首页> 外文期刊>Mineralium deposita >Constraints on Hf and Zr mobility in high-sulfidation epithermal systems: formation of kosnarite, KZr2(PO4)(3), in the Chaquicocha gold deposit, Yanacocha district, Peru
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Constraints on Hf and Zr mobility in high-sulfidation epithermal systems: formation of kosnarite, KZr2(PO4)(3), in the Chaquicocha gold deposit, Yanacocha district, Peru

机译:高硫化术综合体系中HF和Zr迁移率的约束:在秘鲁的夏科区山崎金矿床中,Kosnarite,KOSNARITE,KZR2(PO4)(3)的形成

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We report the first occurrence of Hf-rich kosnarite [K(Hf,Zr)(2)(PO4)(3)], space group R-3c, Z = 6, in the giant Chaquicocha high-sulfidation epithermal gold deposit in the Yanacocha mining district, Peru. Kosnarite crystals are small (< 100 mu m) and occur in 2-3-mm-thick veins that cut intensively silicified rocks. The paragenesis includes a first stage of As-free pyrite and quartz (plus gratonite and rutile), followed by trace metal-rich pyrite [(Fe,As,Pb,Au)S-2] and secondary Fe sulfates. Kosnarite is associated with quartz and is clearly late within the paragenetic sequence. Electron microprobe analyses (EMPA) of kosnarite show relatively high concentrations of HfO2 and Rb2O (7.61 and 1.05 wt.%, respectively). The re-calculated chemical formulas of kosnarite vary from K-I 1.00(Zr1.93Na0.01Hf0.01Mn0.01)(I pound 1.96)(P3.04O4)(I pound 3) pound to (K0.92Rb0.05Na0.03)(I 1.00)(Zr1.81Hf0.19)(I pound 2.00) pound [(P2.98Si0.02As0.01)(I 3.01)O-4](I pound 3) pound, where Hf and Rb are most likely incorporated according to a coupled substitution of Hf4+ + Rb+ a double dagger" Zr4+ + K+. Back-scattered electron (BSE) images and elemental mapping of kosnarite reveal that Hf and Rb are enriched in 2-10-mu m-wide oscillatory and/or sector zones. High-angle annular dark-field scanning transmission electron microscopy (HAADF-STEM) observations of such zones reveal a pattern of alternating, 5-50-nm-thick, Hf-rich and Zr-rich nanozones. These high-resolution observations indicate that the incorporation of Hf does not appear to cause significant distortion in the kosnarite structure. Semiquantitative TEM-energy-dispersive X-ray spectrometry (EDS) analyses of the nano-layers show up to 22 wt.% of HfO2, which corresponds to 31 mol% of the hypothetical, KHf2(PO4)(3), end-member. The presence of kosnarite in the advanced argillic alteration zone at Yanacocha is indicative of Hf and Zr mobility under highly acidic conditions and points towards an unforeseen role of phosphates as sinks of Zr and Hf in high-sulfidation epithermal environments. Finally, potentially new geochronological applications of highly insoluble vein kosnarite, including Rb-Sr dating, may provide further age constraints in pervasively altered areas where other isotopic systems might have been reset.
机译:我们报告了富含HF的kosnarite [K(HF,Zr)(2)(PO4)(3)],Z = 6,在巨千千科高硫化术术中的第一次出现秘鲁的Yanacocha矿区。 Kosnarite晶体很小(<100 mu m),并且发生在2-3毫米厚的静脉中,切割强烈的硅化岩石。寄生荚膜包括无可自由硫铁矿和石英(加克雷龙岩和金红石)的第一阶段,然后是痕量金属富金矿[(Fe,As,Pb,Au)S-2]和二级硫酸盐。 Kosnarite与石英相关,显然在平原序列内。 Kosnarite的电子微探针分析(EMPA)显示出相对高浓度的HFO2和RB2O(分别为7.61和1.05重量%)。 Kosnarite的重新计算化学式从Ki1.00(Zr1.93NA0.01HF0.01MN0.01)(I磅1.96)(P3.04O4)(I磅3)磅(K0.92RB0.05NA0.03)( I 1.00)(ZR1.81HF0.19)(i磅2.00)磅[(p2.98si0.02as0.01)(i 3.01)O-4](i pumpl 3)磅,其中Hf和Rb最有可能根据到HF4 + + rb +的耦合替代为双匕首“Zr4 + + k +。后散射电子(BSE)图像和Kosnarite的元素映射显示,HF和Rb富集在2-10-mu m宽的振荡和/或部门中区域。这种区域的高角度环形暗场扫描透射电子显微镜(HAADF-Stem)观察结果揭示了交替,5-50纳米厚,富含HF和富Zr的纳米型图案。这些高分辨率观察表明HF的掺入似乎在Kosnarite结构中没有显着的变形。纳米层的半定位温度分散X射线光谱(EDS)分析显示出高达22重量%的HFO2,其中COR2响应假设,KHF2(PO4)(3),末端成员的31 mol%。在yanacocha的晚期麦芽石变化区中kosnarite的存在表明在高度酸性条件下的HF和Zr迁移率,并朝向高硫化术术环境中的Zr和HF的下沉点的磷酸盐的不可预见的作用。最后,潜在的高度不溶性静脉Kosnarite的新地理学应用,包括RB-SR约会,可以在其他同位素系统已经重置的普遍改变的区域中提供进一步的年龄约束。

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