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Hydrothermal Alteration, Fluid Inclusion and Stable Isotope Studies of the North Roby Zone, Lac des Iles PGE Mine, Ontario, Canada

机译:加拿大安大略省Lac des Iles PGE矿区北部Roby区的热液蚀变,流体包裹体和稳定同位素研究

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The Archean mafic-ultramafic complex of Lac des Iles, Ontario, Canada, hosts economic platinum group elements (PGE)-Au-Cu-Ni mineralization in the Roby Zone. All lithologies in the North Roby Zone have been affected by hydrothermal alteration. The alteration products include talc (the most dominant mineral), antho-phyllite, serpentine, actinolite, tremolite, chlorite, hornblende, zoisite, clinozoisite, epidote and sericite. In the altered rocks, light rare earth elements (La, Ce, Nd, Sm), Pb, Rb, Ba, Cs, S and possibly Y have been added by hydrothermal solution whereas Eu and heavy rare earth elements (Yb, Gd, Dy, Er) remained immobile. There are five types of fluid inclusions in the pegmatitic plagioclase with homogenization temperature and salinity ranging from 240 deg C to 445 deg C and 15.37 to 48.52 wt% equivalent NaCl, respectively. The δ~(18)O and δD of talc range form 6.2 per thousand to 6.9 per thousand and -28 per thousand to -48 per thousand , respectively. δ~(18)O and δD water in equilibrium with talc during the hydrothermal alteration suggest a modified source for the hydrothermal solution. Microthermometry and stable isotope studies suggest that high temperature-high salinity fluid was diluted by, and mixed with, low temperature-low salinity meteoric solution. This mechanism precipitated the hydrothermal assemblage and redistributed trace elements during and after pegmatite formation in the North Ruby Zone.
机译:加拿大安大略省Las des Iles的太古代镁铁质-超镁铁质复合物拥有罗比地区的经济铂族元素(PGE)-Au-Cu-Ni矿化层。北罗比地区的所有岩性都受到热液蚀变的影响。蚀变产物包括滑石粉(最主要的矿物),直闪石,蛇纹石,阳起石,透闪石,绿泥石,角闪石,膨润土,斜长石,山石和绢云母。在蚀变的岩石中,通过水热溶液添加了轻稀土元素(La,Ce,Nd,Sm),Pb,Rb,Ba,Cs,S和可能的Y,而Eu和重稀土元素(Yb,Gd,Dy)被添加了。 ,Er)保持静止。斜生斜长石中有五种类型的流体包裹体,均质温度和盐度范围分别为240℃至445℃和15.37至48.52 wt%当量的NaCl。滑石的δ〜(18)O和δD分别为6.2 /千至6.9 /千和-28至-48 /千。水热蚀变过程中与滑石平衡的δ〜(18)O和δD水暗示了热溶液的一种改良来源。显微温度计和稳定的同位素研究表明,高温-高盐度流体被低温-低盐度流星溶液稀释并混合。在北红宝石区伟晶岩形成期间和之后,这种机理使热液聚集和微量元素重新分布。

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