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首页> 外文期刊>Geosphere >New insights on the evolution of the Lyon Mountain Granite and associated Kiruna-type magnetite-apatite deposits, Adirondack Mountains, New York State
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New insights on the evolution of the Lyon Mountain Granite and associated Kiruna-type magnetite-apatite deposits, Adirondack Mountains, New York State

机译:纽约州阿迪朗达克山脉对里昂山花岗岩和相关的基律纳型磁铁矿-磷灰石矿床演化的新见解

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The integrated approach of field work, microscopy, whole-rock and mineral-scale geochemistry, and in situ U-Th-Pb zircon geochronology has proven to be useful for recognizing the type, timing, and sequence of complex Na and K fluid alteration related to the development of Kiruna-type magnetite-apatite deposits and the tectonic evolution of the granites that host these deposits. The Lyon Mountain Granite in the northeastern Adirondack Mountains of New York State has undergone multiple episodes of hydrothermal fluid alteration and Fe mineralization. Perthite granite containing ubiquitous 1060a€“1050 Ma zircon grains was overprinted by potassic alteration, which in turn was overprinted by pervasive Na alteration. During the Na alteration, preexisting orebodies, consisting of magnetite, clinopyroxene, and apatite, were overprinted and remobilized to form new deposits that contain magnetite, apatite, quartz, and zircon.The U-Th-Pb zircon geochronology data suggest that the Lyon Mountain Granite intruded the Adirondack Highlands during the Ottawan orogeny between ca. 1060 and 1050 Ma. However, subsequent alteration obscured much of the prehistory of the LMG. Amphibolite layers within the Lyon Mountain Granite and granitic dikes and pegmatites that crosscut the foliation in the Lyon Mountain Granite have been dated between 1045 and 1016 Ma. These ages coincide with previous published zircon age data from second-generation orebodies associated with Na alteration.
机译:事实证明,野外工作,显微镜,全岩石和矿物规模地球化学以及原位U-Th-Pb锆石地球年代学的综合方法可用于识别与Na和K流体复杂变化有关的类型,时间和序列到基律纳型磁铁矿-磷灰石矿床的发育以及这些矿床的花岗岩构造演化。纽约州东北部阿迪朗达克山脉的里昂山花岗岩经历了多次热液蚀变和铁矿化。含有普遍存在的1060a×1050 Ma锆石颗粒的Perthite花岗岩被钾化蚀变叠印,而钾化蚀变又覆盖了广泛的Na蚀变。在钠的蚀变过程中,由磁铁矿,斜辉石和磷灰石组成的原矿体被套印并重新固定,形成了含有磁铁矿,磷灰石,石英和锆石的新矿床。约旦河之间的渥太华造山运动期间,花岗岩侵入了阿迪朗达克高地。 1060和1050 Ma。但是,随后的变更掩盖了LMG的许多史前历史。里昂山花岗岩中的角闪石层和横穿里昂山花岗岩中叶脉的花岗岩和伟晶岩的历史可追溯到1045至1016 Ma之间。这些年龄与先前公布的第二代矿石中与钠蚀变有关的锆石年龄数据相吻合。

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