposition and subsidence could have accounted for thermal disequilibrium and consequent relatively high pressure, low temperature recrystallization in axial portions of the trench. Thickness of the Franciscan rocks in the Diablo Range is thought to have approached 30 km near the trough axis. Diastrophism nearly contemporaneous with deposition locally deformed the structural trough, resulted in periodic intrusion of serpentinized mantle material and in rapid uplift, and allowed preservation of the blueschist facies mineral assemblages. Elsewhere, portions of the trench apparently were not destroyed and continued to receive sediments well into Cretaceous time.
机译:在加利福尼亚中部海岸山脉 的暗黑破坏神山脉中,帕诺什通行证附近的方济各会地表大约33平方英里,其初始比例为1:12,000。该区域中存在的蛇纹岩侵入体 并没有被交代的葡聚醚 片岩金黄色的幔包裹,但似乎包含了氯化榴辉岩(glaucophane eclogite)的构造包裹体 。 ,“角闪石”, 葡聚糖片岩和绿岩。乡村岩石的岩石学和X射线研究 揭示了玄武岩, 变石和变灰古怪中的系统矿物共生。绿岩向 蓝粉岩的转化涉及钠长石+阳起石+绿泥石 形成菱铁矿+钙钠石的反应;绿岩中含有方解石,镁铁矿片晶的方解石或文石。变质的 变色龙含有非常少量的钠长石+方解石;随着进行 的重结晶,这些相被acgirme,里贝石, 和文石代替。 Metagraywacke的共生是从钠长石metagraywackes 包含辅助的钠长石+方解石或文石,到翡翠的 辉石+钠铁定律的metagraywackes带有辅助的glaucophane +文石。 sup> 在变质灰色瓦克组合的基础上,可以识别“翡翠辉石+钙钠榴石等级”。无法精确定位文石isograd ,因为后变质 迅速转化为方解石。为了产生文石和硬玉与辉绿岩+钙钠榴石(+石英)的相容性,似乎需要更极端的重结晶条件( ),而不是将 greenstones转换为混蛋。 CaCO 3 系统和拟三元 系统Ab-An-H 2 中的矿物共生和推断的 相关系O表示,Panoche Pass的变质作用涉及大约200–300°C的 温度,接近7–8 kb的岩石静压 和H 2 < / sub> O. 表明在变质过程中存在单独的水相 根据观察到的矿物组合,实验相平衡 数据,blueschist的构造和空间发生,可用的 地球物理证据,化石发生和辐射测量日期, 提出了以下暂定地质模型。据推测,主要是暗黑破坏神山脉的方济各会长岩石,在侏罗纪晚期和可能最早的白垩纪时期被沉积在与大陆边缘相邻的海沟中。 。 快速的沉积和沉降可能是造成热 不平衡以及随之而来的沟槽轴向部分相对较高的压力,较低的 温度再结晶的原因。 > 认为暗黑破坏神山脉中的方济各会岩石的厚度已经接近槽轴30 km。灾难性的 与沉积几乎同时发生,局部地使 结构槽变形,导致蛇纹化的 地幔物质周期性侵入,并迅速隆升,并允许保存 blueschist相矿物组合。在其他地方,沟槽的 显然没有被破坏,并且继续 很好地接收到白垩纪时期的沉积物。

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  • 来源
    《GSA Bulletin》 |1965年第8期|879-914|共36页
  • 作者

    W. G ERNST;

  • 作者单位

    Dept. Geology and Institute of Geophysics and Planetary Physics, University of California, Los Angeles, California 90024;

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  • 正文语种 eng
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