首页> 外文期刊>Mineralogy and Petrology >Stable (H, O, C) and noble-gas (He and Ar) isotopic compositions from calcite and fluorite in the Speewah Dome, Kimberley Region, Western Australia: implications for the conditions of crystallization and evidence for the influence of crustal-mantle fluid mixing
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Stable (H, O, C) and noble-gas (He and Ar) isotopic compositions from calcite and fluorite in the Speewah Dome, Kimberley Region, Western Australia: implications for the conditions of crystallization and evidence for the influence of crustal-mantle fluid mixing

机译:西澳大利亚州金伯利地区Speewah穹顶中方解石和萤石中稳定的(H,O,C)和稀有气体(He和Ar)同位素组成:对结晶条件的影响和地幔流体影响的证据混合

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摘要

In this study, the C-O-isotopic data from calcite at Yungul and Wilmott (Speewah. Western-Australia) are integrated with microthermometry, H2O-, CO2-content and H-He-Ar-isotopic data from fluid inclusions in genetically related calcite and fluorite to map the origin and crystallization paths of the fluids. In addition to the hydrogen isotopic compositions of fluid inclusions in fluorite, oxygen isotopic compositions were also determined by cavity ring-down spectroscopy. The geochemical data suggest mixing of a CO2-dominated mantle fluid and a H2O-domintated crustal brine. The fluid produced by this mixing is characterized by radiogenic (crustal-like) He-3/He-4 ratios, crustal-like dD values, relatively high salinity (19-24wt.% NaCl eq.), moderate homogenization temperatures (150-450 degrees C) and mantle-like CO2/He-3 ratios. Moreover, the large isotopic and elemental variations found in calcite indicate that its formation was accompanied by an extensive degassing (open system) leading to a decrease in dD and an increase in the CO2/He-3 values relative to the starting fluid composition. This degassing is consistent with the fluidal- and breccia-like texture of calcite observed in the field. In contrast, the fluorite which has coarse-grained banded to vughy textures formed in a passive aqueous system. Apparently the fluid that formed the fluorite has the same origin as the calcite, but the higher water content and the more radiogenic He-3/He-4 ratios reflect a greater involvement of crustal fluids. The historical description of the calcite-fluorite system in the Speewah area as "carbonatite" is now considered inappropriate because there is no evidence that crystallization is dominated by magmatic processes.
机译:在这项研究中,将Yungul和Wilmott(Speewah.Western-Australia)方解石的CO同位素数据与微量热测量法,遗传相关方解石中流体包裹体的H2O,CO2含量和H-He-Ar同位素数据进行了整合。萤石绘制流体的起源和结晶路径。除了萤石中流体包裹体的氢同位素组成外,还通过腔衰荡光谱法测定了氧同位素组成。地球化学数据表明混合了以CO2为主的地幔流体和以H2O为主的地壳盐水。这种混合产生的流体的特征是放射成因(类地壳)的He-3 / He-4比率,地壳类dD值,相对较高的盐度(19-24wt。%NaCl当量),中等的均质温度(150- 450摄氏度)和类似地幔的CO2 / He-3比率。此外,在方解石中发现的较大的同位素和元素变化表明,其形成伴随着广泛的脱气(开放系统),相对于起始流体成分,其导致dD降低和CO2 / He-3值升高。该脱气与在现场观察到的方解石的流体状和角砾状的质地一致。相反,在被动水性体系中形成的粗粒度带状萤石形成了粗糙的纹理。显然,形成萤石的流体与方解石具有相同的起源,但是较高的水含量和更多的放射源He-3 / He-4比值反映了地壳流体的更多参与。斯佩瓦地区方解石-萤石系统被称为“碳酸盐岩”的历史描述现在被认为是不合适的,因为没有证据表明岩浆作用主导了结晶。

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