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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Basement control of alkalic flood rhyolite magmatism of the Davis Mountains volcanic field, Trans-Pecos Texas, U.S.A.
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Basement control of alkalic flood rhyolite magmatism of the Davis Mountains volcanic field, Trans-Pecos Texas, U.S.A.

机译:戴维斯山火山岩野生岩岩岩岩岩岩地下室控制,Trans-Pecos Texas,U.S.A.

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AbstractVoluminous silicic lava flows, erupted ~37.4Ma from widespread centers within the Davis Mountains Volcanic Field (DMVF), covered approximately 10,000km2with an initial volume as great as 1000km3. Lava flows form three major stratigraphic units: the Star Mountain Rhyolite (minimum 220km3) of the eastern Davis Mountains and adjacent Barilla Mountains, the Crossen Formation (~75km3) of the southern Davis Mountains, and the Bracks Rhyolite (~75km3) of the Rim Rock region west of the Davis Mountains proper. Similar extensive rhyolite lava also occurs in slightly younger units (Adobe Canyon Rhyolite, ~125km3, 37.1Ma), Sheep Pasture Formation (~125km3, ~36Ma) and, less voluminously, in the Paisano central volcano (~36.9Ma) and younger units in the Davis Mountains. Individual lava flows from these units formed fields as extensive as 55km and 300-m-thick.Flood rhyolite lavas of the Davis Mountains are marginally peralkaline quartz trachyte to low-silica rhyolite. Phenocrysts include alkali feldspar, clinopyroxene, FeTi oxides, and apatite, and, rarely, fayalite, as well as zircon in less peralkaline units. Many Star Mountain flows may be assigned to one of four geochemical groupings. Temperatures were moderately high, ranging from ~911 to 860°C in quartz trachyte and low silica rhyolite. We suggest that flood rhyolite magma evolved from trachyte magma by filter pressing processes, and trachyte from mafic magma in deeper seated plutons.The Davis Mountains segment of Trans-Pecos Texas overlies Grenville basement and is separated from the older Southern Granite and Rhyolite Province to the north by the Grenville Front, and from the younger Coahuila terrane to the south by the Ouachita Front. We suggest that basement structure strongly influenced the timing and nature of Trans-Pecos magmatism, probably in varying degrees of impeding the ascent of mantle-derived mafic magmas, which were produced by upwelling of asthenospheric mantle above the foundered Farallon slab. Basalt was able to penetrate Coahuila crust in the Big Bend region. Thicker Grenville crust under the Davis Mountains retarded ascent of mafic magmas, allowing mafic plutons to differentiate into silicic magma that was eventually erupted as flood lava. North of the Grenville Front, magmatism was further delayed and thicker, older crust there may have helped concentrate magmatism under the Davis Mountain region. Only after the onset of Basin and Range faulting was true basalt erupted over much of the Trans Pecos.Highlights?Field Relations and Geochemistry of Alkalic Flood Rhyolite?Basement Control of Alkalic Flood Rhyolite Magmatism?Tectonic Setting of Alkalic Flood Rhyolite with Farallon Plate Foundering
机译:<![cdata [ 抽象 Voluminity硅熔岩流量,从戴维斯山火山(DMVF)内的广泛中心爆发了〜37.4ma大约10,000km:sup loc =“post”> 2 ,初始卷,大约1000km 3 。熔岩流动三大地层单位:东戴维斯山脉和邻近的巴西亚山脉(〜75km < CE:Sup =“Post”> 3 )的南达沃斯山脉,以及砖的流纹岩(〜75km 3 )戴维斯山脉西部的边缘岩石地区适当。类似的广泛的菱形熔岩也发生在稍微较年轻的单位(Adobe Canyon Rhyolite,〜125km 3 ,37.1ma),绵羊牧场地层(〜125km 3 ,〜36mA),并且在佩萨诺中央火山(〜36.9mA)和戴​​维斯山脉的较年轻单位中,不那么积累。各个熔岩从这些单元流动形成为55km和300-m厚的字段。 戴维斯的洪水流狼泥液山脉是薄层丙氨酸石英曲囊到低二氧化硅流纹岩。 PhenCrysts包括碱性长石,Clinopyroxene,胎氧化物和磷灰石,并且很少,脱铝,以及锆的锆单位。许多星山流可以被分配给四个地球化学分组中的一个。温度高度高,在石英骨质和低二氧化硅流纹岩中的〜911至860℃。我们建议通过滤过工艺从龟甲岩浆岩体岩体岩体岩体,以及来自更深的坐在的钚中的MAFIC Magma的棘轮。 Trans-Pecos德克萨斯州戴维斯山脉覆盖了格林维尔地下室,并由格伦维尔前沿与南部的南部南部花岗岩和流谷岭省分开,并从Ouachita前面到南部的较年轻的Coahuila Terrane。我们建议地下室结构强烈影响了跨丘源岩浆广告的时机性和性质,可能是妨碍壁龛衍生的MAFIC岩浆中上升的变化程度,这是通过抑制法拉氏砂岩上方的哮喘壁龛的升高而产生的。玄武岩能够穿透大弯曲地区的Coahuila Crust。戴维斯山脉下方的Grenville Crust延迟了MAFIC岩浆中的上升,允许迈克斯·富国区分硅砾岩浆,最终被洪水熔岩爆发。格伦维尔北部的北部,岩浆主义进一步延迟,较厚的地壳,可能有助于集中在戴维斯山区下的岩浆广告。只有在盆地和范围断层的开始后,真正的玄武岩爆发了大部分反式Pecos。 亮点 < CE:简单 - 段ID =“SP0160”View =“全部”> 碱性洪水流纹岩的现场关系和地球化学:para> < CE:标签>? 碱性洪水流水流岩岩浆岩浆的地下室控制 与前院普罗隆板的碱洪水岩的构造设置

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