首页> 外文OA文献 >Silicic Volcanism at the Northern and Western Extent of the Columbia River Basalt Rhyolite Flare-up: Rhyolites of Buchanan Volcanic Complex and Dooley Mountain Volcanic Complex, Oregon
【2h】

Silicic Volcanism at the Northern and Western Extent of the Columbia River Basalt Rhyolite Flare-up: Rhyolites of Buchanan Volcanic Complex and Dooley Mountain Volcanic Complex, Oregon

机译:哥伦比亚河玄武岩流纹岩爆发的北部和西部地区的硅质火山作用:布坎南火山复合体和俄勒冈州杜利山火山复合体流纹岩

摘要

Two mid-Miocene (16.5-15 Ma) rhyolite volcanic centers in eastern Oregon, the Buchanan rhyolite complex and Dooley Mountain rhyolite complex, were investigated to characterize eruptive units through field and laboratory analysis. Results of petrographic and geochemical analysis add to field observations to differentiate and discriminate the eruptive units. Additionally, new geochemical data are used to correlate stratigraphically younger and older basalt and ash-flow tuff units with regional eruptive units to constrain the eruptive periods with modern Ar-Ar age dates.Previous work at the Buchanan rhyolite complex was limited to regional mapping (Piper et al., 1939; Greene et al., 1972) and brief mention of the possibility of multiple eruptive units (Walker, 1979). Observed stratigraphic relationships and geochemical analysis were used to identify eight distinct eruptive units and create a geologic map of their distribution. Slight differences in trace element enrichment are seen in mantle normalized values of Ba, Sr, P, Ti and Nd-Zr-Hf and are used to differentiate eruptive units. New geochemical analyses are used to correlate the overlying Buchanan ash-flow tuff (Brown and McLean, 1980) and two underlying mafic units to the Wildcat Creek ash-flow tuff (~15.9 Ma, Hooper et al., 2002) and flows of the Upper Steens Basalt (~16.57 Ma, Brueseke et al., 2007), respectively, bracketing the eruptive age of the Buchanan rhyolite complex to between ~16.5 and ~15.9 Ma (Brueseke et al., 2007; Hooper et al., 2002).The Dooley Mountain rhyolite complex was thoroughly mapped by the U.S. Geological Survey (Evans, 1992) and geochemically differentiated in a previous Portland State University M.S. thesis (Whitson, 1988); however, discrepancies between published interpretations and field observations necessitated modern geochemical data and revisions to geologic interpretations. Field and laboratory studies indicate that the Dooley Mountain rhyolite complex consists of multiple eruptive units that were effusive domes and flows with associated explosive eruptions subordinate in volume. At least four geochemically distinct eruptive units are described with variations in Ba, Sr, Zr and Nb. Picture Gorge Basalt flows and Dinner Creek Tuff units found within the study area both overlay and underlie the Dooley Mountain rhyolite complex. These stratigraphic relationships are consistent with the one existing Ar-Ar age date 15.59±0.04 Ma (Hess, 2014) for the Dooley rhyolite complex, bracketing the eruptive period between ~16.0 and ~15.2 Ma (Streck et al., 2015; Barry et al., 2013).The findings of this study indicate that the Buchanan rhyolite complex and the Dooley Mountain rhyolite complex are the westernmost and northernmost rhyolite complexes among the earliest (16-16.5 Ma) mid-Miocene rhyolites associated with initiation of Yellowstone hot spot related volcanism.
机译:通过野外和实验室分析,对俄勒冈州东部的两个中新世(16.5-15 Ma)流纹岩火山中心布坎南流纹岩复合体和杜利山流纹岩复合体进行了研究。岩石学和地球化学分析的结果增加了野外观测,以区分和区分喷发单元。此外,新的地球化学数据用于将地层中较年轻和较老的玄武岩和灰分凝灰岩单位与区域性喷发单元相关联,以限制具有现代Ar-Ar年龄日期的喷发期。 Piper等人,1939年; Greene等人,1972年)并简要提到了多个喷发单元的可能性(Walker,1979年)。观察到的地层关系和地球化学分析被用来识别八个不同的喷发单元,并建立了它们分布的地质图。在Ba,Sr,P,Ti和Nd-Zr-Hf的地幔归一化值中可以看到痕量元素富集的细微差异,并用于区分喷发单元。新的地球化学分析用于将上覆的布坎南火山灰凝灰岩(Brown和McLean,1980)和两个下伏的镁铁质单元与Wildcat Creek灰泥凝灰岩(〜15.9 Ma,Hooper等,2002)和泥炭流之间的关系。上Steens玄武岩(〜16.57 Ma,Brueseke等,2007)分别将布坎南流纹岩复合体的爆发年龄包围在〜16.5和〜15.9 Ma之间(Brueseke等,2007; Hooper等,2002)。杜利山流纹岩复合体由美国地质调查局(Evans,1992)进行了彻底测绘,并在以前的波特兰州立大学MS实验室进行了地球化学区分论文(Whitson,1988);但是,已发表的解释和现场观测之间的差异使得现代地球化学数据和对地质解释的修订成为必要。现场和实验室研究表明,杜利山流纹岩复合体由多个喷发单元组成,这些喷发单元是喷出的穹顶和流动,伴有爆炸性喷发,其体积从属。描述了至少四个地球化学不同的喷发单元,其中Ba,Sr,Zr和Nb有所不同。研究区内发现的玄武岩玄武岩流和Dinner Creek凝灰岩单元都位于杜利山流纹岩复合体的上方和下方。这些地层关系与Dooley流纹岩复合体的现有Ar-Ar年龄为15.59±0.04 Ma(Hess,2014)相一致,将喷发期介于〜16.0和〜15.2 Ma之间(Streck等,2015; Barry等)。等(2013)。研究发现,布坎南流纹岩复合体和杜利山流纹岩复合体是最早的(16-16.5 Ma)中中新世流纹岩中最西端和最北端的流纹岩复合体,与黄石热点的引发有关相关的火山活动。

著录项

  • 作者

    Large Adam M.;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号