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首页> 外文期刊>Mineralium deposita >Textural, mineralogical and stable isotope studies of hydrothermal alteration in the main sulfide zone of the Great Dyke, Zimbabwe and the precious metals zone of the Sonju Lake Intrusion, Minnesota, USA
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Textural, mineralogical and stable isotope studies of hydrothermal alteration in the main sulfide zone of the Great Dyke, Zimbabwe and the precious metals zone of the Sonju Lake Intrusion, Minnesota, USA

机译:美国明尼苏达州大津巴布韦大堤主要硫化物带和Sonju Lake Intrusion贵金属带热液蚀变的组织学,矿物学和稳定同位素研究

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摘要

Stratigraphic offsets in the peak concentrations of platinum-group elements (PGE) and base-metal sulfides in the main sulfide zone of the Great Dyke and the precious metals zone of the Sonju Lake Intrusion have, in part, been attributed to the interaction between magmatic PGE-bearing base-metal sulfide assemblages and hydrothermal fluids. In this paper, we provide mineralogical and textural evidence that indicates alteration of base-metal sulfides and mobilization of metals and S during hydrothermal alteration in both mineralized intrusions. Stable isotopic data suggest that the fluids involved in the alteration were of magmatic origin in the Great Dyke but that a meteoric water component was involved in the alteration of the Sonju Lake Intrusion. The strong spatial association of platinum-group minerals, principally Pt and Pd sulfides, arsenides, and tellurides, with base-metal sulfide assemblages in the main sulfide zone of the Great Dyke is consistent with residual enrichment of Pt and Pd during hydrothermal alteration. However, such an interpretation is more tenuous for the precious metals zone of the Sonju Lake Intrusion where important Pt and Pd arsenides and antimonides occur as inclusions within individual plagioclase crystals and within alteration assemblages that are free of base-metal sulfides. Our observations suggest that Pt and Pd tellurides, antimonides, and arsenides may form during both magmatic crystallization and subsolidus hydrothermal alteration. Experimental studies of magmatic crystallization and hydro-thermal transport/deposition in systems involving arsenides, tellurides, antimonides, and base metal sulfides are needed to better understand the relative importance of magmatic and hydrothermal processes in controlling the distribution of PGE in mineralized layered intrusions of this type.
机译:大堤防主要硫化物带和Sonju Lake Intrusion贵金属带中铂族元素(PGE)和贱金属硫化物峰值浓度的地层偏移部分归因于岩浆之间的相互作用含PGE的贱金属硫化物组合物和热液。在本文中,我们提供了矿物学和组织学证据,表明这两个矿化侵入体的热液蚀过程中贱金属硫化物的变化以及金属和S的迁移。稳定的同位素数据表明,与蚀变有关的流体是大堤坝中的岩浆成因,但在Sonju Lake入侵的蚀变中涉及到了流水成分。铂族矿物(主要是Pt和Pd硫化物,砷化物和碲化物)与大堤主主要硫化物带中的贱金属硫化物的强空间联系与水热蚀变过程中Pt和Pd的剩余富集相一致。然而,这种解释对于Sonju Lake Intrusion的贵金属区域而言更为微不足道,在该区域中,重要的Pt和Pd砷化物和锑化物以夹杂形式存在于各个斜长石晶体中以及不含贱金属硫化物的蚀变组合中。我们的观察结果表明,在岩浆结晶和亚固相热液蚀变过程中,可能形成碲和铂,钯和砷和砷。需要进行涉及砷化物,碲化物,锑化物和贱金属硫化物的系统中岩浆结晶和水热输送/沉积的实验研究,以更好地了解岩浆和水热过程在控制该矿化层状侵入物中PGE分布方面的相对重要性。类型。

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