首页> 外文OA文献 >Timing and evolution of metasomatic alteration and mineralization in the Lyon Mountain Granite and related iron oxide apatite (IOA) ores; constraints from apatite and titanite U-Pb geochronology, Sm-Nd isotopes and trace-elements
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Timing and evolution of metasomatic alteration and mineralization in the Lyon Mountain Granite and related iron oxide apatite (IOA) ores; constraints from apatite and titanite U-Pb geochronology, Sm-Nd isotopes and trace-elements

机译:里昂山花岗岩和相关氧化铁磷灰石(IOa)矿石的交代蚀变和矿化的时间和演化;磷灰石和钛铁矿U-pb年代学,sm-Nd同位素和微量元素的限制

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摘要

The Lyon Mountain granite (LMG) in the northeastern Adirondack Mountains of New York State hosts numerous low-titanium iron oxide apatite (IOA) ore deposits, with most deposits containing apatite that has unusually high rare earth element (REE) concentrations (total lanthanides > 20 wt. %, and up to 8 wt. % Y) as does titanite from the metasomatically altered host rocks (total lanthanides up to 3.4 wt. %, and up to 1.4 wt. % Y). The ores are predominately hosted by perthitic granite, which has been extensively metasomatised to albite and microcline granite by Na- and K-bearing hydrothermal fluids.udTo better understand the timing and evolution of the metasomatism and subsequent mineralization, and to develop a genetic model for the formation of REE-IOA deposits, U-Pb isotope dilution thermal ionization mass spectrometry (ID-TIMS) dating of apatite and titanite, laser ablation multi collector inductively coupled plasma mass spectrometry (LA-MC-ICPMS) Sm-Nd analyses of apatite and titanite from the ore and host rocks and laser ablation inductively coupled plasma mass spectrometry (LA-ICPMS) U-Pb zircon geochronology were combined with LA-MC-ICPMS Lu-Hf isotope measurements. In addition to field and petrologic observations and newly obtained major- and trace-element data for rock forming and accessory minerals present in the ores and hosts, this integrated dataset indicates a multi-stage protracted history for the origin of these enigmatic deposits. U-Pb ID-TIMS dates of apatite and titanite show that these minerals formed during a later fluid event, likely the same event which formed the LMG ores and the initial Nd isotopic composition of both ore and host-rock apatite, and host-rock titanite, suggests a local source for the REE.
机译:纽约州东北部阿迪朗达克山脉的里昂山花岗岩(LMG)拥有许多低钛氧化铁磷灰石(IOA)矿床,其中大多数含有磷灰石的稀土元素(REE)浓度异常高(镧系元素总量> 20%(重量),最多8%(重量)的Y),如从交代改变后的主岩中得到的钛矿(总镧系元素最多为3.4%(重量),最多1.4%(重))。矿石主要由珍珠岩花岗岩包裹,后者已被含Na和K的热液广泛地变质为钠长石和微斜花岗岩。 ud为了更好地了解变质作用的时间和演化以及随后的矿化作用,并建立了遗传模型为了形成REE-IOA沉积物,磷灰石和钛矿的U-Pb同位素稀释热电离质谱(ID-TIMS)年代测定,激光烧蚀多收集器电感耦合等离子体质谱(LA-MC-ICPMS)的Sm-Nd分析将矿石和母岩中的磷灰石和钛矿以及激光烧蚀电感耦合等离子体质谱法(LA-ICPMS)的U-Pb锆石地质年代学与LA-MC-ICPMS Lu-Hf同位素测量相结合。除了现场和岩石学观测以及新近获得的矿石和宿主中存在的岩石形成和副矿物的主要元素和微量元素数据外,该综合数据集还显示了这些神秘矿床的多阶段长期历史。磷灰石和钛矿的U-Pb ID-TIMS日期表明,这些矿物是在随后的流体事件中形成的,很可能是形成LMG矿石以及矿石和基质岩石磷灰石以及基质岩石的初始Nd同位素组成的同一事件。钛铁矿表明稀土元素的本地来源。

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    Buchanan Angela L.;

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