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Megacrystic Gore Mountain–type garnets in the Adirondack Highlands: Age, origin, and tectonic implications

机译:阿迪朗达克高地的巨晶戈尔山型石榴石:年龄,起源和构造意义

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Spectacular exposures of the world's largest megacrystic garnets (to 35 cm diameter) occur in a coarse-grained amphibolite at the Barton Garnet Mine in the Adirondack Highlands (Gore Mountain, New York State, USA). Over the years, numerous geologists have concluded that the large size of the garnets resulted from an influx of fluids during ca. 1050 Ma upper amphibolite facies metamorphism of a ca. 1155 Ma olivine metagabbro. The presence of fluids under such mid-crustal pressure-temperature conditions is anomalous and warrants explanation. Evidence indicates that the fluids were introduced along, and close to, a steep border fault that juxtaposes charnockite against the garnet ore at the southern margin of the mine. Granitic pegmatites and quartz veins are present in the border zone and locally intrude the garnet ore.Geochronology has played a critical role in resolving the genesis of the Gore Mountain garnets. Over the past 20 yr Sm-Nd and Lu-Hf techniques have been used to date the crystallization of the garnets as 1049 ?± 5 Ma, an age that coincides with the termination of the contractional phase of the Ottawan orogeny, the onset of extensional orogen collapse, and the emplacement of the Lyon Mountain Granite. New U-Pb zircon age determinations of 1045 ?± 7.5 (Barton Garnet Mine) and 1055 ?± 7.4 (New York State Route 3 near Cranberry Lake) for Lyon Mountain granite pegmatites directly associated with megacrystic garnet amphibolites corroborate the synchronicity of emplacement of Lyon Mountain magmas and the growth of the garnet megacrysts.It is argued that during the ca. 1050 Ma extensional collapse of the Ottawan orogen, fluids gained access to extensional fault networks and interacted with country rocks. We further suggest that increasing temperature due to advected heat from Lyon Mountain Granite carried the Gore Mountain megagarnet amphibolite into granulite facies conditions that resulted in reactions between hornblende and garnet that produced orthopyroxene and calcic plagioclase intergrowths, both as symplectites and coarsely textured pods developed in pressure shadows. Geothermal modeling of garnet zoning in metapelites (Storm and Spear, 2005) and oxygen isotope zoning in titanite (Bonamici et al., 2011) require a short period of rapid cooling ca. 1050 Ma, which we interpret to be related to the extensional collapse of the Ottawan orogen at that time (Rivers, 2008; McLelland et al., 2010a, 2010b). Reconnaissance of the southern and central Adirondacks reveals that a number of megacrystic garnet occurrences similar to those at Gore Mountain are present in areas that contain both metagabbros and megacrystic garnet amphibolites, and we propose that all of these formed during orogen collapse, intrusion of Lyon Mountain Granite, and fluid-related alteration at high temperature.
机译:在阿迪朗达克高地(美国纽约州戈尔山)的巴顿石榴石矿山中,粗粒角闪石发生了世界上最大的巨型石榴石(直径达35厘米)的暴光。多年以来,许多地质学家得出结论,石榴石之所以大,是因为大约在1989年期间流体大量涌入。约1050 Ma的上角闪石相变质作用1155 Ma橄榄石代谢物。在这样的中地壳压力-温度条件下,流体的存在是异常的,值得解释。有证据表明,这些流体是沿着陡峭的边界断层引入的,并且靠近该边界,该断层使菱镁矿与矿山南缘的石榴石矿石并列。边界区存在花岗岩伟晶岩和石英脉,并局部侵入石榴石矿石。年代学在解决戈尔山石榴石的成因上起着关键作用。在过去的20年中,已使用Sm-Nd和Lu-Hf技术将石榴石的结晶定为1049?±5 Ma,这个年龄与渥太华造山运动的收缩期终止,伸展运动的发生相吻合。造山带塌陷,里昂山花岗岩的侵位。与里昂山花岗岩伟晶岩直接相关的新的U-Pb锆石年龄确定为1045?±7.5(巴顿·石榴石矿)和1055?±7.4(纽约州3号路线,蔓越莓湖附近),与大晶石榴石两闪石直接相关,这证实了里昂进驻的同步性有人认为,山间岩浆和石榴石大晶体的生长。 1050 Ma渥太华造山带的伸展塌陷,流体进入伸展断层网络,并与乡村岩石相互作用。我们进一步建议,由于里昂山花岗岩的平流热量导致温度升高,使戈尔山巨型石榴石闪石进入粒岩相条件,导致角闪石和石榴石之间发生反应,从而生成邻苯二茂铁和钙质斜长石共生体,两者均以压合形式出现,并形成了粗糙的豆荚。阴影。变质岩中石榴石带的地热模型(Storm和Spear,2005)和钛矿中氧同位素带的地热模型(Bonamici等,2011)需要短时间的快速冷却。 1050 Ma,我们认为与当时的渥太华造山带的伸展塌陷有关(Rivers,2008; McLelland等,2010a,2010b)。对南部和中部阿地伦达克山脉的勘测表明,在同时含有变质辉石和大晶石榴石两闪石的地区,存在着许多类似于戈尔山的大晶石榴石,我们建议所有这些都是在造山带塌陷,里昂山侵入期间形成的。花岗岩和高温下与流体有关的蚀变。

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