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Mineralogy and He-Ar isotopic compositions of pyrites in the Paishanlou Au deposit on the northern margin of North China Craton

机译:Paishanlou Au矿床矿物质的矿物学和He-Ar同位素组成在华北地区北部克雷顿

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The Paishanlou Au deposit is an altered-rock type with the magmatic-hydrothermal type deposit on the northern margin of the North China Craton and hosts a resource of 40 tonnes Au. The deposit is hosted in the Neoarchean metamorphic rocks of the Jianping Group and is controlled mainly by ENE-NW-trending ductile shear zones. The orebodies are stratoid, and mineralization styles are divided into auriferous altered felsic mylonite and altered biotite plagioclase mylonite. The sulphide minerals are dominated by pyrite that is recognized as pyrite 1, pyrite 2, and pyrite 3 based on crystalline form and structure, and pyrite 2 is the main auriferous mineral. Three types of pyrite were selected for electron microprobe analysis (EPMA), and the results show S deficiency, indicating that the pyrites are formed in reducing conditions. The pyrites have a trend from being Fe deficient to being Fe enriched, suggesting that the crystallization rate increases with the decrease of impurity composition from the early to the late stage. The Co/Ni ratios and Co-Ni-As diagram reflect that the Paishanlou Au deposit is associated with magmatic-hydrothermal and is affected by various hydrothermal. He-Ar isotopic analyses of auriferous pyrite 2 indicate that the ore-forming fluids are mixtures of mantle-derived and modified air-saturated water (MASW). He-3/He-4 ratios range from 0.21 to 1.51 Ra (Ra = 1.39 x 10(-6) for air), corresponding to a 2.18%-19.06% mantle He contribution. The formation of mixed ore-forming fluids was related to magmatism associated with craton destruction during the Early Cretaceous. Also, we attempt to use the thermoelectric characteristics of pyrite and a contour chart of Au grades to indicate potential mineralization prospecting areas.
机译:Paishanlou Au矿床是一种改变的岩石型,北方北极山北边缘岩浆水热型矿床,举办了40吨AU的资源。该押金载于建行组的新拱道变质岩石,主要由ene-nw趋势延性剪切区控制。矿体是砂岩,矿化风格分为纤维植物改变的猪肉菌丝体和改变的Biotite Plagioclase米隆岩。硫化物矿物质由黄铁矿支配,其基于结晶形式和结构识别为硫铁矿1,硫铁矿2和硫铁矿3,硫铁矿2是主要的耳胺矿物质。选择三种类型的胶质矿石用于电子微探针分析(EPMA),结果表明缺乏症,表明吡矿在还原条件下形成。硫铁矿与Fe没有富集的Fe缺乏趋势,表明结晶率随着从早期到晚期的杂质组成而增加。 CO / Ni比率和Co-Ni-As图反映了Paishanlou Au沉积物与岩浆 - 水热有关,受各种水热的影响。 He-Ar同位素分析纤维铁矿2表示矿石形成的流体是披露和改性的空气饱和水(MasW)的混合物。 HE-3 / HE-4比率范围为0.21至1.51镭(RA = 1.39 x 10(-6)),对应于他的贡献2.18%-19.06%。混合矿石形成的流体的形成与在早期白垩纪期间与Craton破坏相关的岩浆作用有关。此外,我们试图使用硫铁矿的热电特性和Au等级的轮廓图来表示潜在的矿化勘探区域。

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