首页> 外文期刊>Applied clay science >Characteristics and genesis of phyllosilicate hydrothermal assemblages from Neoproterozoic epithermal Au-Ag mineralization of the Avalon Zone of Newfoundland, Canada
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Characteristics and genesis of phyllosilicate hydrothermal assemblages from Neoproterozoic epithermal Au-Ag mineralization of the Avalon Zone of Newfoundland, Canada

机译:加拿大纽芬兰阿瓦隆综合素析岩综合素酸碱综合素的特征及成因

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The Avalon Zone hosts well-preserved examples of highand low-sulfidation epithermal Au-Ag mineralization and associated phyllosilicate alteration. Using examples from the Hope Brook and Hickey's Pond high-sulfidation systems (HSS) and the Heritage low-sulfidation system (LSS), this study presents new data on the mineralogical and chemical characterization of phyllosilicates associated with epithermal Au-Ag deposits. Electron probe microanalysis and X-ray diffraction studies revealed that the HSS examples contain Fe muscovite ((K0.62-0.79Na0.10-0.37Ca0.00-0.01)Al1.31-1.72(Mg0.01-0.08Fe0.05-0.19)(Al1.00-1.24Si2.76-3.00O10)(OH)(2)), paragonite ((K0.05-0.30Na0.78-1.02Ca0.00-0.01)Al1.66-1.84(Mg0.00-0.01Fe0.02-0.04)(Al1.01-1.11Si2.89-2.99O10)(OH)(2)), Al clinochlore ((Mg2.42-2.65Fe1.62-1.78)(Si2.57-2.69Al1.31-1.43O10)(OH)(8)), pyrophyllite, kaolin minerals, illite-smectite (I-Sme) and chlorite-smectite (C-Sme). Conversely, the LSS examples contain Fe-Mg muscovite ((K0.44-0.76Na0.00-0.02Ca0.00-0.01)Al1.55-1.82(Mg0.17-0.31Fe0.05-0.12)(Al0.55-0.71Si3.29-3.45O10)(OH)(2)), Al clinochlore ((Mg2.17-2.56Fe1.59-2.01)(Si2.71-2.92Al1.08-1.29O10)(OH)8), and I-Sme and C-Sme intermediates. Chlorite geothermometry indicated that HSS and LSS assemblages crystallized at average temperatures of 261 degrees C and 145 degrees C, respectively. Mica and chlorite from HSS and LSS are defined by Tschermak substitution and high-temperature polytypism (2M(1) and IIb, respectively). In the HSS examples, one or more pulses of hot, acidic fluid reacted with host rocks generating an envelope of advanced argillic alteration (Fe-Ms, Kln, Pg, Prl) around a vuggy silica core. This is bounded by a zone of argillic alteration (Fe-Ms, Kln), with sericitic/chloritic alterations (Fe-Ms, Al-Clc) developed in distal parts of the systems. In the LSS, near-neutral hydrothermal fluids led to the formation of broad phyllic/chloritic zones (Fe-Mg Ms and Al-Clc). A low temperature overprint with 1M mica, Ib clinochlore ((Mg2.48-2.74Fe1.58-1.73)(Si3.05-3.15Al0.85-0.95O10)(OH)(8)), kaolinite and Sme-poor I-Sme and C-Sme is attributed to late waning stage hydrothermal activity and/or weathering. A close paragenetic link was established between Fe Mg muscovite and Ag mineralization at Heritage, as well as between Fe-Mg muscovite and bladed calcite, suggesting boiling as the precipitation mechanism. The present study provides guidance on how phyllosilicate assemblages have the potential to discern HSS versus LSS mineralization during early prospection in terranes with limited exposure, and to contribute to the reconstruction of their hydrothermal record.
机译:Avalon区宿主保存完好的HIGHAND低硫化术膜Au-Ag矿化和相关的字节硅酸盐改变。本研究采用了希望布鲁克和Hickey的池塘高硫化系统(HSS)和遗产低硫化系统(LSS)的实例,提出了关于与膜状Au-Ag沉积物相关的文化和化学表征的新数据。电子探针微分析和X射线衍射研究表明,HSS实施例含有Fe Muscovite((KO.62-0.79NA0.10-0.37CA0.00-0.01)AL1.31-1.72(Mg0.01-0.08Fe0.05- 0.19)(Al1.00-1.24si2.76-3.00010)(OH)(2)),玻璃体((k0.05-0.30na0.78-1.02ca0.00-0.01)Al1.66-1.84(Mg0。 00-0.01FE0.02-0.04)(Al1.01-1.11si2.89-2.99o10)(OH)(2)),Al Clinochlore((Mg2.42-2.65Fe1.62-1.78)(Si2.57- 2.69Al1.31-1.43O10)(OH)(8)),纤维素,高岭土矿物质,硅硝矿石(I-SME)和亚氯酸盐(C-SME)。相反,LSS实施例含有Fe-Mg Muscovite((k0.44-0.76na0.00-0.02ca0.00-0.01)Al1.55-1.82(Mg0.17-0.31Fe0.05-0.12)(Al0.55- 0.71SI3.29-3.45O10)(OH)(2)),Al Clinochlore((Mg2.17-2.56Fe1.59-2.01)(Si2.71-2.92Al1.08-1.29O10)(OH)8),和I-SME和C-SME中间体。氯酸盐地热测定法表明HSS和LSS分别在261摄氏度和145℃的平均温度下结晶。来自HSS和LSS的云母和氯酸盐由Tschermak取代和高温多液氮(分别为2M(1)和IIB)定义。在HSS的实例中,一种或多种热,酸性流体的脉冲与宿主岩石反应,产生围绕vuggy二氧化硅核心的先进的岩石改变(Fe-MS,Kln,PG,PRL)的包膜。这是由物质改变(Fe-MS,KLN)区域的限制,其中粒子/氯化物改变(Fe-MS,AL-CLC)在系统的远端部分中开发。在LSS中,近中性水热流体导致宽文化/氯鱼区(Fe-Mg MS和Al-Clc)的形成。低温叠印,1m云母,IB临床勒科((Mg2.48-2.74Fe1.58-1.73)(Si3.05-3.15Al0.85-0.95O10)(OH)(8)),高岭石和中小企业穷人-sme和c-sme归因于衰落的阶段水热活性和/或风化。在Fe Mg Muscovite和Ag遗传学之间建立了紧密的寄生链接,以及Fe-Mg Muscocite和Braded方解石之间,表明沸腾为沉淀机制。本研究提供了有关植物硅酸盐硅酸盐组合的指导,这些研究在具有有限暴露的地区的早期借鉴期间有可能辨别HSS与LSS矿化,并有助于重建流水热记录。

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